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Sarcoma clinical trials

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NCT ID: NCT03604783 Terminated - Sarcoma Clinical Trials

Phase 1, First-in-human Study of Oral TP-1287 in Patients With Advanced Solid Tumors

Start date: December 26, 2018
Phase: Phase 1
Study type: Interventional

TP-1287 is an oral phosphate prodrug of the CDK9 inhibitor, alvocidib. This is a Phase 1, open-label, dose-escalation, dose-expansion, safety, pharmacokinetics, and pharmacodynamic study, with a purpose of determining the maximum tolerated dose (MTD) and dose-limiting toxicities (DLTs) of oral TP-1287 in patients with advanced metastatic or progressive solid tumors who are refractory to, or intolerant of, established therapy known to provide clinical benefit for their condition.

NCT ID: NCT03602833 Active, not recruiting - Soft-tissue Sarcoma Clinical Trials

Phase I Study Compound 451238 and Radiotherapy in Soft-tissue Sarcoma

Start date: November 5, 2018
Phase: Phase 1/Phase 2
Study type: Interventional

The objective of this trial is to assess the safety and tolerability of combining compound 451238 and radiotherapy, treating advanced STS.

NCT ID: NCT03601806 Active, not recruiting - Skin Kaposi Sarcoma Clinical Trials

Pomalidomide in Treating Patients With Kaposi Sarcoma and Human Immunodeficiency Virus Infection

Start date: April 26, 2021
Phase: Phase 2
Study type: Interventional

This phase II clinical trial studies the side effects of pomalidomide and how well it works in treating patients with Kaposi sarcoma and human immunodeficiency virus (HIV) infection. Biological therapies, such as pomalidomide, may stimulate the immune system in different ways and stop tumor cells from growing and it may also block the growth of new blood vessels necessary for tumor growth.

NCT ID: NCT03600649 Active, not recruiting - Ewing Sarcoma Clinical Trials

Clinical Trial of SP-2577 (Seclidemstat) in Patients With Relapsed or Refractory Ewing or Ewing-related Sarcomas

Start date: June 4, 2018
Phase: Phase 1
Study type: Interventional

Single agent, non-randomized, open label expansion in select sarcoma patients including myxoid liposarcoma and other sarcomas that share similar chromosomal translocations to Ewing sarcoma; AND dose expansion of the combination of seclidemstat with topotecan and cyclophosphamide in patients with Ewing sarcoma

NCT ID: NCT03596918 Completed - Clinical trials for AIDS-Related Kaposi Sarcoma

Evaluating Quality of Life in Patients With AIDS-Associated Kaposi Sarcoma Treated With Bleomycin and Vincristine

Start date: October 10, 2018
Phase:
Study type: Observational

This pilot phase I trial studies how well treatment with vincristine and bleomycin affect quality of life in patients with acquired immunodeficiency syndrome (AIDS)-associated Kaposi sarcoma.

NCT ID: NCT03590210 Completed - Clinical trials for Metastatic Adult Soft Tissue Sarcoma

Combined Treatment With Nivolumab and Trabectedin in Patients With Metastatic or Inoperable Soft Tissue Sarcomas

NiTraSarc
Start date: June 8, 2018
Phase: Phase 2
Study type: Interventional

The "NiTraSarc" trial evaluates the efficacy and feasibility (as determined by the safety and tolerability) of combined treatment with trabectedin and nivolumab in patients with metastatic or inoperable soft tissue sarcomas

NCT ID: NCT03556228 Recruiting - Breast Cancer Clinical Trials

Selective TrkA Inhibitor VMD-928 to Treat TrkA Overexpression Driven Solid Tumors or Lymphoma

Start date: June 8, 2018
Phase: Phase 1
Study type: Interventional

This is a multicenter, open-label, Phase 1 study of orally administered VMD-928 in adult subjects with advanced solid tumors or lymphoma that have progressed or are non responsive to available therapies and for which no standard or available curative therapy exists

NCT ID: NCT03548428 Recruiting - Sarcoma Clinical Trials

Stereotaxic Body Irradiation of Oligometastase in Sarcoma (Stereosarc)

