79 Clinical Trials for Various Conditions
This phase I trial tests the safety, side effects, best dose of MUC1-activated T cells in treating patients with ovarian cancer that has come back after a period of improvement (relapsed) or that remains despite treatment (resistant). T cells are infection fighting blood cells that can kill tumor cells. The T cells given in this study will come from the patient and are made in a laboratory to recognize MUC1, a protein on the surface of tumor cells that plays a key role in tumor cell growth. These MUC1-activated T cells may help the body's immune system identify and kill MUC1 expressing ovarian tumor cells.
This phase I/II trial tests the safety, side effects and best dose of a combination therapy (niraparib and selenium) in treating patients with BRCA negative ovarian cancer that has come back (recurrent) and does not respond to platinum based therapy (platinum resistant). Selenium is a form of the trace element with potential antineoplastic activity which may help block the formation of growths that may become cancer. Niraparib is in a class of medications called poly (ADP-ribose) polymerase inhibitors. It works by killing cancer cells and helps maintain the response of certain types of ovarian, fallopian tube and peritoneal cancers. Giving selenium and niraparib may kill more cells in patients with ovarian cancer.
This trial will treat patients with platinum resistant ovarian, fallopian tube or primary peritoneal cancer as defined by a progression free interval within six months of completion of most recent platinum-based treatment with a combination of vismodegib and atezolizumab. Despite recent improvements in treatment of ovarian cancer with the introduction of PARP inhibitors, response rates to therapy in the platinum resistant setting remain dismal with response rates of only 10-20% reported for single agent cytotoxic therapies. Given the poor prognosis and limited treatment options for these patients, this population is considered appropriate for trials of novel therapeutic candidates.
This phase II trial tests whether pegylated SN-38 conjugate PLX038 (PLX038) works to shrink tumors in patients with ovarian, primary peritoneal, and fallopian tube cancers that has spread from where it first started (primary site) to other places in the body (metastatic). PLX038 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
This phase II clinical trial studies the effect of lenvatinib, pembrolizumab, and paclitaxel in treating patients with endometrial, epithelial ovarian, fallopian tube, or primary peritoneal cancer that has come back (recurrent). While all 3 study drugs are FDA approved, and 2-drug combinations have been studied, the 3- drug combination has not been studied yet. The investigators believe that the addition of pembrolizumab to weekly paclitaxel and lenvatinib (or weekly paclitaxel to pembrolizumab and lenvatinib) is highly effective and safe with manageable side effects in both recurrent endometrial and platinum resistant ovarian cancer. The purpose of this trial is to study how well lenvatinib, pembrolizumab, and weekly paclitaxel work together in women who have recurrent endometrial cancer and/or recurrent platinum resistant ovarian, fallopian tube, and primary peritoneal cancer, and what kind of side effects patients may experience.
This phase II trial investigates the effect of irinotecan liposome and bevacizumab in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that shows less response to platinum therapy (platinum resistant), has come back (recurrent), or does not respond to treatment (refractory). Irinotecan liposome may help block the formation of growths that may become cancer. Bevacizumab is a monoclonal antibody that may interfere with the ability of tumor cells to grow and spread. Giving irinotecan liposome and bevacizumab may kill more cancer cells.
This trial studies the side effects and best dose of AVB-S6-500 when given together with durvalumab in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that is resistant to platinum therapy or has come back. Immunotherapy with AVB-S6-500 and durvalumab, may induce changes in body's immune system and may interfere with the ability of tumor cells to grow and spread.
This is a Phase I/Ib dose escalation, dose expansion, study to evaluate the safety and identify the recommended dose of modified immune cells PRGN-3005 (autologous chimeric antigen receptor (CAR) T cells developed by Precigen, Inc.) in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that has spread to other places in the body, that has come back and is resistant to platinum chemotherapy. Autologous CAR T cells are modified immune cells that have been engineered in the laboratory to specifically target a protein found on tumor cells and kill them.
This phase I trial studies the best dose and side effects of NY-ESO-1 T cell receptor (TCR) engineered T cells and how well they work with NY-ESO-1 TCR engineered hematopoietic stem cells (HSCs) after melphalan conditioning regimen in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that has come back (recurrent) or does not respond to treatment (refractory). The melphalan conditioning chemotherapy makes room in the patient's bone marrow for new blood cells and blood-forming cells (stem cells) to grow. Giving NY-ESO-1 TCR T cells and stem cells after the conditioning chemotherapy is intended to replace the immune system with new immune cells that have been redirected to attack and kill the cancer cells and thereby improve immune system function against cancer. Giving NY-ESO-1 TCR engineered T cells and HSCs after melphalan may work better in treating patients with ovarian, fallopian tube, or primary peritoneal cancer.
