View clinical trials related to Mesothelioma.
Filter by:This study will provide continuing availability to tazemetostat for people that have previously completed participation in a tazemetostat study, either with monotherapy (single drug treatment) or combination therapy. The aim of the study will be to assess the long-term safety of tezemetostat.
This is a multicenter, randomized, 1:1, double blinded phase II trial. Patients with unresectable malignant pleural mesothelioma (MPM) will be randomized between arm A: nintedanib and arm B:placebo
This is a Phase 2, multicenter, open-label, 2-part, single-arm, 2-stage study of tazemetostat 800 mg two times a day (BID) administered orally. Screening of subjects to determine eligibility for the study will be performed within 21 days of the first planned dose of tazemetostat. In Part 1: planned to enroll 12 subjects with relapsed or refractory malignant mesothelioma regardless of BAP1 status will be treated and undergo pharmacokinetics (PK) blood sample collection after a single tazemetostat 800 mg. Part 2 plans to include 55 subjects with BAP1-deficient relapsed or refractory malignant mesothelioma. Treatment with tazemetostat will continue until disease progression, unacceptable toxicity or withdrawal of consent, or termination of the study. Response assessment will be evaluated after 6 weeks of treatment and then every 12 weeks thereafter while on study.
Background: Mithramycin is a new cancer drug. In another study, people with chest cancer took the drug 6 hours a day for 7 straight days. Many of them had liver damage as a side effect. It was discovered that only people with certain genes got this side effect. Researchers want to test mithramycin in people who do not have those certain genes. Objectives: To find the highest safe dose of mithramycin that can be given to people with chest cancer who have certain genes over 24 hours instead of spread out over a longer period of time. To see if mithramycin given as a 24-hour infusion shrinks tumors. Eligibility: People ages 18 and older who have chest cancer that is not shrinking with known therapies, and whose genes will limit the chance of liver damage from mithramycin Design: Participants will be screened with: - Medical history - Physical exam - Blood and urine tests - Lung and heart function tests - X-rays or scans of their tumor - Liver ultrasound - Tumor biopsy - Participants will be admitted to the hospital overnight. A small plastic tube (catheter) will be inserted in the arm or chest. They will get mithramycin through the catheter over about 24 hours. - If they do not have bad side effects or their cancer does not worsen, they can repeat the treatment every 14 days. - Participants will have multiple visits for each treatment cycle. These include repeats of certain screening tests. - After stopping treatment, participants will have weekly visits until they recover from any side effects.
Primary Objective To determine the maximum tolerated dose (MTD) of intrathoracic administration of pemetrexed when given in conjunction with cisplatin in patients with resectable malignant pleural mesothelioma MPM. Secondary Objectives To determine the toxicity and grades associated with cytoreductive surgery and Hyperthermic Intraoperative Chemotherapy HIOC with cisplatin and pemetrexed in patients with resectable MPM. To assess overall survival and progression-free survival after PD or EPP and HIOC with cisplatin and pemetrexed for MPM Correlative Objectives To characterize the pharmacokinetics and pharmacodynamics of pemetrexed when administered as a hyperthermic intrathoracic lavage after PD or EPP To determine whether the degree of thymidylate synthase and ERCC1 gene expression in MPM tissue correlates with clinical response to pemetrexed.
Peritoneal mesothelioma is a rare disease representing one third of all mesothelioma and nothing is known about molecular characteristics of this disease. As main cancers, genetic heterogeneity is probable. This genomic profiling associates Comparative Genomic Hybridization (CGH) array, BAP1 sequencing and gene expression in order to discover a biomarker that could be used in the treatment of this rare disease. Corresponding histopathological and immunohistochemical report as all clinical data are available. All data with be merged to underline a few genes of interest on which we will focus our next investigations. Depending of our preliminary results, BAP1 mutations are expected, as it was also described in pleural mesothelioma. Mutations in oncogenic drivers that could be targeted by specific therapy will be on particular interest in management of this rare disease with bad prognosis.
Despite advances in the management of and changes in clinical practice, little is known about the epidemiology, patterns of care and outcomes of rare peritoneal surface malignancies patients in France. In order to better understand the characteristics of rare peritoneal surface malignancies and to evaluate treatment strategies, the RENAPE registry aims at the collection of data from patients presenting with a rare peritoneal surface malignancy in France. Data will be entered prospectively in a specifically designed and secured web database. All RENAPE's centres and physicians are invited to register patients with a rare peritoneal surface malignancy diagnosis and to participate to the registry. Data will be evaluated within regular time frames, focusing on types of rare peritoneal surface malignancies, treatment modalities and patient outcomes (e.g. survival, recurrence), thereby contributing to the better understanding of these rare cancers.
Background: LMB-100 is a man-made protein. It is attracted to the mesothelin protein. This is found in many tumors, including mesothelioma. But it is found in only a very small number of normal tissues. After binding to mesothelin on tumors, LMB-100 attacks and kills cancer cells. Researchers want to test LMB-100 in people with advanced mesothelioma. Objective: To find a safe dose and anti-tumor activity of LMB-100 for people with advanced mesothelioma. Eligibility: Adults ages 18 and older with: Advanced pleural or peritoneal mesothelioma that has not responded to platinum-based therapy Adequate organ function Design: Participants will be screened with: Samples of tumor tissue or tumor fluid. These can be new or from a previous procedure. Medical history Physical exam Blood, urine, and heart tests Chest x-rays Computed tomography (CT) or magnetic resonance imaging (MRI) scans Fluorodeoxyglucose (FDG)-positron emission tomography (PET) scans Participants will get LMB-100 on days 1, 3, and 5 of each 21-day cycle. It will be given through an intravenous (IV) catheter, a tube inserted in an arm vein. They will get standard medicines before each infusion to help prevent side effects. Each infusion lasts about 30 minutes. They will be monitored for up to 2 hours after. During each cycle, participants will repeat the screening tests. Participants will get the study drug for up to 4 cycles or until their disease worsens or they have intolerable side effects. About 4-6 weeks after their last infusion, participants will have a follow-up visit. They will repeat the study tests. Participants will have follow-up scans every 6 weeks until their disease gets worse. Participants will be called about once a year to see how they are doing.
Pembrolizumab is a new type of drug for mesothelioma (immunotherapy). Laboratory tests show that this drug works by helping improve the body's immune response to help fight cancer. Pembrolizumab may help the immune system to recognize cancer cells and slow down the growth and/or spreading of cancer.
This is a prospective study evaluating the effect of expression of CD74 and VEGF on outcome of treatment in patients with malignant pleural mesothelioma receiving Pemetrexed/Platinum protocol. The paraffin blocks of the patients will be tested for CD74 and VEGF before starting treatment using IHC and the results will be correlated with the outcome of treatment during evaluation.