View clinical trials related to Melanoma.
Filter by:The purpose of this study is to see if BMS-986205 combined with nivolumab, compared to nivolumab by itself, is more effective in treating Melanoma that has spread or is unable to be removed by surgery, and has not previously been treated
This study compares the care pathway of melanoma patients treated by immunotherapy in two ambulatory care structures. The aim is to measure if a care structure specialized in immuno-oncology could rationalize the care of patients. This protocol will be based on two different follow-up during the treatment period: - dedicated and coordinated e-follow-up (IUCT-O in Toulouse) - standard follow-up (University Hospital Center in Bordeaux) Patients will be followed from the first cycle of immunotherapy until 3 months after the initiation treatment.
The ASICA study is looking at how the UK National Health Service (NHS) might use technology in the future to more effectively support people who have been treated for melanoma.
To identify and describe long-term quality of life (QOL) issues in patients with metastatic melanoma treated with checkpoint inhibitors who achieved cancer control for a minimum of 12 months and remain on maintenance checkpoint inhibitor therapy.
This phase Ib/II trial studies the best dose of glembatumumab vedotin when giving together with nivolumab and ipilimumab in treating patients with solid tumor that has spread to other places in the body and cannot be removed by surgery. Monoclonal antibodies, such as glembatumumab vedotin, nivolumab, and ipilimumab, may interfere with the ability of tumor cells to grow and spread.
Nivolumab obtained European Marketing authorization in June 2015. Before this date, a Temporary Authorization for Use (ATU) Program in France for nivolumab was set up between September 2014 and August 2015. This program enrolled approximately 600 melanoma patients (unresectable or metastatic). It appears relevant to conduct a study on patients treated during the ATU to assess thoroughly patient characteristics, efficacy, safety, and patterns of use of nivolumab in real-life conditions.
This phase Ib/II trial studies how well dendritic cell therapy after cryosurgery in combination with pembrolizumab works in treating patients with stage III-IV melanoma that cannot be removed by surgery. Vaccines made from a person's white blood cells mixed with tumor proteins may help the body build an effective immune response to kill tumor cells. Cryosurgery, also known as cryoablation or cryotherapy, kills tumor cells by freezing them. Monoclonal antibodies, such as pembrolizumab, may block tumor growth in different ways by targeting certain cells. Giving dendritic cell therapy after cryosurgery in combination with pembrolizumab may work better in treating patients with melanoma.
It has been well established that malignant tumors tend to have low levels of oxygen and that tumors with very low levels of oxygen are more resistant to radiotherapy and other treatments, such as chemotherapy and immunotherapy. Previous attempts to improve response to therapy by increasing the oxygen level of tissues have had disappointing results and collectively have not led to changing clinical practice. Without a method to measure oxygen levels in tumors or the ability to monitor over time whether tumors are responding to methods to increase oxygen during therapy, clinician's reluctance to use oxygen therapy in usual practice is not surprising. The hypothesis underlying this research is that repeated measurements of tissue oxygen levels can be used to optimize cancer therapy, including combined therapy, and to minimize normal tissue side effects or complications. Because studies have found that tumors vary both in their initial levels of oxygen and exhibit changing patterns during growth and treatment, we propose to monitor oxygen levels in tumors and their responsiveness to hyperoxygenation procedures. Such knowledge about oxygen levels in tumor tissues and their responsiveness to hyper-oxygenation could potentially be used to select subjects for particular types of treatment, or otherwise to adjust routine care for patients known to have hypoxic but unresponsive tumors in order to improve their outcomes. The overall objectives of this study are to establish the clinical feasibility and efficacy of using in vivo electron paramagnetic resonance (EPR) oximetry—a technique related to magnetic resonance imaging (MRI)—to obtain direct and repeated measurements of clinically useful information about tumor tissue oxygenation in specific groups of subjects with the same types of tumors, and to establish the clinical feasibility and efficacy of using inhalation of enriched oxygen to gain additional clinically useful information about responsiveness of tumors to hyper-oxygenation. Two devices are used: a paramagnetic charcoal suspension (Carlo Erba India ink) and in vivo EPR oximetry to assess oxygen levels. The ink is injected and becomes permanent in the tissue at the site of injection unless removed; thereafter, the in vivo oximetry measurements are noninvasive and can be repeated indefinitely.
Primary mucosal melanomas (MPM) are rarer than cutaneous melanomas, but also more severe. They are usually refractory to conventional approaches, regularly excluded from major therapeutic programs and not sensitive to new targeted therapies orphans. " The identification of therapeutic targets and accessibility to existing, developing or future targeted therapies improves the survival of patients with MPM. The principal goal is to describe, using a large panel of genes, the prevalence of major mutations in a cohort of MPMs based on the population of a French region.
This is a Phase 1, single-dose, open-label, dose-escalation study. The study will be conducted in three parts (i.e. regimens) in an outpatient setting as follows: - Regimen A: FATE-NK100 as a monotherapy in subjects with advanced solid tumor malignancies. - Regimen B: FATE-NK100 in combination with trastuzumab in subjects with human epidermal growth factor receptor 2 positive (HER2+) advanced breast cancer, HER2+ advanced gastric cancer or other advanced HER2+ solid tumors. - Regimen C: FATE-NK100 in combination with cetuximab in subjects with advanced colorectal cancer (CRC) or head and neck squamous cell cancer (HNSCC), or other epidermal growth factor receptor 1 positive (EGFR1+) advanced solid tumors.