View clinical trials related to Endometrial Neoplasms.
Filter by:The ultimate goal of the study is to identify potential biomarkers, immune gene expression signatures, and co-stimulatory pathways that may be used to understand the effect of immune checkpoint inhibitors on gynecologic cancers.
In this study, the researchers want to learn more about Vigil and durvalumab in advanced women's cancers: 1) how much of Vigil in combination with durvalumab (MEDI4736) can be given with an acceptable level of side effects, 2) the effects of Vigil and durvalumab in combination (good and bad), 3) if Vigil will cause changes in cancer cells that may help durvalumab attack the cancer, and 4) whether or not Vigil and durvalumab will slow your cancer or stop your cancer from getting worse. Combining Vigil with durvalumab will allow the former to induce (or increase) the infiltration of activated T cells into tumors, and in addition, to enhance PD-L1 (programmed cell death ligand 1) expression. Consequently, the response rate of historically low or un-responsive cancer will be increased with the combination of Vigil and anti PD-L1.
The primary purpose of this study is to determine if sapanisertib in combination with weekly paclitaxel improves progression-free survival (PFS) compared to weekly paclitaxel alone.
The primary objective of this pilot study is to determine whether or not it is feasible to use MRgHIFU to treat symptomatic (pain, bleeding) recurrent pelvic malignancy with an acceptable safety profile when conventional treatment options are not available. The ultimate goal is to be able not only to offer a viable method of symptom palliation in patients with recurrent pelvic tumours and improve their quality of life; but also to control tumour growth and extend life in a group of relatively young patients with isolated local recurrence.
Investigators proposed to refine and test the feasibility and acceptability of a 4-month multi-modal lifestyle intervention in African American female breast or endometrial cancer survivors diagnosed with type 2 diabetes.
In endometrial cancer (EC) pelvic and paraaortic lymphadenectomy is performed only in high risk groups (with approximately 20% of patients having lymph node metastases (LNM)) whereas no lymphadenectomy is recommended in low risk groups despite 5% LNM. Moreover, preoperative risk group allocation is known to be erroneous in up to 15% of patients. A technique identifying sentinel lymph nodes (SLN) in endometrial cancer have the potential to spare extensive surgery in 80% of high risk patients, identify low risk patients with nodal metastases, diminish side effects caused by full lymphadenectomy and render some expensive preoperative risk group allocation measures unnecessary. A clinically useful SLN technique requires a high technical success rate, a clear definition of SLN, an algorithm taking into account that metastatic nodes not always accumulate tracer and a reproducible surgical algorithm. A definition of SLN requires knowledge on lymphatic anatomy. Unfortunately all tracers, dyes/radiotracers often result in an abundance of colored/ signaling nodes. Therefore, a definition of a SLN requires identification of efferent/afferent lymph vessels. Several publications describe sentinel node techniques in EC with a variety of tracers (various dyes, radiotracer, alone or in combination). Sentinel nodes are usually described as "radioactive nodes" or "colored nodes" only with no further discrimination. No study relate to an anatomical description of lymphatic pathways. The aims of this study is to systematically display the major anatomical pathways with the use of ICG and to evaluate a standardized and reproducible SLN surgical algorithm based on lymphatic anatomy and identification of efferent lymph vessels.
This phase II trial studies how well enzalutamide, carboplatin, and paclitaxel work in treating patients with endometrioid endometrial cancer that is stage III-IV or has come back. Androgens can cause the growth of endometrioid endometrial cancer. Antihormone therapy, such as enzalutamide may lessen the amount of androgen made by the body. Drugs used in chemotherapy, such as carboplatin and paclitaxel, 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. Giving enzalutamide, carboplatin, and paclitaxel may work better in treating patients with endometrioid endometrial cancer.
The purpose of this study is to determine whether or not there are more complications in the extraperitoneal compared with the transperitoneal approach for laparoscopic aortic lymphadenectomy for the surgical staging of endometrial or ovarian cancer
This phase II trial studies how well ribociclib and letrozole work in treating patients with estrogen receptor (ER) positive ovarian, fallopian tube, primary peritoneal, or endometrial cancer that has returned (come back) after a period of improvement. Ribociclib may stop the growth of tumor cells by blocking some enzymes needed for cell growth. Cancer cells that are estrogen receptor positive may need estrogen to grow. Letrozole lowers the amount of estrogen made by the body and this may stop the growth of tumor cells that need estrogen to grow. Giving ribociclib together with letrozole may be an effective treatment in patients with ovarian, fallopian tube, primary peritoneal, or endometrial cancer.
This is an open-label, multicenter, Phase 1b platform study in subjects with advanced or metastatic solid tumors (Part 1a) and subjects with selected solid tumors (Part 1b and Part 2). Two treatment groups (Group A and Group B) will be evaluated Part 1a utilizes a 3+3 design to evaluate pembrolizumab and INCB combinations in advanced solid tumors. Group A will evaluate a JAK inhibitor with JAK1 selectivity itacitinib (INCB039110) in combination with pembrolizumab (MK-3475) and Group B will evaluate a PI3K-delta inhibitor (INCB050465) in combination with pembrolizumab to determine the maximum tolerated dose (MTD) or PAD and recommend a dose for the Part 1b safety expansion with each combination. Once the recommended dose has been identified in Part 1a, subjects with select solid tumor types will be enrolled into safety expansion cohorts based upon prior treatment history with a PD-1 pathway-targeted agent (Part 1b) for each combination. Part 2 utilizes a Simon 2-Stage design to evaluate INCB050465 in combination with pembrolizumab in patients with small cell lung cancer (SCLC) and a 1 stage design to evaluate the combination in patients with non-small cell lung cancer (NSCLC) and urothelial cancer (UC).