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Sarcoma clinical trials

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NCT ID: NCT04101123 Recruiting - Cancer Clinical Trials

Children and Adolescents With Leukemia, Brain Tumors, and Sarcomas

SUPATEEN
Start date: January 1, 2020
Phase:
Study type: Observational

Aim of this study is to investigate the influence of social factors on participation and activity among children and adolescents aged 10-18 years with leukemia, brain tumors, and sarcomas. Furthermore personal and treatment-related factors and their impact on participation will be explored

NCT ID: NCT04095208 Recruiting - Advanced Cancer Clinical Trials

Combination of Nivolumab Plus Relatlimab in Patients With Advanced or Metastatic Soft-tissue Sarcoma: a Proof-of-concept Randomized Phase II Study

CONGRATS
Start date: February 27, 2020
Phase: Phase 2
Study type: Interventional

This is a multicenter study assessing the efficacy of nivolumab in association with relatlimab.

NCT ID: NCT04091295 Available - Pancreatic Cancer Clinical Trials

BLESSED: Expanded Access for DeltaRex-G for Advanced Pancreatic Cancer, Sarcoma and Carcinoma of Breast

Start date: n/a
Phase:
Study type: Expanded Access

Forty patients with pancreatic cancer, sarcoma and carcinoma of breast will receive DeltaRex-G intravenously at a dose of 1-4 x 10e11 colony forming units (cfu) or equivalent 0.6-1.8 x 10e10 RV copies per dose one to three times a week. DeltaRex-G may be given alone or with one or more FDA approved cancer therapies/immunotherapies. Based on previous Phase 1/2 US based clinical studies, DeltaRex-G does not suppress the bone marrow or cause serious organ dysfunction, and enhanced immune cell trafficking in tumors may cause the tumors to appear larger or new lesions to appear on CT, PET or MRI. Further, tumor stabilization/regression/remission may occur later during the treatment period. Therefore, DeltaRex-G will be continued regardless of CT, PET or MRI results if the patient has clinical benefit and does not have symptomatic disease progression.

NCT ID: NCT04076579 Active, not recruiting - Sarcoma Clinical Trials

Trabectedin in Combination With Olaparib in Advanced Unresectable or Metastatic Sarcoma

Start date: March 17, 2020
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well trabectedin and olaparib work in treating patients with sarcoma that cannot be removed by surgery or has spread to other places in the body. Drugs used in chemotherapy, such as trabectedin, work in different ways to stop the growth of tumor cells, either by killing cells, stopping them from dividing or stopping them from spreading. Olaparib may stop the growth of tumor cells by blocking pathways responsible for repairing damaged cells. Giving trabectedin and olaparib may shrink or stop the tumor from growing.

NCT ID: NCT04074564 Recruiting - Sarcoma Clinical Trials

MASCT-I Combined With Apatinib and/or Camrelizumab in the Treatment of Bone and Soft Tissue Sarcoma

Start date: November 22, 2019
Phase: Early Phase 1
Study type: Interventional

This study will evaluate the safety and preliminary efficacy of Multi-Antigen Stimulated Cell Therapy-I Injection (MASCT-I) in combination with Apatinib and/or Camrelizumab in patients with advanced bone and soft-tissue sarcoma.

NCT ID: NCT04072393 Recruiting - Breast Cancer Clinical Trials

Cardiac Rehabilitation for Patients Receiving Radiation Therapy for Thoracic Cancers

Start date: January 15, 2021
Phase: N/A
Study type: Interventional

Other than optimizing medical management of cardiac risk factors, and reducing radiotherapy (RT) dose to the heart, there currently exist no interventions to mitigate or reverse the adverse cardiac effects of RT. Aerobic exercise has been demonstrated to improve patient quality of life, cardiac outcomes, and cardiorespiratory fitness in patients with cancer receiving cardiotoxic systemic therapies, but the effects of aerobic exercise on patients at high risk for radiation induced heart disease (RIHD) is unknown. In addition, home-based cardiac rehabilitation has not been tested in patients with thoracic cancers.

