View clinical trials related to Mesothelioma.
Filter by:This phase I trial identifies the best dose, possible benefits and/or side effects of BAY 1895344 in combination with chemotherapy in treating patients with solid tumors or urothelial cancer that has spread to other places in the body (advanced). BAY 1895344 may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Cisplatin and gemcitabine are chemotherapy drugs that stop the growth of tumor cells by killing the cells. Combining BAY 1895344 with chemotherapy treatment (cisplatin, or cisplatin and gemcitabine) may be effective for the treatment of advanced solid tumors, including urothelial cancer.
This is a single arm, open-label, dose escalation clinical study to evaluate the safety and tolerability of autologous mesothelin (MSLN)-targeted chimeric antigen receptor (MSLN-CAR) T cells secreting PD-1 nanobodies (αPD1-MSLN-CAR T cells) in patients with solid tumors.
This research study, is trying to determine the highest dose of magnesium that can be given safely to people with malignant mesothelioma receiving intraoperative chemotherapy with cisplatin who are at risk for acute kidney injury. The name(s) of the study drug involved in this study is - magnesium sulfate.
A significant number of patients with malignant pleural mesothelioma (MPM) and non-small cell lung cancer (NSCLC) are not cured with available treatments and will eventually relapse. After relapse treatment options are limited. Preclinical in vitro studies have demonstrated a synergism of immunotherapy with PD(L)1-targeting monoclonal antibodies and gemcitabine and ongoing clinical studies showed encouraging results. The main objective of this trial is to determine the efficacy of chemotherapy (gemcitabine) combined with immunotherapy (atezolizumab) in patients with progressive NSCLC and MPM. The trial treatments will be continued for max. 2 years or until discontinuation criteria are met. The follow-up phase will last up to 5 years from treatment start.
Malignant mesothelioma is an invasive neoplasm that arises from mesothelium that lines several organs. Common primary sites of origin of mesotheliomas are the pleura (malignant pleural mesothelioma: 85%) and peritoneum (malignant peritoneal mesothelioma 15%), and rarely the pericardium and tunica vaginalis. The standard of care recommended for malignant pleural mesotheliomas (MPM) is palliative chemotherapy based on a doublet of platinum salt and an anti-folate. The median survival of patients with pleural MPM is around 8 months with best supportive care only, 12 to 19 months when systemic chemotherapy is used with or without anti-angiogenic agents or targeted therapy. There is an unmet need for innovative approaches in pleural mesotheliomas. Malignant peritoneal mesothelioma is an aggressive neoplasm that arises from the lining mesothelial cells of the peritoneum and spreads extensively within the confines of the abdominal cavity. Cytoreductive surgery (CRS) followed by hyperthermic intraoperative peritoneal perfusion with chemotherapy (HIPEC) is the standard curative approach when it is possible, with respect to peritoneal carcinomatosis extend. When the cytoreductive surgery is impossible, the common strategy is to prescribe systemic chemotherapy, with the objective of downsizing tumor lesions for potential subsequent CRS. The standard strategy based on cisplatin - pemetrexed combination regimen has been extrapolated from pleural mesothelioma management principles. Genomic landscape of mesotheliomas is now well described. Pleural and peritoneal malignant mesotheliomas harbor closed genomic instability. Strategies based on maintenance-based treatments with Poly (ADP-ribose) polymerase (PARP) inhibitors, especially olaparib, niraparib and talazoparib, have been shown effective in ovarian cancer patients, thereby leading to their approvals. The benefit has been mainly observed in patients with homologous recombination deficiencies (HRD), but also in all-comers patients in a lesser extent. It is thought that HRD induces addiction of cancer cells to PARP, thereby leading to cell death in the presence of PARP inhibitors. As a consequence, given the prevalence of HRD, through BAP-1 mainly, in mesotheliomas, maintenance treatment with PARP-inhibitor in malignant mesothelioma patients without any progressive disease after 4 to 6 cycles of platinum-based chemotherapy may be associated with increased progression free survival, as it was shown in ovarian cancer patients. TALAMESO aims to evaluate the efficacy of talazoparib maintenance treatment given for maximum 2 years following 4 to 6 cycles of platinum-based first line chemotherapy in terms of proportion of patients progression free 6 months after starting the maintenance, and progression-free survival, in patients with advanced malignant pleural (cohort A) or peritoneal (cohorts B1 and B2) mesotheliomas. Cohorts B1 and B2 are meant to confirm that talazoparib can increase progression free survival in both patient populations with non-resected or incompletely resected disease (cohort B1) or with completely resected disease (cohort B2). TALAMESO is an open-label phase II trial with 3 independent cohorts (Fleming's single-stage) including patients with advanced malignant pleural (cohort A) or peritoneal (cohort B1 and B2) mesotheliomas without any sign of disease progression after 4 to 6 cycles of platinum-based chemotherapy (including minimum 1 cycle of pemetrexed).
This research study is designed to develop and test a new supportive care program to help individuals with lung cancer improve their quality of life after cancer treatment is over.
Background: A germline mutation is a change to a person s genes that is carried through their DNA. These mutations can be passed on from parents to their offspring. Germline mutations in a gene called BAP1 are linked to the development of mesothelioma and other cancers. Researchers want to follow people with these mutations to learn more. Objective: To see if researchers can improve how people who have or are suspected to have a BAP1 mutation are monitored over time. Eligibility: People age 30 and older who are suspected to have a BAP1 germline mutation. Design: Participants will be screened with a personal and family medical history. Their medical records may be reviewed. They will give a blood or saliva sample to test for a BAP1 mutation. They will get genetic counseling. To take part in this study, participants will enroll on 2 to 3 other protocols. Participants will have a physical exam. They may have a tumor biopsy. They will give blood and urine samples. They will have skin and eye exams. Some participants will have video-assisted thoracoscopy to examine the chest and lungs and diagnose suspicious areas. For this, a small camera is inserted into the chest through a small incision. Some participants will have laparoscopy to examine the organs inside the abdomen. For this, a small camera is inserted into the abdomen through a small incision. Participants will have imaging scans of the chest, abdomen, and pelvis. They may have brain scans. Participants will visit the NIH once a year for follow-up exams. Participation lasts indefinitely.
This is a multi-center, open-label, dose escalation study to determine the safety, tolerability, pharmacokinetics, pharmacodynamics, and maximum tolerated dose (MTD) of QBS10072S in patients with advanced or metastatic cancers with high LAT1 expression. The MTD of QBS10072S will be confirmed in patients with relapsed or refractory grade 4 astrocytoma.
This trial evaluates if cryoablation will stimulate a local immune response by cluster of differentiation 8 positive (CD8+) cells which are not present in ablation naive regions of the tumors in patients with mesothelioma. Cryoablation uses extreme cold to damage or destroy tumor lesions. Mesothelioma is a rare cancer that grows and spreads quickly, and has low survival rates. The information learned from this study may provide evidence as to whether there is a measurable, local immune response from cryoablation. Studying samples of mesothelioma tissue in the laboratory from patients who have undergone biopsy may help doctors learn more about the effects of cryoablation on cells. It may also help doctors understand how well patients respond to treatment.
Pilot study of the feasibility of an innovative multimodal treatment combining intrapleural photodynamic therapy with videothoracoscopy followed by adjuvant immunotherapy with anti-PD-1 Nivolumab antibodies in patients with malignant pleural mesothelioma