View clinical trials related to Sarcoma.
Filter by:RATIONALE: Interferon alfa may interfere with the growth of cancer cells and slow the growth of cancer. PURPOSE: This phase I trial is studying the side effects and best dose of interferon alfa in treating patients with stage IV solid tumors, lymphoma, or myeloma.
The primary objectives of the study are: - Determine the safety and maximum tolerated dose (MTD) of IPI-504 in GIST and STS patients who have failed prior therapies - Recommend a dose for subsequent studies of IPI-504
1.1 To determine the recommended phase II dose for gemcitabine in combination with a fixed dose of docetaxel and bevacizumab. 1.2 To determine the efficacy of the combination of gemcitabine, docetaxel, and bevacizumab in patients with soft tissue sarcoma 1.3 To determine the toxicity profile of the combination of gemcitabine, docetaxel, and bevacizumab in patients with soft tissue sarcoma
Primary: 1. To evaluate the preliminary efficacy of palifermin in reducing the incidence and severity of oral mucositis (OM) in patients with sarcoma receiving multicycle chemotherapy. 2. To evaluate the pharmacokinetics (PK) of palifermin when given pre chemotherapy. 3. To evaluate the safety profile of palifermin when combined with multicycle chemotherapy. Exploratory: 1. To evaluate the biologic effect of palifermin on oral mucosa. 2. To investigate potential biomarker development by biochemical analysis in blood cells, serum, and plasma. 3. To investigate the effects of genetic variation in mucositis genes, drug metabolism genes, and drug target genes on patient response to the treatment regimen.
RATIONALE: Diagnostic procedures, such as infrared thermography, may help find Kaposi's sarcoma and learn the extent of disease. PURPOSE: This clinical trial is studying how well infrared thermography finds skin lesions in patients with Kaposi's sarcoma.
The purpose of this study is to learn if a vaccine made from the patient's own tumor cells, then genetically modified to secrete granulocyte-macrophage colony-stimulating factor (GM-CSF), will delay or stop the growth of the tumor. It will also look at the vaccine's effects on the immune system and the side effects of giving a vaccine made from a subject's own cancer cells.
RATIONALE: Eating a diet low in residue (fiber, fat, and certain milk or vegetable products) may help prevent or reduce diarrhea caused by pelvic radiation therapy. PURPOSE: This randomized clinical trial is studying a low-residue diet to see how well it works compared to no dietary intervention in treating diarrhea in patients who are undergoing radiation therapy to the pelvis for uterine, cervical, or prostate cancer.
RATIONALE: Giving chemotherapy drugs and total-body irradiation before a donor bone marrow transplant helps stop the growth of cancer and abnormal cells and helps stop the patient's immune system from rejecting the donor's stem cells. When the healthy stem cells from a donor are infused into the patient they may help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets. Giving colony-stimulating factors, such as G-CSF, to the donor helps the stem cells move from the bone marrow to the blood so they can be collected and stored. PURPOSE: This clinical trial is studying how well a G-CSF-treated donor bone marrow transplant works in treating patients with hematologic cancer or noncancer.
RATIONALE: Drugs used in chemotherapy, such as vincristine, dactinomycin, and cyclophosphamide, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Radiation therapy uses high energy x-rays to kill tumor cells. Giving more than one drug (combination chemotherapy) with radiation therapy may kill more tumor cells. PURPOSE: This phase II trial is studying how well giving vincristine, dactinomycin, and cyclophosphamide together with or without radiation therapy works in treating patients with embryonal rhabdomyosarcoma.
This phase II trial is studying how well sorafenib works in treating patients with metastatic, locally advanced, or recurrent sarcoma. Sorafenib 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.