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Small cell lung cancer (SCLC) clinical trials

Studies whose public record specifically identifies small cell lung cancer.

121current U.S. studies in this category
Current public records

Studies to explore

Categories organize the public record. They do not determine whether someone is eligible.

Recruiting · Phase 3 · NCT07365241

A Study to Evaluate Adverse Events and Change in Disease Activity of Intravenous ABBV-706 Versus Standard of Care in Adult Participants With Relapsed/Refractory Small Cell Lung Cancer

Small cell lung cancer (SCLC) is characterized by aggressive and rapid growth and a tendency to develop early spread to distant sites including mediastinal lymph nodes, liver, bones, adrenal glands, and brain. The purpose of this study is to assess safety, tolerability, and change in disease activity of ABBV-706 compared to standard of care (SOC) treatment (topotecan, lurbinectedin, or amrubicin). ABBV-706 is an investigational drug being developed for the treatment of SCLC. There are two treatment arms in this study. Participants will either receive ABBV-706 or SOC. Approximately 531 adult participants will be enrolled in the study across 175 sites worldwide. Participants with SCLC will receive intravenous (IV) ABBV-706 or SOC \[topotecan (IV or orally), or lubinectedin (IV), or amrubicin (IV)\]. The estimated duration of the study is approximately 53 months. There may be higher treatment burden for participants in this trial compared to their standard of care. Participants will attend regular visits during the study at a hospital or clinic and may require frequent medical assessments, blood tests, questionnaires, and scans.

Recurrent or relapsedResistant or refractoryTreatmentPhase 3Interventional
Recruiting · Phase 1 / Phase 2 · NCT06780137

A Study to Evaluate the Safety and Efficacy of Gocatamig (MK-6070) and Ifinatamab Deruxtecan (I-DXd) in Participants With Relapsed/Refractory Extensive-Stage Small Cell Lung Cancer (MK-6070-002)

Researchers are looking for new ways to treat people with extensive-stage small cell lung cancer (SCLC) that has relapsed or is refractory. Gocatamig is a new type of immunotherapy that uses a person's immune system to find and destroy cancer cells. Ifinatamab deruxtecan (also known as I-DXd) is a drug which binds to a specific target on cancer cells and delivers treatment to destroy those cells. Durvalumab is a different type of immunotherapy that also destroys cancer cells. Researchers want to know if giving gocatamig, I-DXd, and gocatamig with I-DXd or durvalumab can treat SCLC that did not respond or stopped responding to a prior treatment. The goals of this study are to learn: * If gocatamig alone, I-DXd alone, and gocatamig with I-DXd or durvalumab are safe and well tolerated * If people who receive gocatamig alone, I-DXd alone, and gocatamig with I-DXd or durvalumab have their SCLC get smaller or go away

Recurrent or relapsedResistant or refractoryImmunotherapyTreatmentPhase 1 / Phase 2
Recruiting · Not applicable · NCT02146170

Tissue Procurement and Natural History Study of People With Non-Small Cell Lung Cancer, Small Cell Lung Cancer, Extrapulmonary Small Cell Cancer, Pulmonary Neuroendocrine Tumors, and Thymic Epithelial Tumors

Background: \- Lung cancer is the leading cause of cancer-related death worldwide. It causes more than one million deaths every year. Researchers want to gather tissue samples from people with lung and thymic cancers to understand the disease better. This may lead to new ways to diagnose and treat it. Objective: \- To collect tissue samples for use in the study of lung cancers. Eligibility: \- Adults over age 18 with non-small cell lung cancer, small cell lung cancer, extra pulmonary small cell cancer, pulmonary neuroendocrine tumors, and thymic epithelial tumors. Design: * Participants will be screened with a medical history, physical exam, and blood tests. They will be asked about how they perform their daily tasks. * Participants may be asked to give urine and blood samples. They may give a saliva sample if they cannot give blood. They will also give a sample of their tumor from a biopsy they had. They may also be given the option to undergo a biopsy. * Participants may have MRI, CT, and/or PET scans of the body. They will lie in a machine that takes pictures of the body. * After visits to the Clinical Center end, researchers will contact participants by phone every year to check on their health.

Not applicableObservational
Not Yet Recruiting · Phase 1 · NCT07509034

Autologous B7-H3 Chimeric Antigen Receptor T Cells in Previously Treated Extensive-Stage Small Cell Lung Cancer With Recurrent or Refractory Disease

Background: Small cell lung cancer (SCLC) is the deadliest form of lung cancer. Extrapulmonary neuroendocrine cancer (EPNEC) is a similar type of cancer that develops anywhere other than the lungs. EPNEC is also deadly. B7-H3 is a protein often found in SCLC and EPNEC tumor cells. Researchers can modify a person s own T cells, or immune cells, to target B7-H3. When these modified T cells are returned to the body-a treatment called B7-H3 chimeric antigen receptor (CAR) T cell therapy-they may help kill cancer cells. Objective: To test B7-H3 CAR T cell therapy in people with SCLC or EPNEC. Eligibility: People aged 18 years and older with SCLC or EPNEC that either did not respond or returned after treatment. Design: Participants will be screened. They will have blood tests and tests of their heart function. They will have imaging scans. Participants will undergo apheresis: Blood will be taken from the body through a needle. The blood will pass through a machine that separates out the T cells. The remaining blood will be returned to the body through a different needle. The collected T cells will be altered to make them attack cells with B7-H3. Participants will be in the hospital for at least 15 days. They will receive chemotherapy drugs to prepare their body for the treatment. These drugs will be given through a tube attached to a needle inserted into a vein. The modified T cells will be infused through a vein. Participants will remain in the hospital until they are well enough to go home. Follow-up visits will continue for 15 years....

Recurrent or relapsedResistant or refractoryChemotherapyCell or gene therapyTreatment
Recruiting · Phase 2 · NCT07057791

Phase II Study of Platinum/Etoposide Plus Ivonescimab for Extensive-Stage Small Cell Lung Cancer

Eligible untreated participants with Extensive Stage Small Cell Lung Cancer (ES-SCLC) who are ≥ 18 years of age will be randomized to receive ivonescimab 10 milligrams per kilogram (mg/kg) or ivonescimab 20 mg/kg in combination with carboplatin and etoposide. Ivonescimab is a type of drug called a bispecific antibody. Antibodies are proteins that specifically recognize and bind to other types of proteins called antigens. Antibodies and antigens can work together to help the immune system fight cancer cells. Bispecific antibody, meaning it targets two different molecules at the same time. Ivonescimab is a new drug that may help the immune system attack cancer cells and may also block certain pathways that cancer uses to grow and spread. This dual action of ivonescimab aims to help the immune system to fight the cancer and also disrupt tumor growth by blocking blood vessel formation that tumors use to grow. Participants will receive induction with 4 cycles of ivonescimab (dose determined by randomization) with standard of care carboplatin and etoposide followed by maintenance therapy with ivonescimab at the same dose received during induction. Treatment will continue until disease progression, unacceptable toxicity or participant withdrawal. The purpose of this study is to determine what dose of ivonescimab works best in combination with carboplatin and etoposide chemotherapy in ES-SCLC. We will also examine the side effects, good and bad, associated with ivonescimab.

ChemotherapyTreatmentPhase 2Interventional
Recruiting · Phase 1 / Phase 2 · NCT06726148

Study of ECI830 Single Agent or in Combination in Patients With Advanced HR+/HER2- Breast Cancer and in Patients With Other Advanced Solid Tumors

Phase I: Characterize safety and tolerability of ECI830 as a single agent and in combination with ribociclib and fulvestrant. Identify dose range for optimization/recommended dose for future studies. Phase II: Assess the anti-tumor activity of ECI830 in combination with ribociclib and fulvestrant in patients with hormone receptor-positive/human epidermal growth factor receptor 2-negative (HR+/HER2-) advanced breast cancer.

HER2TreatmentPhase 1 / Phase 2Interventional
Active Not Recruiting · Phase 2 / Phase 3 · NCT01064466

Pharmacogenomics ANDA SNP Clinical Study - Etoposide and Single Nucleotide Polymorphisms

Explore the relationship between drug target topoisomerase II gene single nucleotide polymorphisms and Etoposide (VP-16) therapeutic-effects in patients with small cell lung cancer, based on Oxford precisely sequencing drug targets' genes. Explore the relationship between drug target CYP4503A4 gene single nucleotide polymorphisms and Etoposide (VP-16) side-effects in patients with small cell lung cancer, based on Oxford precisely sequencing drug targets' genes.

ChemotherapyHealth Services ResearchPhase 2 / Phase 3Interventional
Active Not Recruiting · Phase 3 · NCT03811002

Testing the Addition of a New Immunotherapy Drug, Atezolizumab (MPDL3280A), to the Usual Chemoradiation (CRT) Therapy Treatment for Limited Stage Small Cell Lung Cancer (LS-SCLC)

This phase III trial studies how well chemotherapy and radiation therapy (chemoradiation) with or without atezolizumab works in treating patients with limited stage small cell lung cancer. Drugs used in chemotherapy, such as etoposide, cisplatin, and carboplatin, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving chemoradiation with or without atezolizumab may work better in treating patients with limited stage small cell lung cancer.

Early-stage or resectableLocally advancedImmunotherapyChemotherapyRadiation therapy
Recruiting · Phase 1 / Phase 2 · NCT06892548

A Clinical Study to Investigate the Efficacy and Safety of an Investigational Combination Therapy With BNT324 and BNT327 in Patients With Advanced Lung Cancer

This study aims to investigate the combination of BNT324, a B7-H3 antibody-drug conjugate (ADC) with BNT327, a programmed death-ligand 1 (PD-L1) and vascular endothelial growth factor (VEGF) bispecific antibody, in participants with advanced/metastatic or relapsed/progressive small cell lung cancer (SCLC) and non small cell lung cancer (NSCLC).

PD-L1Metastatic or stage IVRecurrent or relapsedTreatmentPhase 1 / Phase 2
Completed · Phase 1 / Phase 2 · NCT04209595

PLX038 (PEGylated SN38) and Rucaparib in Solid Tumors and Small Cell Cancers

Background: Drugs known as poly-adenosine diphosphate ribose polymerase (PARP) inhibitors are known to help stop tumor growth in patients with breast, ovarian cancers and many other cancers including prostate and pancreatic cancers. Many research studies done in animals and human cells have shown that these types of drugs can improve how well chemotherapy works. Standard chemotherapy can be too toxic to be combined with PARP inhibitors. In this study, we use a new form of chemotherapy called PLX038 (PEGylated SN38) to see if it can be safely combined with PARP inhibitors to shrink tumors. Objective: To find a safe combination of PLX038 and rucaparib, and to see if this mix will cause tumors to shrink. Eligibility: People age 18 and older with solid tumors, small cell lung cancer (SCLC), or small cell cancer outside their lungs. Design: Participants will be screened with: Physical exam Blood tests Records of their diagnosis (or they will have a tumor biopsy). A review of their symptoms and medications. A review of their ability to perform their normal activities. Electrocardiograms, to measure the electrical activity of the heart. Computed tomography (CT) scans of the chest, abdomen, and pelvis. CT scans are a series of X-rays. Participants will get PLX038 by intravenous catheter on Day 1 of each cycle (1 cycle = 21 days). For this, a small plastic tube is put into an arm vein. They will take rucaparib twice daily by mouth on Days 3 to 19 of each cycle. They will keep a medicine diary. Participants may give a hair sample. They may have optional tumor biopsies. Screening tests are repeated throughout the study. About 30 days after treatment ends, participants will have a safety follow-up visit. They will give blood samples, talk about their health, and get a physical exam. Then they will be called or emailed every 6 months....

ChemotherapyTreatmentPhase 1 / Phase 2Interventional
Completed · Not applicable · NCT04670445

Improving Patient and Caregiver Understanding of Risks and Benefits of Immunotherapy for Advanced Cancer

The purpose of this study is to refine and pilot test educational material developed to educate and support patients receiving immunotherapy for advanced cancer. The intervention is an educational video and question prompt list (QPL) to promote communication between patients, caregivers, and the oncology team about the risks and benefits of immunotherapy.

