View clinical trials related to Sarcoma.
Filter by:This is a pilot study to determine the efficacy, kinetics and safety of aldoxorubicin in HIV positive subjects with Kaposi's sarcoma.
Methotrexate is one of the most effective chemotherapy drugs in the treatment of osteosarcoma and some other types of bone sarcoma which are treated the same way as osteosarcoma. However, it frequently leads to sore mouth, tummy pain and increased risk of developing infections. The investigators try to save or "rescue" normal cells from the side effects of methotrexate by giving a drug called folinic acid. Folinic acid is started 24 hours after methotrexate and given regularly until methotrexate levels are really low and not dangerous to normal cells anymore. Despite this rescue, side effects are still a problem and many patients are not well enough to receive subsequent chemotherapy on time. Almost half of the planned chemotherapy cycles are not given on time due to methotrexate side effects. In this study the investigators will examine if adding a drug called glucarpidase to folinic acid is helpful. Glucarpidase is an enzyme that inactivates methotrexate in the blood stream. Lower methotrexate concentration in the blood stream leads to fewer side effects. The investigators would like to see if glucarpidase helps patients to have their chemotherapy on time, by reducing the side effects of methotrexate.
This is a Phase I, multi-center, multiple ascending dose study to evaluate the clinical safety and immune response of IDC-G305 when injected intramuscularly in patients with unresectable or metastatic cancer. IDC-G305 is an immunotherapy consisting of recombinant NY-ESO-1 antigen and the adjuvant, GLA-SE. The goal is for IDC-G305 to stimulate the body's immune system to fight the spread and growth of cancer for patients whose tumors include the NY-ESO-1 protein. Patients with melanoma, ovarian, renal cell or non-small cell lung cancer may be considered for the trial.
This is a study to assess the safety of the combination of mifepristone and eribulin in patients with metastatic or locally advanced unresectable breast or other specified solid tumors, and determine preliminary efficacy of the combination of mifepristone and eribulin in patients with metastatic or locally advanced unresectable Triple Negative Breast Cancer (TNBC). The structure for the study is a single arm, non-randomized, open-label, multicenter trial with no control group. The study will be conducted at up to 11 sites, with up to 40 evaluable patients
The iCaRe2 is a multi-institutional resource created and maintained by the Fred & Pamela Buffett Cancer Center to collect and manage standardized, multi-dimensional, longitudinal data and biospecimens on consented adult cancer patients, high-risk individuals, and normal controls. The distinct characteristic of the iCaRe2 is its geographical coverage, with a significant percentage of small and rural hospitals and cancer centers. The iCaRe2 advances comprehensive studies of risk factors of cancer development and progression and enables the design of novel strategies for prevention, screening, early detection and personalized treatment of cancer. Centers with expertise in cancer epidemiology, genetics, biology, early detection, and patient care can collaborate by using the iCaRe2 as a platform for cohort and population studies.
Phase 1: To assess the safety, tolerability, and maximum tolerated dose (MTD)/ recommended dose of ganetespib when administered in combination with sirolimus in patients with refractory or relapsed sarcomas including unresectable or metastatic sporadic or neurofibromatosis type 1 (NF1) associated MPNST. Phase I enrollment has been closed. Phase 2: To determine the clinical benefit of ganetespib in combination with sirolimus for patients with unresectable or metastatic sporadic or NF1 associated MPNST.
The purpose of this study is to collect prospective data for use as a comparator for future subsequent studies attempting to increase the efficacy or reduce the toxicity of gamma knife radiosurgery.
This study is a phase IV post registration prospective observational feasibility study in patients with metastatic soft tissue sarcoma. Pazopanib is the registered treatment for patients with advanced soft tissue sarcoma after chemotherapy with doxorubicin or ifosfamide. - This study looks at the possibility of using 18F-2-fluoro-2-deoxy-D-glucose fluorodeoxyglucose (FDG) positron emission tomography PET scans as an early biomarker of pazopanib treatment effect in patients. - It also studies pazopanib pharmacokinetics to see if there are differences between elderly and younger patients. The primary objectives are: - To evaluate whether early metabolic response is correlated to clinical benefit. - To evaluate the effect of age (≥ 70 years) on pazopanib pharmacokinetics. The secondary objectives are: - To evaluate whether early metabolic response (% decrease in FDG uptake due to pazopanib therapy) is correlated with pazopanib exposure. - To evaluate whether early metabolic response (% decrease in FDG uptake due to pazopanib therapy) is correlated with the histological subtypes.
This randomized phase III trial studies flexible administration of filgrastim after combination chemotherapy to see how well it works compared to fixed administration of filgrastim in decreasing side effects of chemotherapy in younger patients with cancer. Cancer chemotherapy frequently results in neutropenia (low blood counts) when patients are susceptible to severe infections. A medicine called G-CSF (filgrastim) stimulates bone marrow and daily filgrastim shots are commonly used to shorten neutropenic periods and decrease infections after chemotherapy. Since filgrastim is customarily used on a fixed schedule starting early after chemotherapy and there are data that early doses may not be needed, this study tests new flexible schedule of filgrastim to optimize its use by reducing the number of painful shots, cost of treatment, and filgrastim side effects in children with cancer receiving chemotherapy.
This phase II trial studies how well cryoablation, radiofrequency ablation, or microwave ablation works in treating patients with metastatic sarcoma stable on chemotherapy. Cryoablation kills tumor cells by freezing them. Radiofrequency ablation uses a high-frequency, electric current to kill tumor cells. Microwave ablation kills tumor cells by heating them to several degrees above body temperature.