View clinical trials related to Stage IVB Lung Cancer AJCC v8.
Filter by:This study compares the outcomes and safety of two standard treatment options called microwave ablation and surgical wedge resection in patients with non-small cell lung cancer, sarcoma and colorectal cancer that has spread to other parts of the body (metastatic). Microwave ablation is designed to kill tumor cells by heating the tumor until the tumor cells die. A wedge resection is a procedure that involves the surgical removal of a small, wedge-shaped piece of lung tissue to remove a small tumor or to diagnose lung cancer. Comparing these two treatment options may help researchers learn which method works better for the treatment of non-small cell lung cancer, metastatic sarcoma, and metastatic colorectal cancer.
This phase 2 trial will evaluate the safety and efficacy of combining immunotherapy with a PD-1 checkpoint inhibitor (Pembrolizumab), an anti-VEGF receptor (Ramucirumab), and a taxane chemotherapy (Docetaxel) in treating patients with non-small cell lung cancer (NSCLC) who did not respond to FDA-approved treatments with platinum-based chemotherapy given concurrently or sequentially with anti-PD1/PD-L1 immunotherapy. Pembrolizumab helps the body's immune system to attack cancer cells and hinder their ability to grow and spread. Ramucirumab blocks new blood vessel growth to reduce tumor growth. Docetaxel works mainly by stopping cancer cells from dividing. Ramucirumab combined with docetaxel is an FDA-approved therapy for NSCLC patients after progression on platinum-based chemotherapy. It has shown to improve efficacy compared to docetaxel alone in this setting. Pembrolizumab is an FDA-approved treatment for NSCLC and can be given alone or in combination with platinum-based chemotherapy. Investigators hypothesize that the combination of docetaxel, ramucirumab, and pembrolizumab will be safe and more effective than the current standard of care treatments (docetaxel alone or in combination with ramucirumab) in patients with metastatic or recurrent NSCLC after progression on treatment with platinum-based chemotherapy and immunotherapy, given concurrently or sequentially.
This trial studies the side effects of single fraction stereotactic body radiation therapy after surgery in treating patients with non-small cell lung cancer. Standard radiation for lung cancer involves delivering small doses of daily radiation for several weeks. However, this technique has resulted in inferior outcomes compared to surgery and is associated with damage to surrounding normal lung. Stereotactic body radiation therapy uses special equipment to position a patient and deliver radiation to tumors with high precision. Giving stereotactic body radiation therapy in fewer treatment sessions (single fraction) may kill tumor cells and cause less damage to normal tissue.
The goals of this prospective, observational cohort study are to determine the feasibility of implementing paclitaxel therapeutic drug monitoring for cancer patients and explore the relationship between paclitaxel drug exposure and the development of neuropathic symptoms. This trial studies if paclitaxel can be consistently measured in the blood of patients with solid tumors undergoing paclitaxel treatment. Drugs used in chemotherapy, such as paclitaxel, 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. Nerve damage is one of the most common and severe side effects of paclitaxel. The ability to consistently measure paclitaxel in the blood may allow doctors to control the dose of paclitaxel, so that enough chemotherapy is given to kill the cancer, but the side effect of nerve damage is reduced.
This trial studies how well dyadic yoga intervention works in improving physical performance and quality of life in patients with stage I-IV non-small cell lung or esophageal cancer undergoing radiotherapy and their caregivers. Dyadic yoga intervention may help to improve physical function, fatigue, sleep difficulties, depressive symptoms, and overall quality of life for patients with non-small cell lung cancer and/or their caregivers.
This phase Ib/II trial studies the best dose of temozolomide and how well it works with niraparib and atezolizumab in treating patients with solid tumors that have spread to other places in the body (advanced) and extensive-stage small cell lung cancer with a complete or partial response to platinum-based first-line chemotherapy. 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. Niraparib is an inhibitor of PARP, an enzyme that helps repair deoxyribonucleic acid (DNA) when it becomes damaged. Blocking PARP may help keep cancer cells from repairing their damaged DNA, causing them to die. PARP inhibitors are a type of targeted therapy. 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 temozolomide, niraparib and atezolizumab may work better in treating patients with advanced solid tumors and extensive-stage small cell lung cancer.
This trial studies the role of the gut microbiome and effectiveness of a fecal transplant on medication-induced gastrointestinal (GI) complications in patients with melanoma or genitourinary cancer. The gut microbiome (the bacteria and microorganisms that live in the digestive system) may affect whether or not someone develops colitis (inflammation of the intestines) during cancer treatment with immune-checkpoint inhibitor drugs. Studying samples of stool, blood, and tissue from patients with melanoma or genitourinary cancer may help doctors learn more about the effects of treatment on cells, and help doctors understand how well patients respond to treatment. Treatment with fecal transplantation may help to improve diarrhea and colitis symptoms.
This phase I/II trial studies the best dose and timing of panitumumab-IRDye800 in detecting cancer in participants with lung cancer during the surgery. Panitumumab-IRDye800 is a combination of the antibody drug panitumumab and IRDye800CW, an investigational dye that can be seen using a special camera. Panitumumab-IRDye800 may attach to tumor cells and make them more visible during surgery in patients with lung cancer.
This phase I/II trial studies the best dose and side effects of recombinant human EGF-rP64K/montanide ISA 51 vaccine (CIMAvax) and nivolumab and to see how well they work in treating patients with non-small cell lung cancer or squamous head and neck cancer that has spread to other places in the body. Vaccine therapy, such as CIMAvax vaccine may help slow down and stop tumor growth. Immunotherapy with monoclonal antibodies, such as nivolumab and pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving CIMAvax vaccine together with nivolumab or pembrolizumab may work better in treating patients with non-small cell lung cancer or squamous head and neck cancer.