Early-stage or resectableLocally advancedMetastatic or stage IVImmunotherapyHealth Services Research
Recruiting · Phase 1 · NCT07488923

A First-in-human (FIH), Phase 1 Study of ML261, an Autologous Potency Enhanced Anti-DLL3 CAR T Cell Therapy, in Participants With R/R SCLC or Select NECs (SPECTRAL-1)

This is a first-in-human (FIH), open-label, Phase 1 study designed to evaluate the safety, pharmacokinetics (PK), and preliminary efficacy of ML261, an autologous potency enhanced anti-DLL3 CAR T cell therapy, in participants with R/R SCLC or select NECs

Cell or gene therapyTreatmentPhase 1Interventional
Recruiting · Phase 2 · NCT07155174

A Study to Evaluate the Optimal Dose, Adverse Events and Change in Disease Activity of Intravenous ABBV-706 in Combination With Atezolizumab Versus Standard of Care as First-Line Treatment in Adult Participants With Previously Untreated Extensive Stage Small Cell Lung Cancer

Small cell lung cancer (SCLC) is characterized by aggressive and rapid growth and a tendency to develop early spread to distant sites including mediastinal lymph nodes, liver, bones, adrenal glands, and brain. The purpose of this study is to assess safety, dose, change in disease activity of ABBV-706 given with atezolizumab, compared to standard of care (SOC) treatment (etoposide, carboplatin, atezolizumab, and optional lurbinectedin). ABBV-706 is an investigational drug being developed for the treatment of SCLC. There are multiple treatment arms in this study. Participants will either receive ABBV-706 given with atezolizumab, at 1 of 2 doses, or SOC. Approximately 180 adult participants will be enrolled in the study across sites worldwide. In the safety lead-in, participants with SCLC will receive intravenous (IV) ABBV-706 in 1 of 2 doses with IV atezolizumab, or IV SOC. In the expansion portion of the study, participants with SCLC will receive IV ABBV-706 in 1 of 2 doses with atezolizumab, or IV SOC, until the optimal dose of ABBV-706 is determined. The estimated duration of the study is up to 69.5 months. There may be higher treatment burden for participants in this trial compared to their standard of care. Participants will attend regular visits during the study at a hospital or clinic and may require frequent medical assessments, blood tests, questionnaires, and scans.

ImmunotherapyChemotherapyTreatmentPhase 2Interventional
Recruiting · Not applicable · NCT07124000

DESTINY-PANTUMOUR04

This study will evaluate the effectiveness of T-DXd in patients with HER2-positive (IHC 3+) locally advanced, unresectable, or metastatic solid tumors who have received prior systemic treatment for metastatic or advanced disease and have no satisfactory alternative treatment options in a real-world setting in the US

HER2Early-stage or resectableLocally advancedMetastatic or stage IVNot applicable
Recruiting · Phase 2 / Phase 3 · NCT04402788

Testing the Addition of Radiation Therapy to the Usual Immune Therapy Treatment (Atezolizumab) for Extensive Stage Small Cell Lung Cancer, The RAPTOR Trial

This phase II/III trial compares the effect of adding radiation therapy to the usual maintenance therapy with atezolizumab versus atezolizumab alone in patients who have already received atezolizumab plus chemotherapy for the treatment of small cell lung cancer that has spread outside of the lung or to other parts of the body (extensive stage). Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. Giving radiation therapy in addition to atezolizumab may extend the time without extensive small cell lung cancer growing or spreading compared to atezolizumab alone.

ImmunotherapyChemotherapyRadiation therapyTreatmentPhase 2 / Phase 3
Recruiting · Phase 1 · NCT03460977

A Study of Mevrometostat for Treatment of Relapsed/Refractory SCLC, Castration Resistant Prostate Cancer, and Follicular Lymphoma

The purpose of this study is to learn about the safety and effects of the study medicine (called Mevrometostat) for the possible treatment of Relapsed/ Refractory Small Cell Lung Cancer (SCLC), Castration Resistant Prostate Cancer (CRPC) and Follicular Lymphoma (FL). The study consists of 3 parts; Part 1 and 2 enrolled participants with SCLC, metastatic CRPC, and FL are closed for enrollment. Part 3, which is open for enrollment is seeking men who: * have Castration Resistant Prostate Cancer (CRPC) and * have previously received treatment for CRPC and have progressed from the last treatment All participants in Part 3 of this study will receive mevrometostat and/ or enzalutamide. Part 3 consists of 2 sub studies each has an assessment phase and a maintenance phase. The Part 3 DDI substudy consist of 2 cohorts, Cohort 1 (monotherapy cohort) and Cohort 2 (Combination cohort). In the assessment phase: * participants in the BE substudy will take 3 single doses of mevrometostat by mouth over 3 periods. * participants in the DDI substudy Cohort 1 (monotherapy cohort) will take mevrometostat 2 times a day and/or itraconazole 1 time a day based on a present schedule. * participants in the DDI substudy Cohort 2 (combination cohort) will take mevrometostat 2 times a day, enzalutamide 1 time a day, and/or itraconazole 1 time a day based on a present schedule. After completion of the assessment phase, participants will enter the maintenance phase where they will receive mevrometostat 2 times a day and enzalutamide 1 time a day by mouth until their cancer is no longer responding. The study will look at the experiences of participanrs receiving the study medicine. This will help see if the study medicine is safe and effective.

Metastatic or stage IVRecurrent or relapsedResistant or refractoryTreatmentPhase 1
Recruiting · Phase 1 / Phase 2 · NCT07227597

A Clinical Study of Gocatamig (MK-6070) and Infinatamab Deruxtecan (MK-2400) in People With Small Cell Lung Cancer (MK-6070-003)

Researchers are looking for new ways to treat extensive-stage small cell lung cancer (ES-SCLC). ES-SCLC is a type of lung cancer that has spread throughout the lung, to the other lung, or to other parts of the body. A standard (usual) treatment for ES-SCLC uses both chemotherapy and immunotherapy. * Chemotherapy is a treatment that works to destroy cancer cells or stop them from growing. * Immunotherapy is a treatment that helps the immune system fight cancer. Gocatamig and I-DXd (short for ifinatamab deruxtecan) are study medicines. Researchers want to know if giving gocatamig and I-DXd together can treat ES-SCLC. Researchers will also look at giving the study medicines with standard treatment. Gocatamig is a T-cell engager therapy. I-DXd is an antibody drug conjugate. * T-cell engager therapy is a certain type of immunotherapy that uses T-cells to find and destroy cancer cells. * A T-cell is a type of white blood cell, which are cells that help the body fight infection. * An antibody drug conjugate (ADC) is a treatment that attaches to a protein on cancer cells and delivers treatment to destroy those cells. The goals of this study are to learn: * About the safety of combining gocatamig and I-DXd and if people tolerate them together * If people who receive gocatamig and I-DXd have ES-SCLC respond, which means the cancer gets smaller or goes away

ImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Phase 1 · NCT06179069

A Study of ZL-1310 in Subjects With Small Cell Lung Cancer

An open-label, multicenter study of ZL-1310 as a single agent and in combination with Atezolizumab (with and without Carboplatin) to evaluate the safety, efficacy, and pharmacokinetics in subjects with small cell lung cancer

ImmunotherapyChemotherapyTreatmentPhase 1Interventional
Recruiting · Phase 3 · NCT07778316

Phase 3 Trial of Tarlatamab (SC vs IV) in Extensive-Stage Small Cell Lung Cancer After Platinum Based First-line Chemotherapy (ES-SCLC)

The primary objective of this study is to demonstrate non-inferiority in pharmacokinetic (PK) parameters of subcutaneous (SC) vs intravenous (IV) tarlatamab administration and to characterize the efficacy, safety, and tolerability of SC tarlatamab in participants with relapsed extensive-stage small-cell lung cancer (ES-SCLC) after platinum-based chemotherapy.

Recurrent or relapsedChemotherapyTreatmentPhase 3Interventional
Recruiting · Phase 1 · NCT07531095

Study of Tarlatamab + ZL-1310 +/- Anti-programmed Death Ligand 1 (Anti-PD-L1) in Small Cell Lung Cancer (SCLC)

The primary objective of this trial is to evaluate the safety and tolerability of tarlatamab in combination with ZL-1310 with or without durvalumab and to determine the maximum tolerated combination dose (MTCD) and/or recommended phase 2 dose (RP2D) of ZL-1310 in combination with tarlatamab.

PD-L1ImmunotherapyTreatmentPhase 1Interventional
Active Not Recruiting · Phase 1 · NCT04429087

A Study to Test Different Doses of Obrixtamig in Patients With Small Cell Lung Cancer and Other Neuroendocrine Tumours That Are Positive for DLL3

This study is open to adults with small cell lung cancer and other neuroendocrine cancers that are positive for the tumour marker delta-like 3 (DLL3). The study is in people with advanced cancer for whom previous treatment was not successful or no standard treatment exists. The purpose of this study is to find out the highest dose of obrixtamig and the best treatment schedule that people can tolerate. Obrixtamig is an antibody-like molecule (DLL3/CD3 bispecific) that may help the immune system fight cancer. In this study, obrixtamig is given to people for the first time. Interim clinical data are available for obrixtamig. Participants get obrixtamig either weekly or once every 3 weeks. If there is benefit for the participants and if they can tolerate it, the treatment is given for a maximum of 3 years. During this time, participants visit the study site about 20 times depending on the response to the treatment. Doctors record any unwanted effects and regularly check the general health of the participants.

TreatmentPhase 1Interventional
Active Not Recruiting · Phase 3 · NCT04988295

A Study of Amivantamab and Lazertinib in Combination With Platinum-Based Chemotherapy Compared With Platinum-Based Chemotherapy in Patients With Epidermal Growth Factor Receptor (EGFR)-Mutated Locally Advanced or Metastatic Non- Small Cell Lung Cancer After Osimertinib Failure

The purpose of this study is to assess the efficacy of adding lazertinib to amivantamab, carboplatin, and pemetrexed (LACP/ACP-L dosing strategies) and amivantamab, carboplatin and pemetrexed (ACP) compared with carboplatin and pemetrexed (CP) in participants with locally advanced or metastatic epidermal growth factor receptor (EGFR) Exon 19del or Exon 21 L858R substitution non-small cell lung cancer (NSCLC) after osimertinib failure. The purpose of the extension cohort is to further describe the safety and efficacy for the ACP-L dosing schedule versus ACP with additional data. After completion of the primary analysis, the study may eventually transition to an open-label extension (OLE) or long-term extension (LTE) phase during which participants will have the option to continue their assigned treatment.

EGFRLocally advancedMetastatic or stage IVTargeted therapyChemotherapy
Active Not Recruiting · Phase 1 / Phase 2 · NCT04644068

Study of AZD5305 as Monotherapy and in Combination With Anti-cancer Agents in Patients With Advanced Solid Malignancies

This research is designed to determine if experimental treatment with PARP inhibitor, AZD5305, alone, or in combination with anti-cancer agents is safe, tolerable, and has anti-cancer activity in patients with advanced solid tumors.

ChemotherapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Phase 3 · NCT07472517

DAREON ® -Lung-1: A Study in People With Advanced Small Cell Lung Cancer to Compare Obrixtamig Plus Atezolizumab, Carboplatin, and Etoposide Treatment With Standard Chemoimmunotherapy

This study is open to adults with advanced small cell lung cancer (SCLC). The purpose of this study is to find out if a study medicine called obrixtamig plus standard treatment (atezolizumab, carboplatin, and etoposide) improves survival when compared to standard treatment alone. Obrixtamig is an antibody-like molecule that may help the immune system fight cancer. Another purpose of the study is to test a medical device being developed to measure levels of the tumour marker DLL3. Participants are put into 2 groups randomly, which means by chance. One group receives obrixtamig and standard treatment. The other group receives standard treatment without obrixtamig. All treatments are given as infusions into a vein. Participants are in the study for up to 3 years. During this time, they visit the study site regularly. Participants in the group receiving obrixtamig stay overnight at the study site following the first 2 obrixtamig treatments. At the visits, doctors check the size of the tumour(s). The results are compared between the 2 groups to see whether the treatment works. The doctors also regularly check participants' health and take note of any unwanted effects.

