View clinical trials related to Sarcoma.
Filter by:Define the efficacy of CP-751,871 in patients with Ewing's sarcoma family of tumors
This is a multi-center, single arm intended to evaluate the anti-tumor effect of ARQ 197 in patients with microphthalmia transcription factor associated (MiT) tumors. MiT tumors include clear cell sarcoma, alveolar soft parts sarcoma, and translocation associated renal cell carcinoma.
RATIONALE: Specialized radiation therapy that delivers a high dose of radiation directly to the tumor may kill more tumor cells and cause less damage to normal tissue. PURPOSE: This phase II trial is studying how well conformal radiation therapy works in treating patients with metastatic cancer outside the brain.
RATIONALE: Drugs used in chemotherapy, such as doxorubicin, ifosfamide, and irinotecan, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Chemoprotective drugs, such as dexrazoxane, may protect normal cells from the side effects of chemotherapy. Giving combination chemotherapy together with dexrazoxane before surgery may make the tumor smaller and reduce the amount of normal tissue that needs to be removed. Giving radiation therapy after surgery may kill any tumor cells that remain after surgery. PURPOSE: This phase II trial is studying how well giving combination chemotherapy together with dexrazoxane followed by surgery and radiation therapy works in treating patients with advanced soft tissue sarcoma or recurrent bone sarcoma.
Soft tissue sarcomas (STS) are an uncommon group of malignant tumors of mesenchymal origin. For most advanced STS types, chemotherapy is currently the only available treatment. Unfortunately, a very limited number of useful drugs are active against this disease. Doxorubicin is widely considered the standard first-line treatment. Ifosfamide has also a well-established activity (1,2) and is often administered either associated with Doxorubicin or alone as a second-line chemotherapy treatment. Other drugs such as DTIC, Gemcitabine and Temozolomide showed modest activity as a second-line agents (3,4). Thus, there is a necessity to identify new agents with activity to improve therapy for patients with advanced STS. In some studies, most STS showed VEGF expression, and elevated serum VEGF levels were found to correlate with higher histologic tumor grade (5,6). Additionally, inhibition of VEGFR was associated with tumor activity in preclinical models of sarcoma (7,8). For these reasons, inhibition of VEGFR seems to be a reasonable approach to explore in the treatment of STS. Sorafenib (BAY 43-9006) is an orally available, small molecule multi-kinase inhibitor of VEGFR, PDGFR and RAF with demonstrated activity in the treatment of renal cell cancer (9). Preclinical studies suggest that the combination of Sorafenib with cytotoxic agents results in additive anti-tumor activity (10), initiating justification for combination studies. A recent trial, however, reported an unexpected incidence of cardiac toxicity in patients with STS treated with Bevacizumab, a monoclonal antibody that binds VEGF, in combination with Doxorubicin (11). This finding suggest that the possibility of potentiation of the cardiotoxicity of Doxorubicin when inhibiting the VEGF pathway cannot be ruled out. The association of Sorafenib with Ifosfamide, the other established active agent against STS, could improve the efficacy of single-agent Ifosfamide minimizing the risk of cardiac toxicity .
Phase II Pilot Study of Vincristine, Adriamycin, Actinomycin D, Ifosfamide combination chemotherapy in Ewing's Sarcoma
The purpose of this study is to determine whether maintenance therapy with oral AP23573 (ridaforolimus), by preventing and controlling tumor growth for a prolonged period of time in patients with metastatic soft-tissue or bone sarcomas responding to chemotherapy, will result in clinically significant improvement in progression-free survival as compared to oral placebo.
This pilot trial studies different high-dose chemotherapy regimens with or without total-body irradiation (TBI) to compare how well they work when given before autologous stem cell transplant (ASCT) in treating patients with hematologic cancer or solid tumors. Giving high-dose chemotherapy with or without TBI before ASCT stops the growth of cancer cells by stopping them from dividing or killing them. After treatment, stem cells are collected from the patient's blood or bone marrow and stored. More chemotherapy may be given to prepare for the stem cell transplant. The stem cells are then returned to the patient to replace the blood forming cells that were destroyed by the chemotherapy.
RATIONALE: BI 2536 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. PURPOSE: This phase II trial is studying the side effects and how well BI 2536 works in treating patients with recurrent or metastatic solid tumors.
This trial studies how well dalteparin works in preventing deep vein thrombosis (DVT) (blood clots) in participants with cancer. Dalteparin is a blood thinner that can treat blood clots and may prevent them from forming.