This randomized phase I/IIb trial studies side effects and best dose of atezolizumab when given together with guadecitabine and CDX-1401 vaccine and to see how well they work in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that has come back. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. CDX-1401 vaccine may enhance the expression of the genes encoding tumor antigens on the surface of tumor cells and enhance the activity of tumor-killing T cells against those tumor cells. Vaccines made from monoclonal antibodies combined with tumor cells may help the body build an effective immune response to kill tumor cells. Giving atezolizumab, guadecitabine, and CDX-1401 vaccine may work better than CDX-1401 alone in treating patients with ovarian, fallopian tube, or primary peritoneal cancer.
This phase II trial studies how well modified vaccinia virus ankara vaccine expressing p53 (p53MVA) and pembrolizumab work in treating patients with ovarian, primary peritoneal, or fallopian tube cancer that has come back (recurrent). Vaccines made from a gene-modified virus may help the body build an effective immune response to kill tumor cells. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving p53MVA and pembrolizumab together may work better in treating patients with ovarian, primary peritoneal, or fallopian tube cancer.
This phase II trial studies how well durvalumab and tremelimumab work in treating participants with ovarian, primary peritoneal, or fallopian tube cancer that has come back or does not respond to treatment. Immunotherapy with monoclonal antibodies, such as durvalumab and tremelimumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. It is not yet known whether give durvalumab and tremelimumab in combination or sequential administration works better in treating participants with ovarian, primary peritoneal, or fallopian tube cancer.
Study CP-MGD019-03 is an open-label study of lorigerlimab in participants with platinum-resistant ovarian cancer (PROC) or clear cell gynecologic cancer (CCGC). Approximately 60 participants will be enrolled. The study will assess the efficacy and safety of lorigerlimab in participants with PROC or CCGC. Participants will receive lorigerlimab by intravenous (IV) infusion on Day 1 of every 21-day treatment cycle. Treatment cycles will continue until progression of cancer, unacceptable side effects, withdrawal of consent by the participant, or the study ends. Participants will be monitored closely for side effects by physical exam and routine laboratory tests every cycle. Tumor status will be checked approximately every 9 weeks for the first year, then every 12 weeks for the duration of treatment. Participants will have a safety followup performed within 30 days after treatment discontinuation. Participants who discontinue study treatment for reasons other than progression of cancer, will continue CA-125 and tumor assessments every 12 weeks. Participants who discontinue study treatment for progression of cancer will enter the 6-month survival follow up portion of the study.
SL03-OHD-105 is an open-label, multicenter, phase 1b trial designed to evaluate SL-172154 administered in combination with pegylated liposomal doxorubicin (PLD) or mirvetuximab soravtansine (MIRV) in patients with platinum resistant ovarian cancer. Approximately 102 patients will be enrolled in this study in two phases: dose escalation and dose expansion.
This phase II trial compares copanlisib and olaparib to standard of care chemotherapy in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that did not respond to previous platinum-based chemotherapy (platinum resistant) and that has come back (recurrent). Copanlisib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Olaparib is a PARP inhibitor. PARP is a protein that helps repair damaged deoxyribonucleic acid (DNA). Blocking PARP may prevent tumor cells from repairing their damaged DNA, causing them to die. PARP inhibitors are a type of targeted therapy. Chemotherapy drugs 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 copanlisib and olaparib may extend the time that the cancer does not progress compared to standard of care chemotherapy in patients with recurrent platinum resistant ovarian, fallopian tube, or primary peritoneal cancer.
This is an open-label, phase 1/2, dose-escalation, multicenter and multinational trial evaluating the safety of oncolytic adenovirus TILT-123 in combination with Pembrolizumab, or Pembrolizumab and Pegylated Liposomal Doxorubicin in patients with platinum resistant or refractory ovarian cancer.
This phase I trial identifies the best dose, possible benefits and/or side effects of gemcitabine in combination with elimusertib (BAY 1895344) in treating patients with pancreatic, ovarian, and other solid tumors that have spread to other places in the body (advanced). Gemcitabine is a chemotherapy drug that blocks the cell from making DNA and may kill tumor cells. elimusertib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving gemcitabine and elimusertib in combination may shrink or stabilize cancer.
ATRC-101-A01 is a Phase 1b, open-label dose escalation and expansion trial of ATRC-101, an engineered fully human immunoglobulin G, subclass 1 (IgG1) antibody derived from a naturally occurring human antibody. The safety, tolerability, PK, and biological activity of ATRC-101 will be characterized when administered every two weeks (Q2W) or every 3 weeks (Q3W) as a monotherapy or in combination with other anticancer agents.