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Terminated · Phase 1 · NCT05827614

Study of the CHK1 Inhibitor BBI-355, an ecDNA-directed Therapy (ecDTx), and the RNR Inhibitor BBI-825, in Subjects With Tumors With Oncogene Amplifications

BBI-355 is an oral, potent, selective checkpoint kinase 1 (or CHK1) small molecule inhibitor in development as an ecDNA (extrachromosomal DNA) directed therapy (ecDTx). BBI-825 is an oral, potent, selective ribonucleotide reductase (or RNR) small molecule inhibitor. This is a first-in-human, open-label, 2-part, Phase 1/2 study to determine the safety profile and identify the maximum tolerated dose and recommended Phase 2 dose of BBI-355 administered as a single agent or in combination with BBI-825 or other select therapies.

Metastatic or stage IVTreatmentPhase 1Interventional
Active Not Recruiting · Phase 1 / Phase 2 · NCT05142696

A Study of [177Lu]Lu-DOTA-TATE in Newly Diagnosed ES-SCLC Patients in Combination With Carboplatin, Etoposide and Atezolizumab

This study aims to establish a safe and well tolerated dose of \[177Lu\]Lu-DOTA-TATE in combination with carboplatin, etoposide and atezolizumab in this setting and to assess preliminary efficacy of this combination treatment versus the combination of carboplatin, etoposide, and atezolizumab.The study will be essential to assess a new potential therapeutic option in participants with this aggressive cancer type.

ImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2Interventional
Not Yet Recruiting · Phase 1 / Phase 2 · NCT07707895

DAREON®-36: A Study to Test Obrixtamig in Combination With ZL-1310 in People With Advanced Small Cell Lung Cancer or Other Neuroendocrine Cancers

This study is open to adults with advanced small cell lung cancer and other neuroendocrine cancers. The study has 2 parts. The purpose of Part 1 is to find a suitable dose of a combination study treatment, obrixtamig and ZL-1310. The purpose of Part 2 is to see how obrixtamig and ZL-1310 is tolerated when given with another medicine called a checkpoint inhibitor. Another purpose is to check whether the study treatment can stop the cancer from growing and keep it stable. Obrixtamig and ZL-1310 are being developed to help the immune system fight cancer. In Part 1, participants get obrixtamig and ZL-1310. In Part 2, participants get obrixtamig and ZL-1310 with a checkpoint inhibitor. Part 2 is only open to people with advanced small cell lung cancer. All study treatments are given as infusions into a vein. The study does not have a fixed duration. Participants can receive study treatment for up to 2 years if they benefit from treatment and can tolerate it. Participants visit the study site regularly, with some overnight stays required. During this time, doctors regularly check for health problems that could be caused by the study treatment. They also monitor the size of the tumour(s) and take laboratory tests.

ImmunotherapyTreatmentPhase 1 / Phase 2Interventional
Completed · Phase 2 · NCT03728361

Nivolumab and Temozolomide in Treating Patients With Recurrent or Refractory Small-Cell Lung Cancer or Advanced Neuroendocrine Cancer

This phase II trial studies how well nivolumab and temozolomide work in treating patients with small-cell lung cancer that has come back or does not respond to treatment, or neuroendocrine cancer that has spread to other places in the body. Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Drugs used in chemotherapy, such as temozolomide, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving nivolumab and temozolomide may work better in treating patients with small-cell lung cancer and neuroendocrine cancer.

Metastatic or stage IVRecurrent or relapsedResistant or refractoryImmunotherapyChemotherapy
Recruiting · Phase 1 · NCT06479811

[212Pb]VMT-Alpha-NET in Metastatic or Inoperable Somatostatin-Receptor Positive Gastrointestinal Neuroendocrine Tumors, Pheochromocytoma/Paragangliomas, Small Cell Lung, Renal Cell, and Head and Neck Cancers

Background: Some cancers have high levels of proteins called somatostatin receptors (SSTRs) on the surface of the tumors. These tumors can be in the lung, head and neck, digestive tract, kidneys, and in or near the adrenal glands. Researchers want to know if drug treatments that target SSTRs can help shrink these types of tumors. Objective: To test a study drug (\[212Pb\]VMT-Alpha-NET) in people with tumors that have SSTRs. Eligibility: People aged 18 years and older with tumors of the lung, kidneys, head and neck, digestive tract, or adrenal glands that have SSTRs. Their tumors must have spread to other organs and cannot be removed with surgery. Design: Participants will be screened. They will have a physical exam with blood and urine tests. They will have imaging scans and a test of their heart function. A sample of tumor tissue may be collected if one is not already available. \[212Pb\]VMT-Alpha-NET is given through a tube attached to a needle inserted into a vein. The drug will be given on the first day of four 8-week cycles. Participants will stay in the hospital for a few nights after each dose. They will have blood tests once a week during each cycle. Some participants will also get a related study drug (\[203Pb\]VMT-Alpha-NET). They will receive this drug a few days before the first 2 cycles. At 4, 24, and 48 hours after each infusion, they will have whole body scans. These scans will show where the study drug went in their body. Follow-up visits will continue up to 6 years after the last treatment.

Early-stage or resectableMetastatic or stage IVSurgeryTreatmentPhase 1
Recruiting · Phase 1 / Phase 2 · NCT07325136

A Study to Assess the Safety and Tolerability of BMS-986525 Alone and in Combination Therapy in Participants With Relapsed/Refractory Small Cell Lung Cancer

The purpose of this study is to assess the safety and tolerability of BMS-986525 alone and in combination with Pumitamig in participants with Relapsed/Refractory Small Cell Lung Cancer

Recurrent or relapsedResistant or refractoryTreatmentPhase 1 / Phase 2Interventional
Recruiting · Phase 2 · NCT07476287

Symbiotic-Lung-14: A Study to Learn About the Study Medicine Called PF08634404 in Combination With Chemotherapy in Adult Participants With Transformed Small Cell Lung Cancer

This study is being done to learn more about a new medicine called PF-08634404. The study team wants to understand how well PF-08634404 works when given alone or with chemotherapy . Chemotherapy is a type of cancer treatment that uses medicines to destroy cancer cells or stop them from growing. The study is for adults with Transformed Small Cell Lung Cancer (T-SCLC ). T SCLC is a rare lung cancer that happens when one type of lung cancer changes into a more aggressive type after treatment stops working. To join the study, participants must meet the following conditions: * Are aged 18 years or older * Diagnosed with T-SCLC and have not received treatment for this type of lung cancer (a single cycle of chemotherapy may be permitted) * Prior diagnosis of epidermal growth factor receptor (EGFR)-mutated non-small cell lung cancer treated with tyrosine kinase inhibitors (TKIs) * Have healthy organs based on medical tests and are in good physical condition After joining the study, adults will be given chemotherapy in addition to the study medicine. After this combination treatment is finished, the study medicine will be continued alone. Adults will receive the treatment through IV infusions (medicine given directly into a vein). All treatments will be done at clinical study sites, where a trained medical team will monitor adults during and after each visit.

EGFRTargeted therapyChemotherapyTreatmentPhase 2
Recruiting · Phase 2 · NCT06095505

A Study of Alisertib in Patients With Extensive Stage Small Cell Lung Cancer

PUMA-ALI-4201 is a Phase 2 study evaluating alisertib monotherapy in patients with pathologically-confirmed small cell lung cancer (SCLC) following progression on or after treatment with one platinum-based chemotherapy and anti-PD-L1/PD-1 immunotherapy agent. Up to one additional systemic anti-cancer therapy for SCLC is allowed, for a total of up to two prior treatment regimens. This study is intended to identify the biomarker-defined subgroup(s) that may benefit most from alisertib treatment and to evaluate the efficacy, safety, and pharmacokinetics of alisertib.

PD-L1ImmunotherapyChemotherapyTreatmentPhase 2
Recruiting · Phase 2 · NCT06773910

BMS-986489 (Atigotatug + Nivolumab) vs Durvalumab in Limited-stage Small-cell Lung Cancer (TIGOS-LS)

This is an open-label, randomized study of BMS-986489 (atigotatug + nivolumab fixed-dose combination) vs durvalumab in limited-stage (LS)-small-cell lung cancer (SCLC) participants. The main goals of this study are to: * Evaluate the efficacy of BMS-986489 vs durvalumab * Evaluate the safety profile of BMS-986489

ImmunotherapyTreatmentPhase 2Interventional
Recruiting · Phase 3 · NCT04804644

Testing if High Dose Radiation Only to the Sites of Brain Cancer Compared to Whole Brain Radiation That Avoids the Hippocampus is Better at Preventing Loss of Memory and Thinking Ability

This phase III trial compares the effect of stereotactic radiosurgery to standard of care memantine and whole brain radiation therapy that avoids the hippocampus (the memory zone of the brain) for the treatment of small cell lung cancer that has spread to the brain. Stereotactic radiosurgery is a specialized radiation therapy that delivers a single, high dose of radiation directly to the tumor and may cause less damage to normal tissue. Whole brain radiation therapy delivers a low dose of radiation to the entire brain including the normal brain tissue. Hippocampal avoidance during whole-brain radiation therapy (HA-WBRT) decreases the amount of radiation that is delivered to the hippocampus which is a brain structure that is important for memory. The drug, memantine, is also often given with whole brain radiotherapy because it may decrease the risk of side effects related to thinking and memory. Stereotactic radiosurgery may decrease side effects related to memory and thinking compared to standard of care HA-WBRT plus memantine.

Metastatic or stage IVRecurrent or relapsedRadiation therapySurgerySupportive Care
Recruiting · Phase 2 / Phase 3 · NCT07226999

Symbiotic-Lung-04: A Study to Learn About the Study Medicine Called PF-08634404 in Combination With Chemotherapy in Adult Participants With Extensive-Stage Small Cell Lung Cancer

This study is being done to learn more about a new medicine called PF-08634404 and how well it works when given with chemotherapy to adults with extensive-stage small cell lung cancer (ES-SCLC), a fast-growing type of lung cancer that has spread widely in the body. To join the study, participants must meet the following conditions: * Be 18 years or older. * Have extensive-stage small cell lung cancer confirmed by lab tests. * Have not received chemotherapy or radiation for this type of lung cancer. * Be in good physical condition and have healthy organs based on medical tests. The study has two parts: * In the first part, researchers will check how safe the study medicine is and how well people tolerate it when given with chemotherapy. * In the second part, they will compare study medicine plus chemotherapy to another approved treatment (atezolizumab plus chemotherapy) to see which works better. Participants will receive the treatment through IV infusions (medicine given directly into a vein). The treatment will be given in repeated time periods called cycles. Some participants will continue receiving the study medicine alone after the initial treatment.

ImmunotherapyChemotherapyTreatmentPhase 2 / Phase 3Interventional
Recruiting · Phase 3 · NCT06646276

A Study to Compare the Efficacy and Safety of BMS-986489 (BMS-986012+ Nivolumab Fixed Dose Combination) in Combination With Carboplatin Plus Etoposide to That of Atezolizumab With Carboplatin Plus Etoposide as First-Line Therapy in Participants With Extensive-Stage Small Cell Lung Cancer (TIGOS).

The Purpose of the Study is to Compare the Efficacy and Safety of BMS-986489 (Anti-fucosyl-GM1+ Nivolumab Fixed Dose Combination) in Combination with Carboplatin plus Etoposide to that of Atezolizumab with Carboplatin plus Etoposide as First-Line Therapy in Participants with Extensive-Stage Small Cell Lung Cancer.

