View clinical trials related to Metastatic Sarcoma.
Filter by:The Sponsor is developing KB707, a replication-defective, non-integrating herpes simplex virus type 1 (HSV-1)-derived vector that is designed to stimulate an anti-tumor immune response through the production of cytokines delivered to the airways of people with advanced solid tumor malignancies affecting the lungs via nebulization. This Phase 1, open-label, multicenter, dose escalation and expansion study is designed to evaluate the safety and tolerability of KB707 in adults with with advanced solid tumor malignancies affecting the lungs who have progressed on standard of care therapy, cannot tolerate standard of care therapy, or refused standard of care therapy. The study will include a dose escalation portion for single agent KB707 using a standard 3+3 design followed by an expansion portion to further evaluate single agent KB707 at a dose determined by preliminary data in the dose escalation phase. Subjects in both the dose escalation and dose expansion cohorts will receive KB707 via nebulization weekly for three weeks, then every three weeks for up to two years until tumor progression, death, unacceptable toxicity, symptomatic deterioration, achievement of maximal response, subject choice, Investigator decision to discontinue treatment, or the Sponsor determines to terminate the study.
This phase I trial tests the safety, side effects, and best dose of combination therapy with liposomal doxorubicin and peposertib in treating patients with sarcoma that has spread from where it first started, to other places in the body (metastatic), or cannot be removed by surgery (unresectable) and for which no known cure is available (advanced). Doxorubicin is in a class of medications called anthracyclines. Doxorubicin damages the cell's DNA and may kill cancer cells. It also blocks a certain enzyme needed for cell division and DNA repair. Liposomal doxorubicin is a form of the anticancer drug doxorubicin that is contained inside very tiny, fat-like particles. Liposomal doxorubicin may have fewer side effects and work better than other forms of the drug. Peposertib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. It may also enhance the activity of chemo- and radiotherapy. There is some pre-clinical evidence in animal models that combining peposertib with liposomal doxorubicin can shrink or stabilize certain types of cancer for longer than either drug alone, but it is not known if this will happen in people. Combination therapy with liposomal doxorubicin and peposertib may be effective in patients with advanced sarcoma.
This phase II trial studies the effect of avapritinib in treating malignant solid tumors that have a genetic change (mutation) in CKIT or PDGFRA and have spread to nearby tissue or lymph nodes (locally advanced) or other places in the body (metastatic). Avapritinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Avapritinib may help to control the growth of malignant solid tumors.
This trial compares cryoablation combined with stereotactic body radiation therapy to stereotactic body radiation therapy alone to see how well they work in treating patients with pain from cancer that has spread to the bones (bone metastases). Bone is a common site of metastasis in advanced cancer, and bone metastases often result in debilitating cancer-related pain. The current standard of care to treat painful bone metastases is radiation therapy alone. However, many patients do not get adequate pain relief from radiation therapy alone. Another type of therapy that may be used to provide pain relief from bone metastases is cryoablation. Cryoablation is a procedure in which special needles are inserted into the tumor site. These needles grow ice balls at their tips to freeze and kill cancer cells. The goal of this trial is to compare how well cryoablation in combination with radiation therapy works to radiation therapy alone when given to cancer patients to provide pain relief from bone metastases.
This early phase I trial studies an imaging technique called 68Ga-FAPi-46 PET/CT to determine where and to which degree the FAPI tracer (68Ga-FAPi-46) accumulates in normal and cancer tissues in patients with sarcoma. PET is an established imaging technique that utilizes small amounts of radioactivity attached to very minimal amounts of tracer, in the case of this research, 68Ga-FAPi. Because some cancers take up 68Ga-FAPi it can be seen with PET. CT utilizes x-rays that traverse body from the outside. CT images provide an exact outline of organs and potential inflammatory tissue where it occurs in patient's body.
This study compares the outcomes and safety of two standard treatment options called microwave ablation and surgical wedge resection in patients with non-small cell lung cancer, sarcoma and colorectal cancer that has spread to other parts of the body (metastatic). Microwave ablation is designed to kill tumor cells by heating the tumor until the tumor cells die. A wedge resection is a procedure that involves the surgical removal of a small, wedge-shaped piece of lung tissue to remove a small tumor or to diagnose lung cancer. Comparing these two treatment options may help researchers learn which method works better for the treatment of non-small cell lung cancer, metastatic sarcoma, and metastatic colorectal cancer.
The goal of this study is to find the highest tolerated dose of NC-6300 that can be given to patients with advanced solid tumors or soft tissue sarcoma. The safety and tolerability of the drug will also be studied.