This phase II trial studies the side effects of ONC201 and paclitaxel and how well they work in treating patients with platinum-resistant epithelial ovarian, fallopian tube, or primary peritoneal cancer that has come back (recurrent), or that does not respond to treatment (refractory). ONC201 is the first in its class of drugs that antagonize some specific cell receptors on cancer cells, leading to their destruction. Drugs used in chemotherapy, such as paclitaxel, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving ONC201 and paclitaxel may work better in treating patients with platinum-resistant epithelial ovarian, fallopian tube, or primary peritoneal cancer compared to paclitaxel alone.
This phase II trial studies the side effects of bevacizumab and anetumab ravtansine or paclitaxel in treating patients with ovarian, fallopian tube, or primary peritoneal cancer that does not respond to treatment (refractory). Bevacizumab is a monoclonal antibody that may interfere with the ability of tumor cells to grow and spread. Anetumab ravtansine is a drug that targets a protein in the body called mesothelin, which can be found in some ovarian, pancreatic and other tumors. Chemotherapy drugs, such as 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. It is not yet known whether giving bevacizumab and anetumab ravtansine or paclitaxel may work better in treating patients with ovarian, fallopian tube, or primary peritoneal cancer.
This phase Ib trial studies the side effects and best dose of nivolumab with or without ipilimumab in treating patients with female reproductive cancer that has come back (recurrent) or is high grade and has spread extensively throughout the peritoneal cavity (metastatic). Immunotherapy with monoclonal antibodies, such as nivolumab and ipilimumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread.
This phase I trial studies the side effects and best dose of olaparib and onalespib when given together in treating patients with solid tumors that have spread to other places in the body (metastatic) or cannot be removed by surgery (unresectable) or ovarian, fallopian tube, primary peritoneal, or triple-negative breast cancer that has come back (recurrent). Olaparib and onalespib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
This phase I/IIa trial studies the side effects and best dose of gene-modified T cells when given with or without decitabine, and to see how well they work in treating patients with malignancies expressing cancer-testis antigens 1 (NY-ESO-1) gene that have spread to other places in the body (advanced). A T cell is a type of immune cell that can recognize and kill abnormal cells of the body. Placing a modified gene for NY-ESO-1 into the patients' T cells in the laboratory and then giving them back to the patient may help the body build an immune response to kill tumor cells that express NY-ESO-1. Drugs used in chemotherapy, such as decitabine, 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. It is not yet known whether giving gene-modified T cells with or without decitabine works better in treating patients with malignancies expressing NY-ESO-1.
This randomized phase II trial studies how well oncolytic measles virus encoding thyroidal sodium iodide symporter (MV-NIS) compared to investigator's choice chemotherapy works in treating patients with ovarian, fallopian, or peritoneal cancer. Measles virus, which has been changed in a certain way, may be able to kill tumor cells without damaging normal cells.
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.
RATIONALE: PEG-interferon alfa-2b may interfere with the growth of cancer cells. PURPOSE: This randomized phase I/II trial is studying the side effects and best dose of PEG-interferon alfa-2b and to see how well it works in treating patients with ovarian epithelial, peritoneal, or fallopian tube cancer that is resistant to platinum-based chemotherapy.
This study will evaluate the safety and efficacy of R-DXd therapy in participants with ovarian, peritoneal, or fallopian tube cancer
This is a multi-center, open-label phase 1 dose escalation trial that uses a modified 3+3 design to identify a recommended phase 2 dose (RP2D) of AB-1015 cell product. Backfill cohorts will enroll additional subjects at doses deemed to be safe for a total enrollment of up to 12 subjects per each backfill cohort on the protocol.
This is a study to test the safety and efficacy with the combination of a next generation anti-CTLA-4 antibody, ONC-392, and anti-PD-1 antibody, pembrolizumab, in platinum resistant ovarian cancer patients.
The OnPrime study is a multi-center, randomized open-label phase 3 study evaluating the safety and efficacy of Olvi-Vec followed by platinum-doublet chemotherapy and bevacizumab compared to the Active Comparator Arm with Physician's Choice of chemotherapy and bevacizumab in women diagnosed with platinum-resistant/refractory ovarian cancer (includes fallopian tube cancer and primary peritoneal cancer). This Phase III trial builds on the efficacy and safety data reported in the previous Phase II VIRO-15 trial with promising objective response rate and progression-free survival observed in heavily pre-treated patients with platinum-resistant/refractory ovarian cancer. The phase II results also showed that the intra-peritoneal route of delivery was efficient in generating tumor cell killing and immune activation, and led to clinical reversal of platinum-resistance or refractoriness in this difficult-to-treat patient population.