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Terminated · Phase 1 / Phase 2 · NCT02769962

Trial of EP0057, a Nanoparticle Camptothecin With Olaparib in People With Relapsed/Refractory Small Cell Lung Cancer

Background: EP0057 (formerly CRLX101) consists of a sugar molecule cyclodextrin linked to a chemotherapy drug called camptothecin. The combined molecule or "nanoparticle drug conjugate" travels through the blood. Once inside cancer cells, the chemotherapy drug is released from the molecule. Olaparib is a drug that may stop cancer cells from repairing the deoxyribonucleic acid (DNA) damage caused by chemotherapy. Researchers want to see how safe it is to give EP0057 and olaparib together and to see how well the combination treats a specific type of lung cancer called small cell lung cancer (SCLC). Objectives: To test the safety and maximum dose of EP0057 and olaparib together. To test how well they treat small cell lung cancer. Eligibility: Adults 18 and older with small cell lung cancer. Design: Participants will be screened with standard cancer care tests. Participants will get the 2 study drugs in 28-day cycles. EP0057 will be given every 2 weeks, through a small plastic tube in an arm vein. Olaparib will be taken by mouth twice a day most days. Participants will keep a pill diary. For Cycle 1, participants will have 3 visits. All other cycles will have 2 visits. At study visits, participants may have: * Blood and hair samples taken * History and Physical exam * Questions about health and side effects * Pregnancy test * Optional tumor biopsy where a piece of tumor is removed by needle after numbing the skin. * Computed tomography (CT) scan * Injection of EP0057 (twice per cycle) * Olaparib prescription Participants will have a follow-up visit 4 weeks after finish taking the drugs. They will have a physical exam and blood tests. They may have a tumor biopsy. The study team will call the patient every 3 months for follow up after completing the study treatment.

Recurrent or relapsedResistant or refractoryChemotherapyTreatmentPhase 1 / Phase 2
Completed · Phase 2 · NCT04924101

Efficacy and Safety of Pembrolizumab Plus Investigational Agents in Combination With Chemotherapy as First-Line Treatment in Extensive-Stage Small Cell Lung Cancer (ES-SCLC) (MK-3475-B99/ KEYNOTE-B99)

The purpose of this study is to evaluate the use of investigational agents (MK-4830, boserolimab (MK-5890) and lenvatinib (MK-7902)) in combination with pembrolizumab (MK-3475) and etoposide/platinum chemotherapy for the first-line treatment of participants with extensive-stage small cell Lung Cancer (ES-SCLC). No formal hypothesis testing will be performed for this study.

ImmunotherapyChemotherapyTreatmentPhase 2Interventional
Recruiting · Phase 3 · NCT06801834

Study of Sacituzumab Govitecan Versus Standard of Care in Participants With Previously Treated Extensive Stage Small Cell Lung Cancer

The goal of this clinical study is to learn more about the study drug sacituzumab govitecan (SG; Trodelvy®; GS-0132; IMMU 132), versus standard of care (SOC) in participants with previously treated extensive stage small cell lung cancer (ES-SCLC). The primary objectives of this study are to compare the effect of SG to SOC on overall survival (OS).

TreatmentPhase 3InterventionalAfter prior treatment
Recruiting · Phase 1 / Phase 2 · NCT07155200

Small Cell Lung Cancer Irinotecan and CDC2-like Kinase Inhibition Trial (SLICK Trial)

Although small cell lung cancer (SCLC) responds dramatically to initial platinum-based chemotherapy, recurrences are nearly universal. The addition of atezolizumab, an immune checkpoint inhibitor, to front-line chemotherapy has recently demonstrated an improvement in overall survival (OS) in extensive stage SCLC (ES-SCLC). Subsequent lines of therapies are associated with modest efficacy in patients with relapsed disease, and the median overall survival is still 12 to 13 months at best. Cirtuvivint is a small molecule inhibitor of the CDC2-like kinases (CLKs) and dual-specificity tyrosine-regulated kinases (DYRKs); inhibiting CLKs and DYRKs has been shown in preclinical models to cause tumor growth inhibition and sensitize cancer cells to cytotoxic chemotherapy. This study is testing the hypothesis that adding cirtuvivint to chemotherapy in patients with relapsed SCLC will be well tolerated and improve the response rate and progression-free survival (PFS).

Recurrent or relapsedImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2
Recruiting · Phase 1 · NCT06807632

A Study of Valemetostat in Combination With Atezolizumab in People With Lung Cancer

This study will test whether valemetostat in combination with atezolizumab is a safe treatment that causes few or mild side effects in people with extensive-stage small cell lung cancer (SCLC). The researchers will test different doses of valemetostat to find the highest dose that causes few or mild side effects in participants. After the dose is found, researchers will test it in a new group of participants to learn more about the safety of the study treatment and see if it is an effective treatment for extensive-stage SCLC.

ImmunotherapyTreatmentPhase 1Interventional
Recruiting · Phase 1 / Phase 2 · NCT04585750

The Evaluation of PC14586 in Patients With Advanced Solid Tumors Harboring a TP53 Y220C Mutation (PYNNACLE)

The Phase 2 monotherapy portion of this study is currently enrolling and will evaluate the efficacy and safety of PC14586 (INN rezatapopt) in participants with locally advanced or metastatic solid tumors harboring a TP53 Y220C mutation. The Phase 1 portion of the study will assess the safety, tolerability and preliminary efficacy of multiple dose levels of rezatapopt as monotherapy and in Phase 1b in combination with pembrolizumab.

HER2Locally advancedMetastatic or stage IVImmunotherapyTreatment
Completed · Phase 3 · NCT05153239

Clinical Trial of Lurbinectedin as Single-agent or in Combination With Irinotecan Versus Topotecan or Irinotecan in Patients With Relapsed Small-cell Lung Cancer (LAGOON)

Multicenter, open-label, randomized, controlled phase III clinical trial to evaluate and compare the activity and safety of two experimental arms consisting of lurbinectedin as single agent (Group A) or the combination of lurbinectedin with irinotecan (Group B) versus Investigator's Choice (topotecan or irinotecan) as control arm (Group C), in Small-cell Lung Cancer (SCLC) patients who failed one prior platinum-containing line.

Recurrent or relapsedTreatmentPhase 3Interventional
Available · Not applicable · NCT07535359

Medical Access Program for Ifinatamab Deruxtecan in 3L+ Pretreated Extensive-stage Small Cell Lung Cancer

The purpose of this Medical Access Program (also referred to as an Expanded Access Program in the USA) is to provide access to I-DXd for eligible patients with extensive-stage small cell lung cancer (ES-SCLC) after two or more prior lines of treatment (including at least one platinum-based regimen), and for eligible patients who have no suitable treatment options and are not able to enter a clinical study.

Not applicableExpanded Access
Recruiting · Phase 1 / Phase 2 · NCT06287775

Testing the Combination of an Anti-cancer Drug, Iadademstat, With Other Anti-cancer Drugs (Atezolizumab or Durvalumab) at Improving Outcomes for Small Cell Lung Cancer

This phase I/II trial tests the safety, side effects, and best dose of iadademstat when given together with atezolizumab or durvalumab, and studies the effect of the combination in treating patients with small cell lung cancer that has spread outside of the lung in which it began or to other parts of the body (extensive stage) who initially received standard of care chemotherapy and immunotherapy. Iadademstat may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Immunotherapy with monoclonal antibodies, such as atezolizumab or durvalumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Adding iadademstat to either atezolizumab or durvalumab may be able to stabilize cancer for longer than atezolizumab or durvalumab alone in treating patients with extensive stage small cell lung cancer.

Metastatic or stage IVImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2
Active Not Recruiting · Not applicable · NCT06486428

Small Cell Lung Cancer Community Engagement to Eliminate Research Discepancies

This study will evaluate if a direct-to-patient, de-centralized, remote approach will improve clinical research outreach and engagement for patients with SCLC, in the context of a bio-specimen collection study. The study will also assess self-reported preferences and needs of patients with SCLC, regarding choosing and accessing novel therapies in research or standard clinical care settings and supportive gaps in this area, through an initial and 3 month follow up survey.

Not applicableObservational
Recruiting · Phase 1 · NCT07545954

DSP-0390 in Combination With Atezolizumab for Small Cell Lung Cancer

This is a single center pilot, phase Ib study with a safety lead-in evaluating the safety and preliminary efficacy of the EBP inhibitor DSP-0390 in combination with atezolizumab in patients with extensive stage small cell lung cancer (ES-SCLC) whose disease has not progressed after initial induction therapy with platinum-based chemotherapy and anti-PD-L1 immunotherapy (atezolizumab or durvalumab per treating physician's discretion). This trial is testing the hypothesis that inhibition of de novo cholesterol synthesis by DSP-0390 when used in combination with atezolizumab in the maintenance therapy of patients with ES-SCLC will be tolerable.

PD-L1ImmunotherapyChemotherapyTreatmentPhase 1
Active Not Recruiting · Phase 1 · NCT05990738

DAREON™-9: A Study to Test How Well Different Doses of BI 764532 Are Tolerated by People With Small Cell Lung Cancer When Taken Together With a Single Agent Chemotherapy

This study is open to adults with extensive stage small cell lung cancer. The study is in people with advanced cancer that had previously received platinum-based chemotherapy and are eligible to receive a single agent chemotherapy treatment. The purpose of this study is to find the highest dose of BI 764532 that people can tolerate when taken together with a single agent chemotherapy. BI 764532 is an antibody-like molecule that may help the immune system fight cancer. Participants may continue to take BI 764532 as long as they benefit from treatment and can tolerate it. During this time, participants visit the study site regularly. The visits also depend on the response to the treatment. At the study visits, the doctors check the health of the participants, take necessary laboratory tests, and note any health problems that could have been caused by the study treatment.

ChemotherapyTreatmentPhase 1Interventional
Withdrawn · Not applicable · NCT07075627

A Study to Evaluate the Incidence of Clinically Suspicious Lambert-Eaton Myasthenic Syndrome (LEMS) in Subjects Diagnosed With Small Cell Lung Cancer (SCLC)

This is a multi-center observational study in subjects with a diagnosis of small cell lung cancer. Screening and/or medical record review for symptoms associated with Lambert Eaton Myasthenic Syndrome (LEMS) will be conducted.

Not applicableObservational
Terminated · Phase 2 · NCT03662074

Subsequent Line Gemcitabine and Nivolumab in Treating Participants With Metastatic Small Cell Lung Cancer

This phase II pilot trial studies how well gemcitabine and nivolumab work in treating participants with small cell lung cancer that has spread to other parts of the body after other treatments have failed. Drugs used in chemotherapy, such as gemcitabine, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Monoclonal antibodies, such as nivolumab, may interfere with the ability of tumor cells to grow and spread. Giving second-line gemcitabine and nivolumab may work better in treating participants with small cell lung cancer.

Metastatic or stage IVImmunotherapyChemotherapyTreatmentPhase 2
Recruiting · Phase 1 · NCT06066138

A Study of Therapeutic Drug Monitoring-Based Atezolizumab Dosing

Background: A type of drug called monoclonal antibody immune checkpoint inhibitors are often used in cancer treatment. These drugs help the body s immune system fight cancer by blocking proteins that cause cancer cells to grow. One of these drugs (atezolizumab) is approved to treat certain cancers. Researchers want to find out if lower doses of this drug might provide the same benefit with fewer adverse effects. Objective: To test different doses and timing of atezolizumab for people with cancer. Eligibility: People aged 18 years and older with cancer that has spread locally or to other organs. They must be eligible for treatment with the study drug. Design: Participants will be screened. They will have blood tests and imaging scans. They will provide a sample of tissue from their tumor. Atezolizumab is administered through a tube attached to a needle inserted into a vein in the arm. Participants will take this drug alone or combined with other drugs prescribed for their care. The first 2 treatments will be done per the FDA recommended dose and schedule. Before administering the second dose of the study drug, researchers will check the level of the drug in the participant s blood. Depending on those results, their 3rd dose will be scheduled 2 to 6 weeks later. For the 3rd dose of the study drug, participants will switch to the FDA minimum dosage. Dosages of any other drugs will not change. Researchers will continue to test the levels of the drug in participants blood before each treatment for 16 weeks. After that, these levels will be tested every 3 months. Study treatment may last up to 2 years.

