View clinical trials related to Melanoma.
Filter by:Immunotherapy with agents stimulating the immune system to act against cancer are now a new standard of care in various cancers as lung cancer and melanoma, but also bladder cancer, kidney cancer and head & neck cancer. However, even though a subset of patients derives long-term benefit from these agents, depending of cancer type still at least half of patients do not respond to these new drugs. Our understanding of possible factors predicting whether a patient might actually benefit from immunotherapy is poor. Volatile organic compounds (VOCs) are gases exhaled with a person's breath, which are released into the lung from blood and bacteria and therefore can give information about infections as well as inflammation and possibly cancer cells in a person's body. Breath analysis of these VOCs with special devices called electronic noses (eNose) generate a specific electric signals patterns called breathprints. There is early evidence that specific breathprints can actually help to select patients who will be likely to benefit from immunotherapy. This study is being undertaken in an effort to evaluate breathprint analysis as a potential predicting factor for benefit from immunotherapy, so that treatment selection can further be improved. This study is designed to help us identify the role of breathprint analysis to better select patients for immunotherapy.
The purpose of this study is to test the effects of anti-PI-1 inhibitor (TSR-042) or anti-PD-1/anti-TIM-3 combination (TSR-042 / TSR-022) in patients with operable melanoma.
The goal of the project is to develop and validate the BioForte technology. Its main functionality should be to in silico determine candidates for novel microbiome-based therapeutics and diagnostics. Key challenge to be solved using the technology is to detect the differences in gut microbiome between oncology patients who respond to immunotherapies and the ones who do not respond to this treatment. This technology employs machine learning methods to replace the laboratory procedure for finding valuable genomic features. Such features can be crucial to identify differences between the two populations (e.g. responders vs non-responders) to target specific strains. The samples and data collected in this clinical study will be used for clinical validation of BioForte technology. For all patients treated with immunotherapy, stool collection will be performed per patient (one stool collection before setting up immunotherapy using anti-PD1 / anti-PDL1 and / or anti CTLA4 antibodies). Samples will be sequenced by long-read sequencing technology. In parallel, we will also collect samples of peripheral blood samples (PBMC) and biopsy (FFPE).
DONIMI is a phase 1b trial testing the combination of domatinostat + nivolumab or nivolumab monotherapy in IFN-gamma signature high patients and of domatinostat + nivolumab or domatinostat + nivolumab + ipilimumab in IFN-gamma signature low patients with de-novo or recurrent macroscopic stage III cutaneous or unknown primary melanoma. The trial will include 45 stage III cutaneous or unknown primary melanoma patients with RECIST 1.1 measurable de-novo or recurrent disease (short axis lymph node metastasis ≥1.5cm). NanoString IFN-gamma signature high patients will be randomized to be treated pre-surgically for 6 weeks with nivolumab (arm A; 10 patients) or domatinostat + nivolumab (arm B; 10 patients). IFN-gamma signature low patients will be randomized to be treated pre-surgically for 6 weeks with domatinostat + nivolumab (arm C; 10 patients) or domatinostat + nivolumab + ipilimumab (arm D; 15 patients). Patients will be stratified according to center. Post-surgery (starting at week 12), the patients will start with adjuvant nivolumab or pembrolizumab for 52 weeks according to institute's standard. BRAF V600E/K mutation positive patients with no pathologic response after neoadjuvant therapy may also receive adjuvant BRAF + MEK inhibition if commercially available and according to the patient's and the treating physician's decision. Follow-up after the adjuvant therapy will be for 2 years, according to the institutes' standard. Toxicity and pathologic response rates will be descriptive. In case of 2/5 or 4/10 patients not undergoing their lymph node dissection at week 6 +/- 1 week due to treatment related toxicity, this arm will be declared unfeasible.
This research study involves studying a device as a possible treatment for metastatic melanoma in the brain. The purpose of this study is to obtain information on the safety and effectiveness of the study device, NovoTTF-200A, in melanoma participants with brain metastases when it is combined with Pembrolizumab. The name of the study device involved in this study is: -- NovoTTF-200A The name of the drug used in this study is: -- Pembrolizumab
Currently, there is no widely used adjuvant treatment available to improve survival after surgical excision of a primary melanoma. In a previous study, loco-regional and systemic immune stimulations, as well as favourable clinical outcomes in terms of sentinel lymph node (SLN) tumor status and recurrence-free survival (RFS) in patients with clinical stage I-II melanoma who received a low dose of toll-like receptor 9 (TLR-9) CPG7909 (CpG-B ODN) intradermally at the excision site of the primary tumor prior to SLN biopsy (SNB) were described. In this phase II trial the investigators had investigated the clinical activity of a next-generation CpG-ODN, IMO-2125, and it's ability to induce loco-regional and systemic immune stimulation in pT3-4 cN0M0 melanoma patients who are scheduled to undergo a combined re-excision and SNB is
In this study, patients with metastatic melanoma who have at least one injectable lesion that has been refractory to PD-1 therapy (n=30 patients) will be enrolled. Cohort 1 will include 15 patients who progressed within 3 months (primary resistance) of starting PD-1 therapy and cohort 2 will be patients who progressed after at least 3 months of PD-1 therapy. Patients will receive up to 7 injections of PVSRIPO intra-lesionally in combination with Nivolumab. Nivolumab will be administered according to the FDA-approved dosing schedule of 480 mg intravenously every 4 weeks, beginning ~10 days after the first PVSRIPO infusion and will continue for 4 cycles. Nivolumab may be continued up to 2 years per standard of care after the completion of the PVSRIPO injections.
This study aims to provide an initial assessment of the potential impact DERM could have on the number of onward referrals for a face to face dermatologist review and/or biopsy from a teledermatology-based service, and to improve the understanding of the patient pathways that exist.
This study aims to evaluate safety and effect of combining an oncolytic adenovirus (delolimogene mupadenorepvec; LOAd703) with atezolizumab in patients with melanoma. LOAd703 will be administered intratumorally for up to 12 injections while atezolizumab will be administered intravenously for the duration of the active study visits (up to 57 weeks). The patients are then monitored for survival for maximum study participation of 48 months. The treatments will be given every 3 weeks. The patients will then be monitored for toxicity, PK, ADA, immune responses, virus shedding, tumor response by RECIST 1.1 and survival.
This phase I trial studies the side effects and best dose of modified immune cells (IL13Ralpha2 CAR T cells) after a chemotherapy conditioning regimen for the treatment of patients with stage IIIC or IV melanoma or solid tumors that have spread to other places in the body (metastatic). The study agent is called IL13Ralpha2 CAR T cells. T cells are a special type of white blood cell (immune cells) that have the ability to kill tumor cells. The T cells are obtained from the patient's own blood, grown in a laboratory, and modified by adding the IL13Ralpha2 CAR gene. The IL13Ralpha2 CAR gene is inserted into T cells with a virus called a lentivirus. The lentivirus allows cells to make the IL13Ralpha2 CAR protein. This CAR has been designed to bind to a protein on the surface of tumor cells called IL13Ralpha2. This study is being done to determine the dose at which the gene-modified immune cells are safe, how long the cells stay in the body, and if the cells are able to attack the cancer.