View clinical trials related to Carcinoma, Ovarian Epithelial.
Filter by:PARP inhibitors have changed the treatment paradigm of ovarian cancer. Most patients using PARP(poly-ADP ribose polymerase) inhibitors will suffer different grades of adverse events(AEs), followed by dose reduction. It has not been reported whether the dose-reduced olaparib as maintenance treatment have an impact on efficacy. Both PAOLA-1 and AVANOVA 2 studies showed that combined PARP inhibitors and antiangiogenic drugs have synergistic anti-tumor effect. Anlotinib is a novel multi-target tyrosine kinase inhibitor that can inhibit VEGFR(vascular endothelial growth factor receptor), FGFR(fibroblast growth factor receptor), PDGFR(platelet-derived growth factor receptor) α/β, c-Kit, and Ret. And anlotinib has been approved as orphan drug designations for treatment of ovarian cancer by FDA in 2015. Previous studies showed that anlotinib had manageable toxicity and promising antitumor effect. Our study is expected to investigate the efficacy and safety of anlotinib combined with dose-reduced olaparib as maintenance treatment in platinum-sensitive recurrent ovarian cancer patients.
GYNECO-IMM&Co is a prospective clinical and biological cohort ; this study aims to identify immune surveillance and escape mechanisms and also predictive biomarkers for survival patients who suffer from ovarian and breast carcinoma.
This study is a prospective, single-arm, open-label, single-dose dose finding and extension study to evaluate the safety, tolerability, pharmacokinetics, and anti-tumor efficacy profiles of the LCAR-M23 CAR-T cell therapy in subjects with relapsed and refractory epithelial ovarian cancer after prior adequate standard of care.
This is a phase II open label, non-randomized, study to evaluate the safety and efficacy of Ipatasertib (GDC-0068) in combination with paclitaxel in platinum-resistant recurrent epithelial ovarian cancer.
A phase II, multicenter, open-label, single-arm study to evaluate the efficacy, safety and pharmacokinetics of SC10914 in subjects with gBRCA1/2 mutated advanced ovarian cancer in china.
Niraparib is an oral, potent and highly selective PARP1/2 inhibitor. It can be used as a single drug in HRD positive ovarian cancer patients for multi-line therapy. Bevacizumab is a recombinant humanized monoclonal antibody that inhibits tumor angiogenesis and is also recommended for the treatment of recurrent ovarian cancer. Clinical studies showed that niraparib combined with bevacizumab could significantly prolong progression free survival of platinum sensitive recurrent ovarian cancer. We intend to conduct a single-arm, prospective, open-label, phase II study to observe the efficacy and safety of niraparib combined with bevacizumab in the treatment of FIGO III/IV platinum refractory/resistant ovarian cancer, fallopian tube cancer and primary peritoneal cancer. The results are expected to provide more effective and precise treatment for platinum resistant recurrent/refractory ovarian cancer patients.
This is a longitudinal observational phase II, single center, single arm study on the reliability of high grade serous ovarian carcinoma organoids obtained from primary debulking surgery (PDS)+adjuvant chemotherapy and neoadjuvant chemotherapy + interval debulking surgery (NACT+IDS) cases as model for the patients' response to treatments. Since organoids represent a model system comparable to patient-derived xenografts, the investigators tested the null hypothesis that the possibility of correctly identifying the drug-sensitivity could improve from 80%, as assessed by xenografts to at least 95%. The first step was planned to include 7 patients; if 5 or more patients do not respond, the trial will be terminated. If the trial goes on to the second stage, a total of 43 patients will be studied. Considering a patient dropout of approximately 10%, the study was planned to enroll at least 48 patients.
This phase II trial studies if talazoparib works in patients with cancer that has spread to other places in the body (advanced) and has mutation(s) in deoxyribonucleic acid (DNA) damage response genes who have or have not already been treated with another PARP inhibitor. Talazoparib is an inhibitor of PARP, a protein that helps repair damaged DNA. Blocking PARP may help keep cancer cells from repairing their damaged DNA, causing them to die. PARP inhibitors are a type of targeted therapy. All patients who take part on this study must have a gene aberration that changes how their tumors are able to repair DNA. This trial may help scientists learn whether some patients might benefit from taking different PARP inhibitors "one after the other" and learn how talazoparib works in treating patients with advanced cancer who have aberration in DNA repair genes.
In April 2017, Tesaro, Inc. opened an expanded access program (EAP) to make niraparib, an investigational poly (ADP-ribose) polymerase (PARP) inhibitor, available to eligible women with recurrent epithelial ovarian, fallopian tube, or primary peritoneal cancer following a complete or partial response to platinum-based chemotherapy, mainly for BRCA wild-type (BRCAwt) tumor patients, a clear unmet medical need for these ovarian cancer patients. As of 19 August 2019, the EAP closing date, there were 446 patients enrolled in 105 Spanish sites. All eligible deceased and consenting living patients at the participating centers will be included. Data will be directly retrieved from hospital medical records and reported in the electronic Case Report Form (eCRF). This study seeks to evaluate the safety profile and dose adjustments of niraparib in platinum sensitive recurrent ovarian cancer patients treated in a real world setting within the Spanish expanded access program (EAP).
This clinical study will use the small molecule translocator protein (TSPO) ligand, 18F-labeled DPA- 714, to visualize and quantify neuroinflammation in treatment naivete women with stage 1-4 newly diagnosed ovarian cancer (without brain metastases) prior to starting neoadjuvant chemotherapy treatment (baseline) and within a month of completing first 6 cycles of cytotoxic chemotherapy treatment (follow-up). In addition, we will use the well-characterized small molecule PET(Positron Emission Tomography) tracer, 11C-labeled Pittsburgh compound B (PiB) to visualize and quantify the regional brain distribution of pathological amyloid deposition at baseline only. The brain amyloid PET and MRI data acquired through this study will be correlated with cognitive test data, clinical data, genetic testing, and biospecimens collected in this study.