View clinical trials related to Lung Neoplasms.
Filter by:In this research study the investigators are looking for the highest dose of a stereotactic radiation boost that can be given safely. Because stereotactic radiation is so precise, the investigators are testing whether it can be used to increase the dose to the primary tumor without significantly increasing the side effects the participant experiences; the goal is to improve the likelihood of killing the tumor.
This is Phase I, open-label and dose escalation study to evaluate the safety and tolerability of AZD1480(JAK2 inhibitor) in Asian patients with advanced solid tumors (Part A and C) and in patients with advanced HCC (Part B) in the escalation phase, EGFR or ROS mutant NSCLC and non-smokers with lung metastasis and gastric cancer in the expansion phase and to evaluate daily and BID dosing.
This randomized phase I/II trial studies the side effects and the best dose of RO4929097 (gamma-secretase/Notch signalling pathway inhibitor RO4929097) when given together with whole-brain radiation therapy or stereotactic radiosurgery and to see how well it works compared to whole-brain radiation therapy or stereotactic radiosurgery alone in treating patients with breast cancer or other cancers (such as lung cancer or melanoma) that have spread to the brain. RO4929097 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Whole-brain radiation therapy uses high energy x-rays deliver radiation to the entire brain to treat tumors that can and cannot be seen. Stereotactic radiosurgery may be able to deliver x-rays directly to the tumor and cause less damage to normal tissue. It is not yet known whether giving RO4929097 together with whole-brain radiation therapy or stereotactic radiosurgery may kill more tumor cells.
The main purpose of this study is to evaluate the best dose, safety and side effects of ridaforolimus when given with cetuximab for patients with head and neck, lung and colon cancer that has progressed after initial therapy. A second purpose of this study is to gain preliminary information on whether the combination of ridaforolimus and cetuximab is helpful in treating patients with advanced head and neck cancer
Nitroglycerin is a nitric oxide donor which is mainly known as a vasodilating agent used in ischemic heart disease. It has also been shown to increase tumor blood flow in animal and human tumors. The addition of nitroglycerin to chemotherapy in non small cell lung cancer has been shown to generate very favorable response rates with respect to standard treatment schedules[5]. Theoretically nitroglycerin might reduce resistance to chemotherapy via a plethora of different effects: better tumor perfusion, direct effects of NO on cancer cells, increase in activated p53 protein and via an increased blood flow in the tumour with as consequence a higher drug concentration in the tumor [6] . In mice, nitric oxide donors such as isosorbide dinitrate have been shown to decrease tumor hypoxia by better tumor perfusion, which could enhance radiotherapy responses [7]. To date these combined effects have not been tested in humans. In this trial we would like to demonstrate the effect of nitroglycerin on tumor perfusion and hypoxia in non small cell lung cancer (using DCE and HX4 scanning), providing a rationale for further study and to test the effect of combining nitroglycerine to standard treatment of NSCLC (radiotherapy/chemotherapy).
RATIONALE: Pazopanib hydrochloride 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 pazopanib hydrochloride is more effective than a placebo in treating patients with non-small cell lung cancer that has not progressed after first-line chemotherapy. PURPOSE: This randomized phase II/III trial is studying how well giving pazopanib hydrochloride works and compares it with giving a placebo in treating patients with non-small cell lung cancer who have received first-line chemotherapy.
This study combines the deoxyribonucleic acid (DNA) methyltransferase inhibitor, 5-azacitidine (5-AZA), with an orally bioavailable histone deacetylase inhibitor, entinostat (SNDX-275), for the adjuvant treatment of patients with resected stage I non-small cell lung cancer (NCSLC).
This phase I trial studies the side effects and best dose of gamma-secretase/Notch signalling pathway inhibitor RO4929097 (RO4929097) and erlotinib hydrochloride when given together in treating patients with non-small cell lung cancer that is stage IV or has come back. RO4929097 and erlotinib hydrochloride may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
This phase II trial is studying how well RO4929097 works in treating patients with advanced non-small cell lung cancer who have recently completed treatment with front-line chemotherapy. RO4929097 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
The purpose of this study is to measure the ability of erlotinib to effectively treat recurrent lung cancer which carries an EGFR mutation lung cancer after prior treatment with erlotinib or gefitinib received in the post-surgical or post-radiation setting.