View clinical trials related to Carcinoma, Ovarian Epithelial.
Filter by:This is a multicenter, open-label, single-arm, phase Ib study to evaluate the safety and efficacy of Mitoxantrone Hydrochloride Liposome in subjects with Platinum-Resistant or Platinum-Refractory Relapsed Ovarian Cancer.
Molecular alterations in Homologous Recombination Repair (HRR) genes have been associated with clinical benefit from chemotherapy and/or Poly (ADP-ribose) polymerase (PARP) inhibitors in patients with epithelial ovarian cancer. Therefore, the performance of tumor molecular profiling is currently recommended by international guidelines at initial diagnosis, among other reasons, for the modification of the treatment plan. The investigators' hypothesis was that tumor molecular profiling reveals additional parameters that can improve the predictive and prognostic role of the mere presence of HRR gene mutations. The study aimed to investigate the prognostic and predictive role of clonality of pathogenic variants in HRR genes and/or concurrent pathogenic variants in other clinically relevant genes.
The aim of the study to evaluate the feasibility and accuracy of sentinel lymph node technique in ovarian cancer.
The proposed study is an international randomized phase II, multicenter, open-label, three arms trial to assess best supportive care (BSC) vs OSE2101 and vs OSE2101 + pembrolizumab as maintenance treatment for patients with platinum sensitive relapsed ovarian cancers, previously treated with chemotherapy (regardless of the number of prior lines of platinum-based chemotherapy), bevacizumab (if eligible) and a PARP inhibitor (if eligible). Patients in Complete Response, Partial Response, or Stable Disease at the end of chemotherapy with at least 4 cycles of platinum based chemotherapy will be randomized in one of the three arms (randomization 1:1:2). They will receive one or the two study treatments or BSC until progression, or intolerance, or up to 2 years (from 1st study treatment dose).
To assess the impact of comprehensive staging surgery with no lymphadenectomy on survival and quality of life in patients with early-stage ovarian cancer.
Open label first-in-human study of TH1902 in solid cancer, with 4 sequential parts: Part 1 (dose escalation): patients with recurrent advanced solid tumors (all comers) that have relapsed or are refractory to standard chemotherapy, surgery, radiation therapy, and for which no known effective therapies exist. Part 2 (expansion): selected patient populations with recurrent advanced TNBC, HR+ breast cancer, epithelial ovarian cancer, endometrial cancer, cutaneous melanoma, thyroid cancer, SCLC, prostate cancer and other cancers known to express SORT1 that are refractory to standard therapy. Part 3 (optimization): patients diagnosed with histologically or cytologically confirmed high grade serous ovarian cancer, including high grade peritoneal or fallopian tube cancer, or high grade endometrioid cancer, that is refractory or resistant to standard therapies, should not be considered platinum sensitive, and where current therapy is not considered to be providing benefit. Part 4 (basket expansion): selected cancer type diagnosed with histologically or cytologically confirmed cancers, where TH1902 has been studied and/or showed activity (in Parts 1 to 3), that is refractory or resistant to standard therapies, and where current therapy is not considered to be providing benefit.
This pilot study will assess the feasibility of using an implantable microdevice to measure local intratumor response to chemotherapy and other clinically relevant drugs in ovarian, fallopian tube, and primary peritoneal cancer. The name of the study intervention involved in this study is: -implantable microdevice
Ovarian cancer is the second fatal gynecological cancer. More than 70% of ovarian cancer patients are diagnosed as advanced. Olaparib is the first oral poly adenosine diphosphate-ribose polymerase inhibitor (PAPPi) approved by the U.S. Drug Administration (FDA) in December 2014. It can be used as a maintenance treatment for adult patients with platinum-sensitive recurrent epithelial ovarian cancer, fallopian tube cancer, and primary peritoneal cancer after platinum-containing chemotherapy has achieved complete or partial remission. At present, most studies based on olaparib are randomized controlled trials (RCTs). Because RCTs often have strict inclusion and exclusion criteria and they are implemented in a highly standardized environment. Its internal validity is high, but the research results may not be able to be extrapolated to practice. This study is a prospective real world study. In this study, based on the modified Response Evaluation Criteria in Solid Tumors (RECIST 1.1), we evaluate the use of olaparib in patients with ovarian cancer, fallopian tube cancer, and primary peritoneal cancer in the progression-free survival (PFS), overall survival (OS), and objective control rate (ORR), etc. At the same time, the safety and tolerability of olaparib and the impact on the quality of life of patients are evaluated. Finally, we analyze the results as a supplement to the conclusions of randomized controlled trials to provide better guidance for patients.
This study develops infertility survey among reproductive age women with gynecological and breast cancer. This study aims to learn how women consider whether or not to try to have a baby after surviving cancer. The advice gathered from this survey may be shared with patients and survivors in the future, so that they have information to inform their decisions about cancer treatment and family planning.
This study aims to assess the safety and tolerability of PHI-101 in patients with platinum-resistance/refractory ovarian, fallopian tubal, and primary peritoneal cancer. This study also evaluates the pharmacokinetics of PHI-101 and efficacy of PHI-101 during treating platinum-resistance/refractory ovarian, fallopian tubal, and primary peritoneal cancer. PHI-101 is a CHK2 inhibitor that is a checkpoint kinase binding specifically to CHK2, rather than CHK1, and it inhibits the DDR system by inhibiting the ATM-CHK2 pathway, which is activated in response to DSBs. When a high-grade serous ovarian (HGSO) cancer cell line and various ovarian cancer cell lines (CAOV3, OVCAR3, SK-OV-03, and SW626) were treated with PHI-101 in a non-clinical study, the therapeutic effect of PHI-101 against ovarian cancer was demonstrated by a decrease in viability of ovarian cancer cells. In addition, a stronger growth inhibition effect was observed compared to that of treatment with olaparib or rucaparib alone, and a much stronger inhibition effect was observed when concomitantly used with paclitaxel, cisplatin, and topotecan. Based on the aforementioned results of the non-clinical studies, the potential of PHI-101 as a new treatment or concomitant cytotoxic chemotherapeutics for patients with ovarian cancer who are resistant to existing antineoplastic drugs was confirmed.