Stereosarc
Start date: June 4, 2020
Phase: Phase 2
Study type: Interventional

Up to 50% of soft tissue sarcoma (STS) patients will develop metastases in the course of their disease. Cytotoxic therapy is a standard treatment in this setting but yields average tumor response rates of 25% at first line and ≤10% at later lines. It is also limited in the number of lines and courses by tolerance issues. Trials include poly/oligometastases indistinctively and suggest that consolidation ablation is used in ~20% of patients with residual oligometastases refractory to chemotherapy. Oligometastases represent a stage of disease between completely absent and widely metastatic, and which might be cured if the limited numbers of metastatic sites are eradicated. Ablative strategies to treat patients with oligometastases from sarcomas yield prolonged survival times and stereotactic body radiation therapy (SBRT) is associated with excellent tolerance. Surgery may be offered in selected metastatic cases. Alternatively and increasingly, SBRT yields high control rates at treated sites (≥ 80%). The so-called radioresistance of sarcomas is overcome by the high doses per fraction made possible owing to the high precision achieved with SBRT. SBRT is an accepted treatment strategy provided that tumor burden remains limited in the number and size of metastases. Systemic treatment can be combined with SBRT. SBRT may produce abscopal effects where tumors outside the irradiation area also demonstrate tumor shrinkage in some occurrences. SBRT produces systemic antitumoral immune response in certain conditions and enhances radiation-induced tumor cell death compared to conventional lower dose irradiation. Abscopal effects have been potentialized with SBRT/immunotherapy in several tumor models. Sarcomas are a privileged target tumor given their high metastatic propensity. Several potent immunomodulators that skew the tumor immune microenvironment toward a proimmunity context are being investigated in STS either alone or in combination with chemotherapy or targeted therapy. The PD-1 receptor is present within the tumor microenvironment, and limits the activity of infiltrating cytotoxic T lymphocytes, thus blocking effective immune responses. The action of PD-1 is triggered upon binding to its ligands. PD-1 can stimulate the immunosuppressive function of regulatory T cells. Moreover, blockade of PD-1 can stimulate anti-tumor immune responses. Significant responses have been obtained in several sarcomas with acceptable tolerance. Preliminary clinical experience suggests that immunotherapy can be efficient in refractory leiomyosarcomas. Several drugs targeting the PD-1/PD-L1/2 axis are ongoing either as single agents or in combination with ipilimumab, kinase inhibitors, or chemotherapy in STS subtypes. Combination of radiotherapy with immunotherapy is included as a means of increasing tumor antigen release in metastatic STS. Immunomodulated SBRT is a particularly attractive strategy, given the potential of radiation to induce cytotoxicity in tumors and induce abscopal effects. A phase II radiation trial showed increased apoptosis-, intra-tumoral dendritic cells and accumulation of intratumoral T cells in STS with correlation with tumor-specific immune responses. We here propose a randomized phase II study to prolong progression-free survival (PFS) with the combination of SBRT/immunotherapy in oligometastatic STS patients. SBRT is well-tolerated with hardly any severe toxicity (fewer than 5% acute and late grade 3 toxicities). It is performed in an ambulatory setting in only a few treatment fractions. Associations between irradiation and immunomodulatory agents appear to be synergistic and show favorable tolerance profiles. Immunomodulatory agents have a more favorable toxicity profile than cytotoxic agents with about 65% overall acute toxicities. Immunotherapy selectively binds to PD-L1 and competitively blocks its interaction with PD-1. Compared with anti-PD-1 antibodies that target T-cells, immunotherapy targets tumor cells, and is therefore may induce fewer side effects, including a lower risk of autoimmune-related safety issues, as blockade of PD-L1 leaves the PD-L2 - PD-1 pathway intact to promote peripheral self-tolerance. Stereotactic irradiation is associated with an excellent tolerance with rates of grade 3 or more toxicities below 5%. Preliminary data of toxicity with the association of stereotactic irradiation and immunotherapy show no cumulative toxicity in association with immunotherapy. However, their incidence and characteristics are no different from that observed with stereotactic irradiation alone. Moreover, intracranial metastases are exceptional in sarcomas. The toxicity of the association for extracranial stereotactic irradiation does not seem to be increased either.

NCT ID: NCT03546127 Completed - Soft Tissue Sarcoma Clinical Trials

Molecular Profiling to Improve Outcome of Patients in Cancer. A Pilot Study

MULTIPLI-0
Start date: May 23, 2017
Phase:
Study type: Observational

Next Generation Sequencing in cancer: a feasibility study in France to assess sample circuit and to perform analyzes within a limited time.

NCT ID: NCT03542097 Completed - Clinical trials for Ewing Sarcoma Family of Tumors

Assessment of MGMT Promoter Methylation in Advanced Ewing Sarcoma Treated With Temozolomide and Irinotecan

MGMTLiberati
Start date: April 15, 2014
Phase:
Study type: Observational

This is a biological study in patients with advanced Ewing Sarcoma who received, according, clinical practice, temozolomide and irinotecan The O6-methylguanine-DNA methyltransferase (MGMT) methylation status, will be correlated with the disease clinical data and with the disease response