View clinical trials related to Carcinoma, Ovarian Epithelial.
Filter by:Previous studies have suggested that immunotherapy combined with chemotherapy as neoadjuvant treatment for ovarian cancer may have a synergistic effect and a manageable safety profile. AK104 is a bispecific antibody targeting PD-1 and CTLA-4. Therefore, this study aimed to evaluate the efficacy and safety of AK104 combined with chemotherapy as the neoadjuvant treatment for advanced ovarian cancer.
The purpose of this study is to see if propranolol and etodolac along with mind-body resilience training/MBRT and music therapy help participants who are experiencing physiological stress before, during, and after primary debulking surgery/PDS or IDS and also if it's better than the standard-of-care approach (no intervention for reducing stress).
This study is a single-arm, open-label, exploratory clinical study, the main purpose is to evaluate the combination of envafolimab, lenvatinib VP-16 in the treatment of platinum-resistant recurrent epithelial ovarian cancer,primary fallopian tube cancer and primary peritoneal carcinoma.
This phase I trial studies the side effects of hyperthermic intraepithelial chemotherapy with cisplatin after surgery or cisplatin before surgery in treating patients with stage III or IV ovarian, fallopian tube or peritoneal cancer receiving chemotherapy before surgery. Hyperthermic intraepithelial chemotherapy involves the infusion of heated cytotoxic chemotherapy that circulates into the abdominal cavity at the time of surgery. Chemotherapy drugs, such as cisplatin, 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 hyperthermic intraepithelial chemotherapy with cisplatin after surgery or cisplatin before surgery may kill more tumor cells compared to usual care.
Prospective, monocentric study evaluating the presence of sarcopenia prior to neoadjuvant chemotherapy and during chemotherapy as part of optimised management.
The combination of paclitaxel and carboplatin is the standard first-line chemotherapy for ovarian cancer as recommended by the NCCN Guidelines for Epithelial Ovarian Cancer, and is conventionally given via intravenous route every three weeks. The addition of target therapy (bevacizumab) has shown to improve progression free survival but not overall survival. Several trials have also demonstrated a clinically significant survival advantage associated with intraperitoneal chemotherapy compared to intravenous chemotherapy, and the best outcomes are consistently seen for patients who have no residual disease. This study aims to compare triweekly chemotherapy with bevacizumab versus intraperitoneal chemotherapy in patients with advanced stage ovarian cancer.
In this study, mass spectrometry was used to analyze immune inflammation-related protein complexes, post-translational modified glycopeptide omics and tumor-related metabolomics in serum, respectively, in order to find potential metabolic small molecule biomarkers or marker profiles that can be used for early diagnosis of cancer recurrence.
The relationship between immune inflammation-related protein complexes inblood and recurrence or metastasis of ovarian cancer will be studied
Cytoreductive surgery (CRS) with the addition of hyperthermic intraperitoneal chemotherapy (HIPEC) is used in current clinical practice in selected patients with advanced ovarian cancer. Clinical evidence for the benefit of HIPEC in ovarian cancer comes from the pivotal phase 3 OVHIPEC trial. Worldwide, two established strategies exist for dosing of HIPEC protocols, which follow either a body surface area (BSA)-based or a concentration-based approach. Since both strategies result in different exposure to intra-peritoneal chemotherapy, we aim to compare the pharmacokinetics and safety of both strategies.
Study LCB-1801-001 is an open-label, Phase 1, dose escalation (Part A) and expansion (Part B), first-in-human clinical study of NI-1801 in subjects with advanced, metastatic, or recurrent solid malignancies expressing mesothelin (MSLN). The dose escalation part (Part A) of the study will evaluate the safety and tolerability of escalating doses of NI-1801, administered intravenously (IV) to determine the maximum tolerated dose (MTD) and non-tolerated toxic dose (NTD) of both the first dose and subsequent doses of NI-1801. The expansion part (Part B) will further evaluate the safety and efficacy of NI-1801 administered at or below the MTD in up to 20 subjects in order to determine the recommended Phase 2 dose (RP2D). Treatments will be administered in 28-day cycles for up to 6 months until confirmed disease progression, unacceptable toxicity, or subject/Investigator decision to withdraw. NI-1801 treatment can extend beyond 6 cycles for those patients who do not have disease progression.