Locally advancedMetastatic or stage IVImmunotherapyTreatmentPhase 1
Active Not Recruiting · Phase 2 · NCT03896503

Randomized Trial of Topotecan With M6620, an ATR Kinase Inhibitor, in Small Cell Lung Cancers and Small Cell Cancers Outside of the Lungs

This phase II trial studies how well berzosertib (M6620) works when given in combination with topotecan hydrochloride (topotecan) compared with topotecan alone in treating patients with small cell lung cancer that has come back (relapsed), or small cell cancer that arises from a site other than the lung (extrapulmonary). Drugs used in chemotherapy, such as topotecan hydrochloride, work by damaging the DNA (deoxyribonucleic acid) in tumor cells, causing those cells to die and the tumor to shrink. However, some tumor cells can become less affected by chemotherapy because they have ways to repair the damaged DNA. The addition of M6620 could help topotecan hydrochloride shrink the cancer and prevent it from returning by blocking enzymes needed for DNA repair.

Recurrent or relapsedChemotherapyTreatmentPhase 2Interventional
Active Not Recruiting · Phase 1 · NCT04514497

Testing the Addition of an Anti-cancer Drug, BAY 1895344, to Usual Chemotherapy for Advanced Stage Solid Tumors, With a Specific Focus on Patients With Small Cell Lung Cancer, Poorly Differentiated Neuroendocrine Cancer, and Pancreatic Cancer

This phase I trial tests the safety, side effects and best dose of BAY 1895344 when given together with usual chemotherapy (irinotecan or topotecan) in treating patients with solid tumors that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced), with a specific focus on small cell lung cancer, poorly differentiated neuroendocrine cancer, and pancreatic cancer. BAY 1895344 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Chemotherapy drugs, such as irinotecan and topotecan, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Adding BAY 1895344 to irinotecan or topotecan may be safe and tolerable in treating patients with advanced solid tumors.

Early-stage or resectableLocally advancedMetastatic or stage IVChemotherapyTreatment
Recruiting · Not applicable · NCT06410300

Cardiopulmonary Monitoring in Lung Cancer Patients Receiving Combined Thoracic Radiotherapy and Immunotherapy

The overall purpose of this study is to evaluate cardiopulmonary toxicity in patients with lung cancer (NSCLC or SCLC) undergoing combined thoracic radiotherapy ± chemotherapy and immunotherapy through timed monitoring and blood sample collection and to identify correlative biomarkers for predicting cardiopulmonary adverse events.

ImmunotherapyChemotherapyRadiation therapyNot applicableObservational
Recruiting · Phase 2 · NCT07339059

Study of Sacituzumab Govitecan With Atezolizumab/Durvalumab as Maintenance Therapy for Extensive-Stage Small Cell Lung Cancer

The goal of this clinical trial is to learn if the combination of sacituzumab govetican (SG) and atezolizumab/durvalumab is effective in controlling cancer tumor growth in adults with extensive stage small cell lung cancer. These drugs are FDA approved individually in different cancers. This combination is evaluated in breast cancer and showed promising combination. The effectiveness of this treatment combination will be measured by changes in tumor size and appearance of new tumors. Participants in the trial will: * receive treatment SG and immunotherapy every 21 days for up to 2 years or until it is no longer works for the patient. * CT scans at 6weeks for first 6 cycles and then every 9-12 weeks and MRI brain every 12 weeks. * provide tissue (optional) and blood for additional testing (learn about the cancer).

ImmunotherapyTreatmentPhase 2Interventional
Recruiting · Phase 1 · NCT07006727

Phase I Study of [225Ac]Ac-ETN029 in Patients With Advanced DLL3-expressing Solid Tumors

The purpose of this study is to evaluate the safety, tolerability, dosimetry and preliminary efficacy of \[225Ac\]Ac-ETN029 and the safety and imaging properties of \[111In\]In-ETN029 in patients aged ≥ 18 years with locally advanced or metastatic DLL3 positive cancers.

Locally advancedMetastatic or stage IVTreatmentPhase 1Interventional
Terminated · Phase 1 / Phase 2 · NCT05616624

ADI-PEG 20 in Combination With Gemcitabine and Docetaxel After Progression on Frontline Therapy in Non-small Cell and Small Cell Lung Cancers

In this study, patients with small cell or non-small cell lung cancer will receive ADI-PEG 20, gemcitabine, and docetaxel after demonstrated progression on frontline therapy. In phase I of the study, up to 6 dose levels will be tested to find the recommended phase II dose (RP2D), after which patients enrolling to phase II will be treated at that dose level to assess efficacy. Although safety and tolerability has been previously determined in the sarcoma population, dose de-escalations of the chemotherapies in that patient population were required. Therefore, a phase I portion will be incorporated to determine the RP2D of the triplet in this population.

ChemotherapyTreatmentPhase 1 / Phase 2InterventionalAfter prior treatment
Recruiting · Phase 3 · NCT06712355

Safety and Efficacy of BNT327, an Investigational Therapy in Combination With Chemotherapy for Patients With Untreated Small-cell Lung Cancer

This is a Phase III, multisite, randomized, double-blinded study to investigate pumitamig (BNT327) combined with chemotherapy (etoposide/carboplatin) compared to atezolizumab combined with chemotherapy (etoposide/carboplatin) for the treatment of participants with previously untreated extensive-stage small-cell lung cancer (ES-SCLC).

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Recruiting · Phase 1 · NCT06931626

Study of NMS-03305293 in Adult Patient With Relapsed Small Cell Lung Cancer

This is an open-label study of NMS-03305293 with Temozolomide (TMZ) in patients with Small Cell Lung Cancer (SCLC). The aim of this study is to determine the safety and tolerability, as well as to evaluate the anti-tumor efficacy and pharmacokinetics of NMS-03305293 in combination with TMZ.

Recurrent or relapsedTreatmentPhase 1Interventional
Recruiting · Phase 2 · NCT05882058

DAREON™-5: A Study to Test Whether Different Doses of BI 764532 Help People With Small Cell Lung Cancer or Other Neuroendocrine Cancers

This study is open to adults with small cell lung cancer and other neuroendocrine tumours. The study is in people with advanced cancer for whom previous treatment was not successful or no standard treatment exists. The purpose of this study is to find a suitable dose of BI 764532 (also called obrixtamig) that people with advanced cancer can tolerate. 2 different doses of BI 764532 are tested in this study. Another purpose is to check whether BI 764532 can make tumours shrink. BI 764532 is an antibody-like molecule (DLL3/CD3 bispecific) that may help the immune system fight cancer. The study has 3 parts. In Part 1, participants are put into 2 groups randomly, which means by chance. Participants have an equal chance of being in either group. One group gets dose 1 of BI 764532 and the other group gets dose 2 of BI 764532. In Part 2 and Part 3, all participants receive the same dose of BI 764532. Part 2 and Part 3 are open to people with a certain kind of tumour called extrapulmonary neuroendocrine carcinoma. All participants receive BI 764532 as an infusion into a vein when starting treatment. If there is benefit for the participants and if they can tolerate it, the treatment is given up to the maximum duration of the study. During this time, participants visit the study site regularly. The total number of visits depends on how they respond to and tolerate the treatment. The first study visits include an overnight stay to monitor participants´ safety. Doctors record any unwanted effects and regularly check the general health of the participants.

TreatmentPhase 2Interventional
Active Not Recruiting · Phase 2 · NCT05060016

A Phase 2 Study of Tarlatamab in Patients With Small Cell Lung Cancer (SCLC)

The main aim of this study is to: * evaluate safety and efficacy (per Response Evaluation Criteria in Solid Tumors version 1.1 \[RECIST 1.1\] by investigator) of 2 dose levels of tarlatamab for Part 1 only * evaluate anti-tumor activity of tarlatamab as determined by objective response rate (ORR) per RECIST 1.1 by blinded independent central review (BICR) for Part 1 and 2 * evaluate safety of reduced mandatory monitoring period in Cycle 1 at selected dose of tarlatamab for Part 3

Recurrent or relapsedResistant or refractoryTreatmentPhase 2Interventional
Recruiting · Phase 1 · NCT06131840

A Study of SGN-CEACAM5C in Adults With Advanced Solid Tumors

This clinical trial is studying advanced solid tumors. Solid tumors are cancers that start in a part of your body like your lungs or liver instead of your blood. Once tumors have grown bigger in one place but haven't spread, they're called locally advanced. If your cancer has spread to other parts of your body, it's called metastatic. When a cancer has gotten so big it can't easily be removed or has spread to other parts of the body, it is called unresectable. These types of cancer are harder to treat. Participants in this study must have cancer that has come back or did not get better with treatment. Participants must have a solid tumor cancer that can't be treated with standard of care drugs. This clinical trial uses an experimental drug called PF-08046050. PF-08046050 is a type of antibody-drug conjugate or ADC. ADCs are designed to stick to cancer cells and kill them. They may also stick to some normal cells. This study will test the safety of PF-08046050 in participants with solid tumors that are hard to treat or have spread throughout the body. This study has 5 different study parts. Part A and Part B of the study will find out how much PF-08046050 should be given to participants. Part C will use the information from Parts A and B to see if PF-08046050 is safe and if it works to treat certain solid tumor cancers. Part D and E of the study, together with information from Parts A and B, will find out how much PF-08046050 should be given in combination with other anti-cancer agents. Part E will use the information from Parts A, B, and D to see if PF-08046050 is safe in combination with other anti-cancer agents and if it works to treat a certain solid tumor.

Early-stage or resectableLocally advancedMetastatic or stage IVTreatmentPhase 1
Completed · Phase 1 / Phase 2 · NCT04826341

A Phase I/II Study of Sacituzumab Govitecan Plus Berzosertib in Small Cell Lung Cancer, Extra-Pulmonary Small Cell Neuroendocrine Cancer and Homologous Recombination-Deficient Cancers Resistant to PARP Inhibitors

Background: Small cell lung cancer and PARP inhibitor resistant tumors are aggressive cancers. Current treatments for people with these tumors yield little benefit. Researchers want to see if a combination of drugs can help. Objective: To find a safe combination of sacituzumab govitecan and berzosertib and to see if this will cause small cell lung cancer and PARP inhibitor resistant tumors to shrink. Eligibility: People ages 18 and older with a solid tumor, small cell lung cancer, or a homologous recombination-deficient cancer that is resistant to PARP inhibitors Design: Participants will be screened with: Standard clinical exams and tests EKG to test the heart Medical documentation to confirm cancer diagnosis Participants will get sacituzumab govitecan by vein on days 1 and 8 of each 21-day cycle. They will get berzosertib by vein on days 2 and 9. Treatment will continue as long as they can tolerate the drugs and their tumors are either stable or getting better. Before treatment and at least once per cycle, participants will have a physical exam and blood tests. Before treatment and every 2 or 3 cycles, they will have a CT scan. They will have a contrast agent injected into a vein for the scan. Participants will give blood and hair samples and tumor biopsies for research. Biopsies will be taken with a small needle under imaging guidance. After they stop treatment, participants will have a visit 1 month later. They will then be contacted by phone or email every 3 months for the rest of their lives.

TreatmentPhase 1 / Phase 2Interventional
Recruiting · Phase 1 / Phase 2 · NCT06814496

Radiation Combined With BIspecific T-Cell Engager in DLL3 Expressing Tumors

Phase I study to examine safety of the addition of concurrent tarlatamab with standard palliative and consolidative RT regimens , with a main cohort of N=20-24 patients with extracranial anatomic radiation sites. I) After lead in of 10 patients demonstrating safety of treatment, allow for expansion to cranial sites of disease (N=6-10) with continued enrollment in main cohort II) If toxicity criteria is not met in concurrent RT tarlatamab cohort, we will continue with sequential RT, either A) delivered within 7 days prior to cycle 1 day 1, or B) delivered during cycle 1 -2 but with pre- and post-RT washout of 7 days with no drug during RT, to examine safety in a temporally spaced setting. III) If sequential tarlatamab and radiation is not deemed safe, we would allow for continued enrollment to assess efficacy of drug sans radiation treatment, enriching for tumors not of small cell lung cancer histology and allowing for patients without sites amenable to RT. A nested phase II study will attempt to assess for ORR and safety of study intervention amongst tumors not of small cell lung cancer histology.