NCT ID: NCT04072042 Recruiting - Sarcoma Clinical Trials

BIOmarker Driven Trial of VEGFR2 Inhibitor in Advanced Sarcoma

BIOVAS
Start date: August 31, 2019
Phase: Phase 2
Study type: Interventional

The aim of this study is to evaluate the efficacy and safety of Apatinib monotherapy for relapsed or refractory advanced bone and soft tissue sarcoma with VEGFR-2 (KDR) 604A>G polymorphism as predictive biomarker

NCT ID: NCT04071704 Recruiting - Sarcoma Clinical Trials

Assessing Health-related Quality of Life in Sarcoma Patients

Start date: May 1, 2019
Phase:
Study type: Observational

Although the clinical effectiveness of sarcoma treatment has improved, long-lasting and cumulative treatment side-effects may often detract from the overall marginal advantage. Information only on survival is insufficient to determine the net clinical benefit of a treatment. It is important to assess treatment effectiveness both in terms of objective outcomes (e.g., response, recurrence and survival) and in terms of subjective patient reported outcomes (PROs), objective functional outcomes including health-related quality of life (HRQoL). Previous studies have predominantly used generic HRQoL instruments, which cover some relevant issues but do not capture all the unique experiences of patients with sarcoma, and thus lack content validity. A sarcoma-specific questionnaire should be able to detect, with more sensitivity, side-effects, symptoms and problems with function that are particularly relevant to patients with sarcoma. To date , there is no specific sarcoma HRQoL instrument available; and, given the heterogeneity of the disease in terms of subtype, location, age and treatment, the development of such an instrument may be challenging. The aim of this collaborative project between the EORTC Quality of Life Group (QLG) and the EORTC Soft Tissue and Bone Sarcoma Group (STBSG) is to raise the standard of HRQoL measurement in patients with sarcoma. An important question remains to be answered: Is it possible to develop one PROs questionnaire covering HRQoL issues that are relevant to all adult patients with sarcoma, or are the HRQoL issues related to the different localization / treatment sufficiently different to warrant the creation of separate item lists selected from the EORTC QLG Item Library?

NCT ID: NCT04067115 Active, not recruiting - Ewing Sarcoma Clinical Trials

SARC037: A Phase I/II Study to Evaluate the Safety of Trabectedin in Combination With Irinotecan in Ewing Sarcoma Patients

U01CA236220
Start date: January 5, 2021
Phase: Phase 1/Phase 2
Study type: Interventional

This study evaluates the trabectedin and irinotecan in the treatment of Ewings sarcoma, with a EWS-FLI1 mutation. Patients will also receive an infusion of 18F-FLT in combination with a Positron Emission Tomography (PET) scan to help evaluate the effect of treatment. Phase I was completed on 11/16/2022. Phase II is actively recruiting.

NCT ID: NCT04065152 Recruiting - Kaposi Sarcoma Clinical Trials

Phase II Multicenter Study of Talimogene Laherparepvec in Classic or Endemic Kaposi Sarcoma

KAPVEC
Start date: January 1, 2021
Phase: Phase 2
Study type: Interventional

Kaposi Sarcoma (KS) is a lymphangioproliferation associated with human herpes virus 8 (HHV8) promoted by immunosuppression. HIV-related KS and iatrogenic posttransplantation KS are treated by immune restoration, in association with local or systemic therapies as chemotherapies if required. Conversely in classic and endemic KS, the underlying relative immunosuppression cannot be directly targeted. Treatment is poorly codified, mostly based on surgery or radiotherapy for localized KS. Most aggressive forms with visceral involvement are treated with chemotherapies or interferon, which give at best 30-60% of transient responses and may not be well tolerated in elderly patients. Talimogene laherparepvec is the first oncolytic immunotherapy approved by the FDA, in metastatic or unresectable melanoma with injectable nodal or cutaneous lesions. It is designed to induce tumor regression of injected lesions through direct lytic effects, and of uninjected lesions through induction of systemic antitumor immunity. In Merkel cell carcinoma (MCC), another virus-induced tumor, treatment with PD-1/PD-L1 axis inhibitors have proven efficacy, thus providing a proof of principle that immunotherapy could be effective in virus-induced tumors. Two cases of metastatic MCC successfully treated with talimogene laherparepvec were recently reported, suggesting that talimogene laherparepvec may also be an effective therapeutic option. Considering the high immunogenicity of viral epitopes in KS tumors, the role of the immune evasion in the development of KS, and the cutaneous manifestations (>90% of patients) that can be easily injected, classic and endemic KS is a good tumor model to be targeted with talimogene laherparepvec. The main objective is to assess whether talimogene laherparepvec is clinically inactive (partial+complete response probability π0<10%) or truly active (partial+complete response probability π1>40%) in classic and endemic Kaposi sarcoma.