View clinical trials related to Kidney Neoplasms.
Filter by:The main purpose of this study is to test the safety of the dendritic cell/tumor fusion study vaccine in combination with a laboratory-made agent called Granulocyte Macrophage Colony Stimulating Factor (GM-CSF). Another purpose is to determine the type and severity of any side effects associated with this study vaccine. GM-CSF is similar to a substance in the body that stimulates the production of white blood cells. To create the study vaccine, cells will be removed from the participants tumor and fused with dendritic cells which are obtained from the participants blood. Dendritic cells are responsible for immune responses to "foreign" substances that enter the body. Animal studies have shown that these fused cells can stimulate powerful anti-tumor responses.
RATIONALE: Radiosurgery can send x-rays directly to the tumor and cause less damage to normal tissue. PURPOSE: This phase I/II trial studies the side effects and best dose of giving stereotactic radiosurgery and to see how well it works in treating patients with kidney tumors who are poor candidates for surgery.
This trial will examine the effectiveness and the side effects of 2 higher dosing schedules of bevacizumab in patients that have advanced clear cell renal carcinoma.
To evaluate the safety, tolerability, efficacy, and pharmacokinetics of MDX-1106 when administered to patients with advanced non-small cell lung cancer, colorectal cancer, malignant melanoma, clear cell renal cell cancer or hormone refractory prostate cancer
RATIONALE: Sunitinib and erlotinib may stop the growth of tumor cell by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. Giving sunitinib together with erlotinib may kill more tumor cells. PURPOSE: This phase II trial is studying the best dose of erlotinib when given together with sunitinib and to see how well they work in treating patients with unresectable or metastatic kidney cancer.
The purpose of this study is to test the safety of bevacizumab and sunitinib given in combination for kidney cancer. The drugs act to stop blood vessel growth but in different ways. They have not been studied together in a previous study. We also want to find out what effects (good and bad) the combination of bevacizumab and sunitinib have on you and your tumor.
The primary objective of this study will be to determine the toxicity and Maximum Tolerated Dose (MTD) of the combination of high dose aldesleukin and sorafenib in previously untreated patients with metastatic or unresectable clear cell renal carcinoma (RCC) and metastatic melanoma.
RATIONALE: Biological therapies, such as interleukin-2 and interferon, may stimulate the immune system in different ways and stop tumor cells from growing. It is not yet known whether interleukin-2 given by infusion is more effective than interleukin-2 given by injection when combined with interferon in treating metastatic kidney cancer. PURPOSE: This randomized phase III trial is studying interleukin-2 given by infusion to see how well it works compared to interleukin-2 given by injection when combined with interferon in treating patients with metastatic kidney cancer.
RATIONALE: Medroxyprogesterone may help shrink or slow the growth of kidney cancer. Interferon may interfere with the growth of tumor cells. Aldesleukin may stimulate white blood cells to kill tumor cells. It is not yet known whether giving medroxyprogesterone, interferon, or aldesleukin alone is more effective than giving interferon together with aldesleukin in treating kidney cancer. PURPOSE: This randomized phase III trial is studying medroxyprogesterone, interferon, or aldesleukin to see how well they work when given alone compared to interferon combined with aldesleukin in treating patients with metastatic kidney cancer.
This phase II trial is studying the side effects and how well VEGF Trap works in treating patients with recurrent, locally advanced, or metastatic cancer of the urothelium. VEGF Trap may stop the growth of tumor cells by blocking blood flow to the tumor.