METRadiation therapySupportive or behavioral careTreatmentPhase 1 / Phase 2
Recruiting · Phase 2 · NCT07459634

A Study of Lurbinectedin in Combination With Durvalumab for the Treatment of Participants With ES-SCLC

The purpose of this study is to evaluate the efficacy and safety of lurbinectedin in combination with durvalumab for the treatment of participants with extensive stage small cell lung cancer (ES-SCLC) whose disease has not progressed after first line (1L) induction therapy.

ImmunotherapyTreatmentPhase 2InterventionalAfter prior treatment
Recruiting · Phase 1 · NCT07080242

Evaluating BL-M14D1 in Subjects With Locally Advanced or Metastatic Small Cell Lung Cancer and Neuroendocrine Tumors

The objective of this study is to evaluate the Safety, Tolerability, Pharmacokinetics, and Efficacy of BL-M14D1 in Subjects with locally Advanced or Metastatic Small Cell Lung Cancer and Other Neuroendocrine Neoplasms

Locally advancedMetastatic or stage IVTreatmentPhase 1Interventional
Recruiting · Phase 1 / Phase 2 · NCT06047379

Safety and Efficacy of NEO212 in Patients With Astrocytoma IDH-mutant, Glioblastoma IDH-wildtype or Brain Metastasis

This multi-site, Phase 1/2 clinical trial is an open-label study to identify the safety, pharmacokinetics, and efficacy of a repeated dose regimen of NEO212 alone for the treatment of patients with radiographically-confirmed progression of Astrocytoma IDH- mutant, Glioblastoma IDH-wildtype, and the safety, pharmacokinetics and efficacy of a repeated dose regimen of NEO212 when given with select SOC for the treatment of solid tumor patients with radiographically confirmed uncontrolled metastases to the brain. The study will have three phases, Phase 1, Phase 2a and Phase 2b.

ImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2Interventional
Active Not Recruiting · Phase 3 · NCT03043872

Durvalumab ± Tremelimumab in Combination With Platinum Based Chemotherapy in Untreated Extensive-Stage Small Cell Lung Cancer (CASPIAN)

This is a phase III, randomized, open-label, multicenter, global study to determine the efficacy and safety of combining durvalumab ± tremelimumab with platinum based chemotherapy (EP) followed by durvalumab ± tremelimumab maintenance therapy versus EP alone as first-line treatment in patients with extensive-stage small-cell lung cancer

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Recruiting · Phase 3 · NCT07005128

A Study Comparing Tarlatamab, Durvalumab, Carboplatin, and Etoposide Versus Durvalumab, Carboplatin, and Etoposide in First-line Extensive Stage Small-Cell Lung Cancer (ES-SCLC)

The main objective of the study is to compare the efficacy of tarlatamab in combination with durvalumab, carboplatin and etoposide to the combination of durvalumab, carboplatin and etoposide on prolonging overall survival (OS).

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Recruiting · Phase 1 / Phase 2 · NCT05652686

A Study of Peluntamig (PT217) in Patients With Neuroendocrine Carcinomas Expressing DLL3 (the SKYBRIDGE Study)

This is a first-in-human, Phase 1/2, open-label, dose escalation, dose expansion and combination study designed to evaluate the safety, tolerability, pharmacokinetics, pharmacodynamics, and preliminary efficacy of Peluntamig (PT217) as a monotherapy and in combination with chemotherapy.

ImmunotherapyChemotherapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Not applicable · NCT05889546

Rapid Autopsy Protocol for Patients With Small Cell Lung Cancer

This is pilot study to establish a rapid autopsy program in Small Cell Lung Cancer (SCLC) at the Indiana University Simon Comprehensive Cancer Center and outline the components necessary for tumor tissue collection.

Not applicableObservational
Active Not Recruiting · Not applicable · NCT03391362

Stereotactic Radiation in Patients With Small Cell Lung Cancer and 1-10 Brain Metastases

This research study is studying stereotactic radiation (focused/pinpoint radiation that targets each individual tumor but not the surrounding brain) instead of whole-brain radiation (radiation targeting the entire brain) as a possible treatment for patients with small cell lung cancer and 1-10 brain metastases. The intervention involved in this study is: -Stereotactic (focused, pinpoint) radiation

TreatmentNot applicableInterventionalBrain metastases
Active Not Recruiting · Phase 1 / Phase 2 · NCT02734004

A Phase I/II Study of MEDI4736 in Combination With Olaparib in Patients With Advanced Solid Tumors.

The purpose of this study is to look at the effectiveness, safety, and antitumor activity of study drugs MEDI4736 in combination with olaparib (modules 1, 2, 3, 4, 5 and 7) and MEDI4736 in combination with olaparib and bevacizumab (module 6). It will also examine what happens to the study drugs in the body and investigate how well the combination between MEDI4736, olaparib and bevacizumab is tolerated.

TreatmentPhase 1 / Phase 2Interventional
Completed · Phase 2 / Phase 3 · NCT02635009

Whole-Brain Radiation Therapy With or Without Hippocampal Avoidance in Limited Stage or Extensive Stage Small Cell Lung Cancer

This randomized phase II/III trial studies how well whole-brain radiation therapy works and compares it with or without hippocampal avoidance in treating patients with small cell lung cancer that is found in one lung, the tissues between the lungs, and nearby lymph nodes only (limited stage) or has spread outside of the lung in which it began or to other parts of the body (extensive stage). Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. The hippocampus is part of the brain that is important for memory. Avoiding the hippocampus during whole-brain radiation could decrease the chance of side effects on memory and thinking. It is not yet known whether giving whole-brain radiation therapy is more effective with or without hippocampal avoidance in treating patients with small cell lung cancer.

Radiation therapySupportive CarePhase 2 / Phase 3Interventional
Active Not Recruiting · Phase 2 · NCT04699838

Chemo-Immunotherapy Followed by Durvalumab and Ceralasertib in Treatment Naïve Patients With Extensive Stage Small Cell Lung Cancer

The primary objective of this single arm study is to estimate the progression free survival of previously-untreated patients with extensive stage small cell lung cancer. Patients will receive initial chemo-immunotherapy followed by maintenance therapy with durvalumab and oral ceralasertib.

ImmunotherapyChemotherapyTreatmentPhase 2Interventional
Active Not Recruiting · Phase 1 · NCT06077500

DAREONᵀᴹ-8: A Study to Test How Well Different Doses of BI 764532 in Addition to Standard of Care Are Tolerated by People With Advanced Small Cell Lung Cancer

This study is open to adults with extensive stage small cell lung cancer. The study is in people with advanced cancer that are eligible for standard of care including chemotherapy and anti-PD-L1 (Programmed Cell Death Ligand 1) immunotherapy. The purpose of this study is to find out the highest dose of BI 764532 (also called obrixtamig) that people can tolerate when taken together with standard of care. BI 764532 is an antibody-like molecule that may help the immune system fight cancer. Participants get BI 764532 and different standard treatments as infusions into a vein. If there is benefit for the participants and if they can tolerate it, the treatment is given for the entire duration of the study. During this time, participants visit the study site regularly. The visits also depend on the response to the treatment. At the study visits, the doctors check the health of the participants, take necessary laboratory tests, and note any health problems that could have been caused by the study treatment.

PD-L1ImmunotherapyChemotherapyTreatmentPhase 1
Recruiting · Phase 2 · NCT07423585

Tarlatamab for the Treatment of Extensive Stage Small-cell Lung Cancer

This phase II trial tests the effect of tarlatamab in treating patients with small-cell lung cancer (SCLC) that has spread from where it first started to other parts of the body (extensive-stage). SCLC is an aggressive cancer that has a low 5-year survival rate. Tarlatamab is a bispecific antibody that can bind to two different antigens at the same time. Tarlatamab binds to DLL3, a protein found on the surface of some types of tumor cells, including small-cell lung cancer, and to CD3, which is present on immune system T-cells (a type of white blood cell), and may interfere with tumor cell ability to grow and spread. This may increase the time to progression (growing, spreading, or worsening) and help patients with extensive-stage SCLC live longer.

TreatmentPhase 2Interventional
Active Not Recruiting · Phase 2 · NCT04745689

Study of AZD2811 + Durvalumab in ES-SCLC

A Phase II Multicenter, Open-Label, Single Arm Study to Determine the Efficacy, Safety and Tolerability of AZD2811 and Durvalumab Combination as Maintenance Therapy After Induction with Platinum-Based Chemotherapy Combined with Durvalumab, for the First-Line Treatment of Patients with Extensive Stage Small-Cell Lung Cancer.

ImmunotherapyChemotherapyTreatmentPhase 2Interventional
Withdrawn · Phase 3 · NCT00006344

Radiation Therapy in Preventing Brain Metastases in Patients With Small Cell Lung Cancer

RATIONALE: Radiation therapy uses high-energy x-rays to damage tumor cells. It is not yet known which regimen of radiation therapy may be more effective in preventing brain metastases. PURPOSE: Randomized phase III trial to study the effectiveness of radiation therapy in preventing brain metastases in patients who have small cell lung cancer that has been diagnosed within the past year.

Radiation therapyTreatmentPhase 3InterventionalBrain metastases
Active Not Recruiting · Phase 3 · NCT05091567

A Phase III, Open-Label Study of Maintenance Lurbinectedin in Combination With Atezolizumab Compared With Atezolizumab in Participants With Extensive-Stage Small-Cell Lung Cancer

Study GO43104 is a Phase III, randomized, open-label, multicenter study of lurbinectedin in combination with atezolizumab compared with atezolizumab alone administered as maintenance therapy in participants with extensive-stage small-cell lung cancer (ES-SCLC) after first-line induction therapy with carboplatin, etoposide, and atezolizumab. The study consists of 2 phases: an induction phase and a maintenance phase. Participants need to have an ongoing response or stable disease per the Response Evaluation Criteria in Solid Tumor (RECIST) v1.1 criteria after completion of 4 cycles of carboplatin, etoposide, and atezolizumab induction treatment in order to be considered for eligibility screening for the maintenance phase. Eligible participants will be randomized in a 1:1 ratio to receive either lurbinectedin plus atezolizumab or atezolizumab in the maintenance phase.

ImmunotherapyChemotherapyTreatmentPhase 3Interventional
Active Not Recruiting · Phase 2 · NCT06227546

MGC018 in Patients With Relapsed or Refractory Extensive-Stage Small-Cell Lung Cancer

The goal of this clinical trial is to test MGC018 in patients with relapsed or refractory Extensive-Stage Small-Cell Lung Cancer (ES-SCLC). The main question it aims to answer is: • Does the administration of MGC018 achieve a clinically meaningful response rate of 25% in patients with relapsed or refractory ES-SCLC? Participants enrolled in the trial will receive MGC018 through an intravenous (IV) infusion, every 28 days until disease progression or unacceptable toxicity. Tumor assessment will be done every 2 cycles (28 day cycles). Blood samples will be taken for biomarker analysis before treatment, on cycle 3 day 1, and at progression. A pretreatment biopsies will be done.

Recurrent or relapsedResistant or refractoryTreatmentPhase 2Interventional
Completed · Phase 1 / Phase 2 · NCT01642251

Cisplatin and Etoposide With or Without Veliparib in Treating Patients With Extensive Stage Small Cell Lung Cancer

This randomized phase I/II trial studies the side effects and best dose of veliparib when given together with or without cisplatin and etoposide and to see how well they work in treating patients with extensive stage small cell lung cancer or large cell neuroendocrine non-small cell lung cancer that has spread to other parts of the body. Drugs used in chemotherapy, such as cisplatin and etoposide, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Veliparib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving cisplatin and etoposide with or without veliparib may work better in treating patients with extensive stage small cell lung cancer or metastatic large cell neuroendocrine non-small cell lung cancer.

