View clinical trials related to Carcinoma, Ovarian Epithelial.
Filter by:Epithelial Ovarian cancer (EOC) is the leading cause of death among gynaecologic malignancies in western civilized countries, with an estimated prevalence in Europe and the US of 752,600 in 2007 and 59,828 deaths annually. State-of-the-art diagnostic tests for EOC include transvaginal ultrasonography and serum cancer antigen (CA-125) measurements; the specificity of these diagnostic tools however is low, and both tests are not effective enough at detecting EOC early enough to improve clinical outcomes. Definitive diagnosis of EOC still relies on histological or cytological confirmation. These findings underline the importance for an effective test for early detection of EOC. In the current project we will obtain a lavage of the uterine cavity. It will be investigated whether cells from EOCs or genetic material from those cells can be detected in the lavage fluid. Aim of this study: There is a clear clinical need for a diagnosis test to detect EOC at an earlier stage.
The first part of this study is to find the recommended dosages of a combination of two drugs: pazopanib and fosbretabulin, which will be given to female patients with relapsed ovarian cancer. The second part of the study involves comparing the recommended dose of pazopanib and fosbretabulin in combination against pazopanib alone in female patients with relapsed ovarian cancer to determine whether the combination is more beneficial that pazopanib on it's own.
Advanced ovarian cancer is a high medical need indication. Cure is not available to these patients and treatment has palliative intent. A proportion of advanced stage ovarian cancer expresses substantial levels of Claudin 6 (CLDN6), a carcino-embryonic transmembrane protein, which is absent from normal adult human tissue. IMAB027 is a monoclonal antibody that binds to CLDN6. Preclinically IMAB027 was shown to inhibit tumor growth and to kill cancer cells by antibody-dependent cellular cytotoxicity and complement-dependent cytotoxicity. This trial is a first-in-human dose escalation and dose finding Phase 1 trial of IMAB027 in patients with recurrent advanced ovarian cancer to assess the safety and tolerability, the pharmacokinetics, the antitumoral activity and the immunogenicity of IMAB027.
The goal of this research study is to learn about diet and exercise habits, emotions, and social support in the lives of women with ovarian cancer.
This pilot Early Phase I clinical trial studies epacadostat before surgery in treating patients with newly diagnosed stage III-IV epithelial ovarian, fallopian tube, or primary peritoneal cancer. Epacadostat may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
The current study aims at answering the scientific question, whether exfoliated cells from STICs get transported into the uterine cavity via the fallopian tube, and whether it is possible to detect those cells in the lavage fluid from the uterine cavity and proximal fallopian tubes. To address this question, the investigators will study 20 lavage samples and their 20 corresponding STIC-positive tissue samples in women who opt for risk-reducing bilateral salpingo-oophorectomy (rrBSO) because of increased risk of high grade serous carcinoma of the pelvis (HGSC) (mostly carrying a BRCA mutation), without a history of tubal occlusion for sterilization. Women who opt to have the fallopian tubes removed but the ovaries preserved are eligible for the study too, as are women who opt for rrBSO plus hysterectomy.
This is a double-blind study in which approximately 99 study patients will be randomized in a 2:1 ratio to receive either AVOVA-1 or MC. Patients eligible for randomization and treatment will be those (1) who have undergone debulking surgery, (2) for whom a cell line has been established, (3) who have undergone leukapheresis from which sufficient PMBC were obtained, and (4) have an ECOG performance grade of 0 or 1 (Karnofsky score of 70-100%). The primary endpoint of this trial is death from any cause with the metric of OS from the date of randomization. PFS will be a secondary endpoint and will be calculated as the time from the date of randomization for treatment until subjective tumor progression or death. Progression will be subjectively defined by the treating physician, and is expected to be based on tumor marker levels (e.g. CA-125) and/or imaging. Secondarily, we will also define PFS and OS from the date of debulking surgery. Patients will be stratified into (1) no evidence of disease (NED) (no measurable or non-measurable disease per RECIST and normal CA-125 levels) or (2) non-NED (measurable or non-measurable disease per RECIST or elevated CA-125 levels).
This study is a Phase I / Dose Expansion open label clinical study in patients with platinum-resistant epithelial ovarian cancer. The Phase Ia part of the study will determine the dose of enadenotucirev to be recommended for further studies and will examine primarily the safety and tolerability but also the pharmacokinetics of administering enadenotucirev intraperitoneally. In Phase Ib, the safety and tolerability and the pharmacokinetics of administering enadenotucirev intravenously in combination with weekly paclitaxel will be determined. The Dose Expansion Phase will begin as an open label dose expansion of that regimen and aims to determine whether intravenous enadenotucirev in combination with weekly paclitaxel has a risk benefit profile that supports further investigation in the treatment of patients with platinum-resistant epithelial ovarian cancer.
This study is to determine the feasibility of postoperative platinum-based chemotherapy plus adjuvant and maintenance bevacizumab after neoadjuvant chemotherapy followed by interval surgery in patients with extensive stage IIIC or IV ovarian, tubal, and peritoneal cancer.
This phase I trial studies the side effects and best dose of nab-paclitaxel and bevacizumab in treating patients with stage IV melanoma that cannot be removed by surgery (unresectable), cancer of the cervix, endometrium, ovary, fallopian tube or peritoneal cavity. Drugs used in chemotherapy, such as nab-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. Bevacizumab may stop or slow tumor growth by blocking the growth of new blood vessels necessary for tumor growth. Giving nab paclitaxel and bevacizumab may kill more tumor cells than nab-paclitaxel alone.