View clinical trials related to Recurrent Prostate Carcinoma.
Filter by:This phase I/II trial studies the side effects of enzalutamide and indomethacin and to see how well they work in treating patients with prostate cancer that does not respond to treatment with hormones, has come back, or has spread from where it started to other places in the body. Androgens can cause the growth of prostate cancer cells. Hormone therapy using enzalutamide and indomethacin may fight prostate cancer by lowering the amount of androgen the body makes and/or blocking the use of androgen by the tumor cells.
This phase I trial studies the side effects and best way to give hyperthermia and high dose rate radiation therapy in treating patients with prostate cancer that has come back after prior radiation treatment. Radiation therapy, such as high dose rate brachytherapy, uses radioactive material placed directly into or near a tumor to kill tumor cells. Hyperthermia therapy may make tumor cells more sensitive to the effects of radiation therapy by heating them to several degrees above normal body temperature. Giving hyperthermia and high dose rate radiation therapy may work better in treating patients with recurrent prostate cancer after radiation.
This phase II trial studies how well trametinib works in treating patients with hormone-resistant prostate cancer that is growing or getting worse and has spread to other parts of the body. Trametinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
This phase II trial studies the side effects and how well abiraterone acetate, niclosamide, and prednisone work in treating patients with hormone-resistant prostate cancer. Androgens can cause the growth of prostate cells. Hormone therapy using abiraterone acetate may fight prostate cancer by lowering the amount of androgen the body makes. Niclosamide is a drug that may block another signal that can cause prostate cancer cell growth. Prednisone is a drug that can help lessen inflammation. Giving abiraterone acetate, niclosamide, and prednisone may be a better treatment for patients with hormone-resistant prostate cancer.
The purpose of this research study is to see if recurrent prostate cancer can be identified using a special procedure called a positron emission tomography (PET) scan. PET/CT is used to describe information regarding the function, as well as location and size of a tumor.
This pilot trial studies how well nanoparticle albumin-bound rapamycin works in treating patients with cancer that as has spread to other places in the body and usually cannot be cured or controlled with treatment (advanced cancer) and that has an abnormality in a protein called mechanistic target of rapamycin (mTOR). Patients with this mutation are identified by genetic testing. Patients then receive nanoparticle albumin-bound rapamycin, which may stop the growth of cancer cells by blocking the mTOR enzyme, which is needed for cell growth and multiplication. Using treatments that target a patient's specific mutation may be a more effective treatment than the standard of care treatment.
This phase II trial studies how well nivolumab and ipilimumab work in treating patients with hormone-resistant prostate cancer that has spread to other places in the body and express androgen receptor-variant-7 (AR-V7). Tumor cells expressing AR-V7 has been shown to be resistant to hormone therapy and some chemotherapy in patients with prostate cancer. Biomarker-driven therapy, such as nivolumab and ipilimumab, may work by blocking key biomarkers or proteins that help tumor cells to escape the immune system surveillance and this may help the immune system to kill tumor cells that express AR-V7.
This phase I trial studies the side effects and best dose of niclosamide when given together with enzalutamide in treating patients with castration resistant prostate cancer that has spread from the primary site to other places in the body. Androgens such as testosterone can cause the growth of prostate cancer cells. Drugs like enzalutamide block androgens from driving tumor growth; however, when androgen receptor splice variants are present, these drugs may not be effective. Niclosamide may decrease the amount of androgen receptor splice variant present within tumor cells, thus promoting the anti-tumor effects of enzalutamide. Giving niclosamide together with enzalutamide may be a better treatment for prostate cancer.
This phase I/II trial studies the side effects and best dose of cabazitaxel when given together with enzalutamide in treating patients with prostate cancer that has spread to other places in the body (metastatic) and has not responded to treatment with hormones or no longer responds to treatment with hormones (hormone-resistant). Drugs used in chemotherapy, such as cabazitaxel, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Androgen can cause the growth of prostate cancer cells. Hormone therapy using enzalutamide may fight prostate cancer by blocking the use of androgen by the tumor cells. Giving cabazitaxel together with enzalutamide may work better in treating metastatic, hormone-resistant prostate cancer.
This randomized pilot trial studies vaccine therapy and pembrolizumab in treating patients with prostate cancer that does not respond to treatment with hormones (hormone-resistant) and has spread to other places in the body (metastatic). Vaccines made from deoxyribonucleic acid (DNA), such as pTVG-HP plasmid DNA vaccine, may help the body build an effective immune response to kill tumor cells. Monoclonal antibodies, such as pembrolizumab, may find tumor cells and help kill them. Giving pTVG-HP plasmid DNA vaccine and pembrolizumab may kill more tumor cells.