Metastatic or stage IVChemotherapyTreatmentPhase 1 / Phase 2Interventional
Completed · Phase 2 · NCT00887159

A Randomized Phase II Study of Cisplatin and Etoposide in Combination With Either Hedgehog Inhibitor GDC-0449 or IGF-1R MOAB IMC-A12 for Patients With Extensive Stage

This randomized phase II trial studies cisplatin and etoposide to see how well they work when given with or without Hedgehog inhibitor GDC-0449 (vismodegib) or IGF-1R MOAB IMC-A12 (cixutumumab) in treating patients with extensive-stage small cell lung cancer. Drugs used in chemotherapy, such as cisplatin, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Etoposide may slow the growth of tumor cells by blocking some of the enzymes needed for cell growth. Vismodegib may slow the growth of tumor cells. Monoclonal antibodies, such as cixutumumab, may interfere with the ability of tumor cells to grow and spread. It is not yet known whether giving cisplatin and etoposide are more effective when given together with vismodegib or cixutumumab in treating small cell lung cancer.

Recurrent or relapsedChemotherapyTreatmentPhase 2Interventional
Recruiting · Phase 1 / Phase 2 · NCT07564401

A Study to Evaluate DJI136, a DLL3-targeted CAR-T Therapy

This is a Phase I/II, open-label, non-randomized, multi-center study in patients with extensive-stage small cell lung cancer (ES-SCLC) to determine the recommended dose(s) (RD) and to evaluate the safety, tolerability and preliminary efficacy of DJI136.

Cell or gene therapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Phase 1 · NCT07046923

A Study of LY4175408 in Participants With Advanced Cancer

The purpose of this study is to measure the safety and efficacy of LY4175408 in participants with selected advanced cancer. In addition, this study will evaluate how much LY4175408 gets into the bloodstream, how it is broken down, and how long it takes the body to get rid of it. Participation could last up to 4 years.

ImmunotherapyChemotherapyTreatmentPhase 1Interventional
Active Not Recruiting · Phase 1 · NCT06257264

A Study to Examine the Safety of Different Doses of BG-68501 Given to Participants With Advanced-Stage Tumors

This study is a first-in-human (FIH), Phase 1a/1b study of BG-68501, a cyclin-dependent kinase-2 inhibitor (CDK2i), to assess the safety, tolerability, pharmacokinetics (PK), pharmacodynamics, and preliminary antitumor activity of BG-68501 in participants with advanced, nonresectable, or metastatic solid tumors as monotherapy and in combination with fulvestrant with or without BGB-43395, a selective CDK4 inhibitor, in adults with hormone receptor positive (HR+)/human epidermal growth factor receptor 2 negative (HER2-) breast cancer (BC). The study will also identify a recommended dose for expansion (RDFE) for BG-68501 as monotherapy and in combination for subsequent disease directed studies. The study will be conducted in 2 parts: Part 1 (dose escalation and safety expansion, including evaluation of food effect) and Part 2 (dose expansion).

HER2Early-stage or resectableMetastatic or stage IVTreatmentPhase 1
Terminated · Phase 1 · NCT05130255

GD2-SADA:177Lu-DOTA Complex in Patients With Solid Tumors Known to Express GD2

Patients with Small Cell Lung Cancer, High Risk Neuroblastoma, Sarcoma and Malignant Melanoma will be treated with GD2-SADA:177Lu-DOTA complex(The IMP is a two-step radioimmunotherapy, delivered as two separate products GD2-SADA and 177Lu-DOTA) to assess safety and tolerability

ImmunotherapyTreatmentPhase 1Interventional
Recruiting · Phase 1 / Phase 2 · NCT07153055

Lurbinectedin With Osimertinib in Transformed Small Cell Lung Cancer

This open-label, Phase I/II trial is studying the safety and effectiveness of an experimental drug combination, lurbinectedin with osimertinib, against a rare type of cancer known as transformed small cell lung cancer (SCLC).

Targeted therapyTreatmentPhase 1 / Phase 2Interventional
Active Not Recruiting · Phase 2 · NCT02498613

A Phase 2 Study of Cediranib in Combination With Olaparib in Advanced Solid Tumors

This phase II trial studies cediranib maleate in combination with olaparib in treating patients with solid tumors that have spread to other parts of the body (advanced/metastatic) or cannot be removed by surgery (unresectable), including breast cancer, non-small cell lung cancer, small cell lung cancer, and pancreatic cancer. Cediranib maleate and olaparib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Cediranib maleate may also block the flow of oxygen to the tumor, and may help make the tumor more sensitive to olaparib.

Early-stage or resectableLocally advancedMetastatic or stage IVSurgeryTreatment
Active Not Recruiting · Phase 2 · NCT02834013

Nivolumab and Ipilimumab in Treating Patients With Rare Tumors

This phase II trial studies nivolumab and ipilimumab in treating patients with rare tumors. Immunotherapy with monoclonal antibodies, such as nivolumab and ipilimumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. This trial enrolls participants for the following cohorts based on condition: 1. Epithelial tumors of nasal cavity, sinuses, nasopharynx: A) Squamous cell carcinoma with variants of nasal cavity, sinuses, and nasopharynx and trachea (excluding laryngeal, nasopharyngeal cancer \[NPC\], and squamous cell carcinoma of the head and neck \[SCCHN\]) B) Adenocarcinoma and variants of nasal cavity, sinuses, and nasopharynx (closed to accrual 07/27/2018) 2. Epithelial tumors of major salivary glands (closed to accrual 03/20/2018) 3. Salivary gland type tumors of head and neck, lip, esophagus, stomach, trachea and lung, breast and other location (closed to accrual) 4. Undifferentiated carcinoma of gastrointestinal (GI) tract 5. Adenocarcinoma with variants of small intestine (closed to accrual 05/10/2018) 6. Squamous cell carcinoma with variants of GI tract (stomach small intestine, colon, rectum, pancreas) (closed to accrual 10/17/2018) 7. Fibromixoma and low grade mucinous adenocarcinoma (pseudomixoma peritonei) of the appendix and ovary (closed to accrual 03/20/2018) 8. Rare pancreatic tumors including acinar cell carcinoma, mucinous cystadenocarcinoma or serous cystadenocarcinoma. Pancreatic adenocarcinoma is not eligible (closed to accrual) 9. Intrahepatic cholangiocarcinoma (closed to accrual 03/20/2018) 10. Extrahepatic cholangiocarcinoma and bile duct tumors (closed to accrual 03/20/2018) 11. Sarcomatoid carcinoma of lung 12. Bronchoalveolar carcinoma lung. This condition is now also referred to as adenocarcinoma in situ, minimally invasive adenocarcinoma, lepidic predominant adenocarcinoma, or invasive mucinous adenocarcinoma 13. Non-epithelial tumors of the ovary: A) Germ cell tumor of ovary B) Mullerian mixed tumor and adenosarcoma (closed to accrual 03/30/2018) 14. Trophoblastic tumor: A) Choriocarcinoma (closed to accrual) 15. Transitional cell carcinoma other than that of the renal, pelvis, ureter, or bladder (closed to accrual) 16. Cell tumor of the testes and extragonadal germ tumors: A) Seminoma and testicular sex cord cancer B) Non seminomatous tumor C) Teratoma with malignant transformation (closed to accrual) 17. Epithelial tumors of penis - squamous adenocarcinoma cell carcinoma with variants of penis (closed to accrual) 18. Squamous cell carcinoma variants of the genitourinary (GU) system 19. Spindle cell carcinoma of kidney, pelvis, ureter 20. Adenocarcinoma with variants of GU system (excluding prostate cancer) (closed to accrual 07/27/2018) 21. Odontogenic malignant tumors 22. Pancreatic neuroendocrine tumor (PNET) (formerly named: Endocrine carcinoma of pancreas and digestive tract.) (closed to accrual) 23. Neuroendocrine carcinoma including carcinoid of the lung (closed to accrual 12/19/2017) 24. Pheochromocytoma, malignant (closed to accrual) 25. Paraganglioma (closed to accrual 11/29/2018) 26. Carcinomas of pituitary gland, thyroid gland parathyroid gland and adrenal cortex (closed to accrual) 27. Desmoid tumors 28. Peripheral nerve sheath tumors and NF1-related tumors (closed to accrual 09/19/2018) 29. Malignant giant cell tumors 30. Chordoma (closed to accrual 11/29/2018) 31. Adrenal cortical tumors (closed to accrual 06/27/2018) 32. Tumor of unknown primary (Cancer of Unknown Primary; CuP) (closed to accrual 12/22/2017) 33. Not Otherwise Categorized (NOC) Rare Tumors \[To obtain permission to enroll in the NOC cohort, contact: S1609SC@swog.org\] (closed to accrual 03/15/2019) 34. Adenoid cystic carcinoma (closed to accrual 02/06/2018) 35. Vulvar cancer (closed to accrual) 36. MetaPLASTIC carcinoma (of the breast) (closed to accrual) 37. Gastrointestinal stromal tumor (GIST) (closed to accrual 09/26/2018) 38. Perivascular epithelioid cell tumor (PEComa) 39. Apocrine tumors/extramammary Paget's disease (closed to accrual) 40. Peritoneal mesothelioma 41. Basal cell carcinoma (temporarily closed to accrual 04/29/2020) 42. Clear cell cervical cancer 43. Esthenioneuroblastoma (closed to accrual) 44. Endometrial carcinosarcoma (malignant mixed Mullerian tumors) (closed to accrual) 45. Clear cell endometrial cancer 46. Clear cell ovarian cancer (closed to accrual) 47. Gestational trophoblastic disease (GTD) 48. Gallbladder cancer 49. Small cell carcinoma of the ovary, hypercalcemic type 50. PD-L1 amplified tumors 51. Angiosarcoma 52. High-grade neuroendocrine carcinoma (pancreatic neuroendocrine tumor \[PNET\] should be enrolled in Cohort 22; prostatic neuroendocrine carcinomas should be enrolled into Cohort 53). Small cell lung cancer is not eligible (closed to accrual) 53. Treatment-emergent small-cell neuroendocrine prostate cancer (t-SCNC)

PD-L1Metastatic or stage IVImmunotherapyTreatmentPhase 2
Completed · Phase 2 · NCT04702880

A Study of BMS-986012 in Combination With Carboplatin, Etoposide, and Nivolumab as First-line Therapy in Extensive-stage Small Cell Lung Cancer

The purpose of this study is to demonstrate that treatment with BMS-986012 in combination with carboplatin, etoposide, and nivolumab will have acceptable safety and tolerability and will improve progression-free survival compared with carboplatin, etoposide, and nivolumab alone in newly diagnosed participants with extensive-stage small cell lung cancer (ES-SCLC).

ImmunotherapyChemotherapyTreatmentPhase 2Interventional
Active Not Recruiting · Phase 2 · NCT01638546

Temozolomide With or Without Veliparib in Treating Patients With Relapsed or Refractory Small Cell Lung Cancer

This randomized phase II trial studies how well temozolomide with or without veliparib works in treating patients with small cell lung cancer that has returned or does not respond to treatment. Temozolomide works by damaging molecules inside the cancer cells, such as deoxyribonucleic acid (DNA), that are needed for cancer survival and growth. Veliparib may stop the growth of tumor cells by blocking proteins that are needed for repairing the damaged DNA and it may also help temozolomide to kill more cancer cells. It is not yet know whether temozolomide is more effective with or without veliparib in treating patients with relapsed or refractory small cell lung cancer.

Recurrent or relapsedResistant or refractoryTreatmentPhase 2Interventional
Recruiting · Phase 3 · NCT07473128

Effect of Trilaciclib in the Prevention of Myelosupression in Subjects With Limited-stage Small Cell Lung Cancer

The goal of this clinical trial is to compare the efficacy and safety of trilaciclib versus placebo in subjects with limited stage small cell lung cancer. The main question it aims to answer is: Does trilaciclib have a myeloprotective effect in subject with limited stage small cell lung cancer? Participants will be randomised to receive either trilaciclib or placebo.

Supportive CarePhase 3Interventional
Completed · Phase 1 / Phase 2 · NCT00453154

Cisplatin or Carboplatin, and Etoposide With or Without Sunitinib Malate in Treating Patients With Extensive-Stage Small Cell Lung Cancer

This partially randomized phase I/II trial studies the side effects and best dose of sunitinib malate and to see how well it works when given together with cisplatin or carboplatin and etoposide in treating patients with extensive-stage small cell lung cancer. Drugs used in chemotherapy, such as cisplatin, carboplatin, and etoposide, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Sunitinib malate may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. It is not yet known whether cisplatin or carboplatin and etoposide are more effective when given with or without sunitinib malate in treating small cell lung cancer.

