View clinical trials related to Lung Neoplasms.
Filter by:RATIONALE: Collecting and storing samples of blood and exhaled breath from patients with cancer and from healthy participants to study in the laboratory may help doctors learn more about changes that occur in DNA and identify biomarkers related to cancer. PURPOSE: This research study is collecting and analyzing samples of blood and exhaled breath from patients who have or are at high risk for lung cancer and from healthy participants.
RATIONALE: Everolimus 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. Radiation therapy uses high-energy x-rays to kill tumor cells. Giving everolimus together with whole-brain radiation therapy may kill more tumor cells. PURPOSE: This phase I/II trial is studying the side effects and best dose of everolimus and to see how well it works when given together with whole-brain radiation therapy in treating patients with brain metastasis from non-small cell lung cancer.
Primary goal of the study is to assess the overall survival of the addition of hypofractionated image guided radiotherapy concurrently with Docetaxel and cisplatin. Survival will be assessed at 1 year from the date of study enrollment to date of death.
A phase II study to evaluate the safety and efficacy of oral sapacitabine in previously treated advanced non-small cell lung cancer (NSCLC).
The purpose of this study is to find out what effects, good and/or bad, proton radiation at a higher tumor dose (and lower normal surrounding lung dose) combined with standard chemotherapy has on lung cancer. The dose you receive to the tumor will be higher than the standard dose. This may be able to increase the control of the tumor. Due to the accuracy of radiation given with protons, the dose to the normal lung tissue that surrounds the tumor will be lower than standard. This may be able to reduce the frequency and severity of the usual radiation side effects.
This is a randomized, Phase II study designed to investigate Nimotuzumab plus whole-brain radiation therapy (WBRT)and to compare it rith WBRT alone in patients with brain metastases from non-small cell lung cancer (NSCLC). The purpose of the study is to assess the efficacy of nimotuzumab in combination with WBRT.
RATIONALE: Stereotactic body radiation therapy may be able to send x-rays directly to the tumor and cause less damage to normal tissue. Abdominal compression methods that hold the body and the tumor from moving during treatment may permit radiation therapy to kill more tumor cells. This study is looking at the comfort level of two abdominal compression methods in patients with lung tumors undergoing stereotactic body radiation therapy. PURPOSE: This phase I trial is studying the comfort level of two abdominal compression methods used to hold patients still while undergoing stereotactic body radiation therapy for lung tumors.
The current understanding of PR104 justifies the evaluation of PR104 with docetaxel in subjects with Non Small Cell Lung Cancer (NSCLC). These include: - Aldo-keto reductase 1C3 (AKR1C3). NSCLC has been shown to express high levels of AKR1C3 in about one half of tumors tested. Subjects with high levels of AKR1C3 should have increased activation of PR104 within their tumor. - Hypoxia. NSCLC has been demonstrated to be a tumor with hypoxia based on both direct tumor measurements (oxygen electrodes) and hypoxic positron emission tomography (PET) imaging. Tumor hypoxia in NSCLC should be sufficient to activate PR104 to its active metabolites PR104H and PR104M. - Preclinical data. The use of docetaxel and PR104 alone and in combination in preclinical models demonstrates activity of PR104 as a single agent and supraadditive activity when PR104 and docetaxel are used in combination. - Manageable toxicity. PR104 and docetaxel with Granulocyte Colony-stimulating Factor (G-CSF) have been combined in a prior phase I study. A Maximum Tolerated Dose (MTD) has been identified and the major toxicities of this combination are understood. The current study will provide an estimate of the activity of PR104 in subjects with NSCLC. This information will prove valuable in defining the future clinical development of PR104, and in determining if PR104 has sufficient activity in NSCLC to warrant a larger phase III registration study in this indication. Primary objectives • Estimate the response rate (RR) of PR104/docetaxel Secondary objectives - Evaluate survival - Evaluate progression free survival (PFS) - Evaluate time to progression (TTP) - Evaluate safety - Evaluate the pharmacokinetics of PR104 and its metabolites - Evaluate the pharmacokinetics of docetaxel - Evaluate the tumor hypoxia using 18F-fluoromisonidazole (18F-MISO) PET imaging - Collect diagnostic biopsy samples for the determination of AKR1C3 - Collect plasma samples for assessment of potential biomarkers of tumor hypoxia
The main purpose of this study is to learn how patients with Advanced Non-Small Cell Lung Cancer (NSCLC) respond to the study drug Dasatinib. The study drug, Dasatinib, has been approved by the U.S. Food and Drug Administration (FDA) for treatment of leukemia, but has not been approved for the treatment of other kinds of cancer. The use of Dasatinib in this study is considered experimental.
This is a study in patients with chemotherapy induced anemia receiving multi-cycle chemotherapy for the treatment of stage IV non-small cell lung cancer (NSCLC). The primary objective of the study is to demonstrate that overall survival (OS) is not worse in participants on darbepoetin alfa treated to a hemoglobin ceiling of 12.0 g/dL compared to participants treated with placebo.