Recurrent or relapsedChemotherapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Not applicable · NCT05257551

Tempus Small Cell Lung Cancer Observational Study (Sculptor)

The study is a non-interventional evaluation of participants with extensive stage (ES) SCLC who will receive diagnostic and (where possible) post-progression tumor tissue profiling, alongside plasma ctDNA and CTC biomarker profiling during standard of care therapy in both first and second line treatment.

Not applicableObservationalAfter prior treatment
Recruiting · Phase 1 / Phase 2 · NCT07407933

A Study of YL201 in Combination With Other Anti-Cancer Therapies in Patients With Advanced Solid Tumors

This is a phase Ib/II, multicenter, open-label study of YL201 combined with atezolizumab. The study will include 2 parts. Part 1 of the study is a dose escalation in participants with previously untreated ES-SCLC to determine the safety and tolerability of YL201 in combination with fixed dose of atezolizumab. The planned dose levels of YL201 are 1.2 mg/kg, 1.6 mg/kg and 2.0 mg/kg. Part 2 consists of a dose optimization stage followed by a dose expansion stage. During the dose optimization stage, participants will be randomized 1:1:1 to receive either YL201 at 1.2 mg/kg,1.6 mg/kg or 2.0 mg/kg Q3W in combination with fixed dose of atezolizumab. The decision to initiate the dose expansion stage in Part 2 and choose one or two of the YL201 dose level(s) will be based on the review of safety, PK, and efficacy from the dose optimization stage. Treatment will continue until disease progression, unacceptable toxicity, or withdraw of consent.

ImmunotherapyTreatmentPhase 1 / Phase 2Interventional
Recruiting · Not applicable · NCT06957314

A Study of Hospital-at-Home for People Receiving Tarlatamab

The purpose of this study is to find out whether a Hospital-at-Home (HaH) program is a more efficient way to monitor people's health after receiving tarlatamab than monitoring in the hospital (inpatient).

Health Services ResearchNot applicableInterventional
Active Not Recruiting · Phase 3 · NCT04155034

S1827 (MAVERICK) Testing Whether the Use of Brain Scans Alone Instead of Brain Scans Plus Preventive Brain Radiation Affects Lifespan in Patients With Small Cell Lung Cancer

This phase III trial studies magnetic resonance imaging (MRI) surveillance and prophylactic cranial irradiation (PCI) to see how well they work compared to MRI surveillance alone in treating patients with small cell lung cancer. MRI scans are used to monitor the possible spread of the cancer with an MRI machine over time. PCI is radiation therapy that is delivered to the brain in hopes of preventing spread of cancer into the brain. The use of brain MRI alone may reduce side effects of receiving PCI and prolong patients' lifespan. Monitoring with MRI scans alone (delaying radiation until the actual spread of the cancer) may be at least as good as the combination of PCI with MRI scans.

Radiation therapyTreatmentPhase 3Interventional
Active Not Recruiting · Phase 1 / Phase 2 · NCT04728230

Olaparib and Durvalumab With Carboplatin, Etoposide, and/or Radiation Therapy for the Treatment of Extensive-Stage Small Cell Lung Cancer, PRIO Trial

This phase I/II trials investigates the side effects of olaparib and durvalumab and how well it works in combination with carboplatin, etoposide, and/or radiation therapy in treating patients with extensive stage-small cell lung cancer (ES-SCLC) who have not received treatment for their disease. PARPs are proteins that help repair DNA mutations. PARP inhibitors, such as olaparib, can keep PARP from working, so tumor cells can't repair themselves, and they may stop growing. Immunotherapy with monoclonal antibodies, such as durvalumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Chemotherapy drugs, such as carboplatin and etoposide, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Radiation therapy uses high energy sources to kill tumor cells and shrink tumors. Giving olaparib and durvalumab together with carboplatin, etoposide, and/or radiation therapy may help treat patients with ES-SCLC.

Metastatic or stage IVImmunotherapyChemotherapyRadiation therapyTreatment
Recruiting · Not applicable · NCT07636200

The EASE Study: Randomized Trial of a Novel Approach to Addressing Fear of Progression in Advanced Cancer

Precision oncology has led to a growing population of adults with advanced cancer living increasingly longer lives in the face of profound uncertainty about the future, with over half reporting moderate to high fear of cancer progression (FoP). These fears are associated with anxiety and depression, over-use of healthcare, physical symptom burden, higher treatment regret, fatigue, and, in many studies, poorer quality of life. Moreover, FoP is strongly correlated with cancer-related trauma symptoms-physical hyperarousal, intrusiveness of cancer thoughts/images, and avoidance of cancer-related thoughts and feelings, suggesting overlapping symptoms. While behavioral interventions exist to target fear of recurrence in early-stage cancer survivors, there is a dearth of behavioral interventions to address FoP or cancer-related trauma symptoms in adults with advanced cancer, and no known published randomized trials of such interventions in the United States. In addition, cutting-edge developments for the treatment of trauma in general populations have not been adapted to cancer populations. To address these critical gaps, we adapted a cutting-edge behavioral treatment for trauma to reduce FoP and cancer-related trauma symptoms among adults with advanced cancer. The intervention, titled EASE, is based on written exposure therapy, an efficacious approach for reducing trauma symptoms in general populations that is better accepted and far briefer than other gold-standard approaches. EASE adapts this approach to help advanced cancer patients with elevated FoP and cancer-related trauma symptoms reduce their fear of the future by using written exposure focused on their future worst-case scenario with cancer. Informed by the NIH stage model, we evaluated EASE delivered by telehealth in an open pilot trial for 29 adults with late-stage cancer and elevated FoP and cancer-related trauma symptoms. Pilot findings show strong acceptability, feasibility, and efficacy potential. We now propose to conduct the first randomized trial of EASE, and, thus, first known randomized trial in the United States of a behavioral intervention for FoP and cancer-related trauma symptoms among adults with advanced cancer. This 2-arm trial (N=250) will compare EASE delivered by telehealth with Usual Care (UC). We aim to compare EASE to UC on FoP and cancer-related trauma symptoms (primary outcomes) and anxiety, depression, hopelessness, and quality of life, at post-intervention (Aim 1) and follow-up (Aim 2). We will evaluate mechanisms for EASE relative to UC (Aim 3). Offering EASE in both English and Spanish, and by telehealth, increases access. Simple content increases scalability. Rigorous evaluation of EASE has the potential to provide a paradigm-shifting intervention ready for dissemination and to inform evidence-based care guidelines for distressed adults with advanced cancer.

Early-stage or resectableLocally advancedMetastatic or stage IVRecurrent or relapsedSupportive or behavioral care
Active Not Recruiting · Phase 2 · NCT04334941

Testing Maintenance Therapy for Small Cell Lung Cancer in Patients With SLFN11 Positive Biomarker

This phase II trial studies whether atezolizumab in combination with talazoparib works better than atezolizumab alone as maintenance therapy for patients with SLFN11-positive extensive-stage small cell lung cancer. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. PARPs are proteins that help repair damage to DNA, the genetic material that serves as the body's instruction book. Changes (mutations) in DNA can cause tumor cells to grow quickly and out of control, but PARP inhibitors like talazoparib may keep PARP from working, so tumor cells can't repair themselves, and they stop growing. Giving atezolizumab in combination with talazoparib may help lower the chance of extensive-stage small cell lung cancer growing and spreading compared to atezolizumab alone.

ImmunotherapyTreatmentPhase 2Interventional
Recruiting · Phase 1 / Phase 2 · NCT05703971

Quaratusugene Ozeplasmid (Reqorsa) and Atezolizumab Maintenance Therapy in ES-SCLC Patients

This clinical trial will evaluate the combination of quaratusugene ozeplasmid with atezolizumab as maintenance therapy for patients with Extensive Stage Small Cell Lung Cancer (ES-SCLC). The study is comprised of 2 phases, a dose selection phase (Phase 1) and a safety and efficacy evaluation phase (Phase 2).

ImmunotherapyTreatmentPhase 1 / Phase 2Interventional
Active Not Recruiting · Phase 1 / Phase 2 · NCT04938817

Safety and Efficacy Study of Investigational Agents as Monotherapy or in Combination With Pembrolizumab (MK-3475) for the Treatment of Extensive-Stage Small Cell Lung Cancer (ES-SCLC) in Need of Second-Line Therapy (MK-3475-B98/KEYNOTE-B98)

This study is a rolling arm study of investigational agents as monotherapy or in combination with pembrolizumab in participants with anti-programmed cell death 1 (PD-1)/ programmed cell death ligand 1 (PD-L1) refractory ES-SCLC in need of second-line treatment. This study will have 2 parts: an initial safety lead-in to determine safety and tolerability for experimental combinations of investigational agents without an established recommended phase 2 dose (RP2D) followed by an efficacy evaluation. Investigational agents will initiate directly in or be added to the efficacy evaluation after an initial evaluation of safety and tolerability of the investigational agent has been completed in a separate study or in the safety lead-in of this study. If an RP2D for a combination being evaluated in the safety lead-in is established from another study, then the efficacy evaluation may begin at the determined RP2D. There will be no hypothesis testing in this study.

PD-L1Resistant or refractoryImmunotherapyTreatmentPhase 1 / Phase 2
Active Not Recruiting · Phase 1 · NCT05783622

Study of JANX008 in Subjects With Advanced or Metastatic Solid Tumor Malignancies

This study is a first-in-human (FIH), Phase 1/1b, open-label, multicenter dose escalation and dose expansion study to assess the safety, tolerability, pharmacokinetics (PK), pharmacodynamics (PD), and preliminary anti-tumor activity of JANX008 in adult subjects with advanced or metastatic carcinoma expressing EGFR.

EGFRMetastatic or stage IVTreatmentPhase 1Interventional
Recruiting · Phase 1 · NCT07037758

A Study of Tarlatamab in Combination With AB248 in Participants With Extensive Stage Small Cell Lung Cancer (DeLLphi-311)

The primary objective for dose exploration and dose expansion is to evaluate the safety and tolerability of tarlatamab in combination with AB248. The primary objective for dose exploration only is to determine the recommended dose for expansion and/or maximum tolerated combination dose (MTCD) of AB248 in combination with tarlatamab.

TreatmentPhase 1Interventional
Withdrawn · Phase 2 · NCT03402880

ALCMI-005: Pembrolizumab and Epacadostat in Treating Patients With Extensive Stage Small Cell Lung Cancer

This phase II trial studies how well pembrolizumab and epacadostat work in combination treating patients with extensive stage small cell lung cancer. Monoclonal antibodies, such as pembrolizumab, may assist the immune system in recognizing cancer cells leading to elimination of those cells. Epacadostat may prevent down-regulation of T-cells, which means it can boost the immune system. Giving pembrolizumab and epacadostat together may work better than either drug alone in treating extensive stage small cell lung cancer.

ImmunotherapyTreatmentPhase 2Interventional
Active Not Recruiting · Phase 3 · NCT04624204

Placebo-controlled, Study of Concurrent Chemoradiation Therapy With Pembrolizumab Followed by Pembrolizumab and Olaparib in Newly Diagnosed Treatment-Naïve Limited-Stage Small Cell Lung Cancer (LS-SCLC) (MK 7339-013/KEYLYNK-013)

Researchers are looking for new ways to treat Limited-Stage Small Cell Lung Cancer (LS-SCLC), a type of lung cancer that has not spread from the lung to other parts of the body. The purpose of this study is to learn if pembrolizumab and olaparib, when given with chemotherapy and radiation treatment (CRT), can be effective in treating LS-SCLC. The researchers want to know if participants who receive CRT and pembrolizumab, with or without olaparib, have a longer overall survival compared to participants who only receive CRT.

ImmunotherapyChemotherapyRadiation therapyTreatmentPhase 3
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