View clinical trials related to Melanoma.
Filter by:TransCon IL-2 β/γ is an investigational drug being developed for treatment of locally advanced or metastatic solid tumors. This is a first-in-human, open-label, Phase 1/2, dose escalation and dose expansion study of TransCon IL-2 β/γ as monotherapy or in combination therapy in adult participants with advanced or metastatic solid tumors. Given the unique PK profile enabled by the TransCon technology, TransCon IL-2 β/γ presents the opportunity to enhance the therapeutic index of current IL-2 therapy.
To generate meaningful data regarding ctDNA that would infer risk of recurrence in stage III melanoma patients.
Immunotherapy (IO), such as treatment with anti-PD-1, PD-L1, or CTLA-4 inhibitors, is a rapidly expanding treatment for multiple metastatic cancers with improved survival for certain cancers. However, the optimal duration of immunotherapies is currently unknown. Our hypothesis is that a reduced dose intensity of IO could be as effective as the current standard treatment in term of prevention of the disease progression. If proved right, this study will have a positive medico-economic impact by reduction of the costs associated with the treatment and the toxicity, and an increase of the patients' quality of life.
This is a phase 2 trial of concurrent stereotactic radiation therapy (SBRT) with immunotherapy with relatlimab and nivolumab for up to two years. SBRT will be given in three doses of 15Gy each to 1-5 separate metastases. Opdualag (nivolumab 480mg and relatlimab 160mg) will be given every 4 weeks for two years
The purpose of this study is to determine the safety and feasibility of administering the Tetanus Diptheria Vaccine (Td) or Polio Boost Immunization (IPOL) to patients with metastatic melanoma who are receiving immune checkpoint inhibitor (IO) therapy per standard of care. Subjects will have the vaccine at cycle 4 of IO therapy and will have research blood and tissue samples collected prior to starting IO therapy, at cycle 4 prior to vaccine administration, and at 12-17 days post vaccine.
This phase I trial is designed in two parts. First as an open-label, dose escalation trial of MEM-288 monotherapy in which investigators aim to find the maximum tolerated dose (MTD) and recommended phase II dose (RP2D). Subjects with selected solid tumors including non-small cell lung cancer (NSCLC) who have a tumor lesion which is accessible for injection will undergo intratumoral injection of MEM-288. Following completion of the monotherapy study portion of the study, an expansion arm is designed to test MEM-288 with concurrent anti-PD-1 (nivolumab) therapy for patients with first relapsed or refractory advanced/metastatic NSCLC following front-line anti-PD-1/PD-L1 with or without concurrent chemotherapy. The study rationale is that the oncolytic effect of MEM-288 combined with the presence of CD40L and type 1 interferon (IFN) in injected tumors will provide a strong signal for dendritic cell (DC)-mediated T cell activation leading to generation of systemic anti-tumor T cell responses with broad specificity akin to what is observed in the abscopal effect. Further study rationale is the anti-tumor effect of MEM-288 will be enhanced by nivolumab by reversing T cell exhaustion.
The (overarching) iToBoS Project involves 18 research partners spanning the European Union (including UK and Israel), and 1 Australian partner. The overall aim is to develop an AI assisted diagnostic platform for the early detection of melanoma. The Clinical Data Acquisition Study (this study) will recruit 600 participants across 3 international sites (Brisbane, Italy, and Spain). The primary objective is to compare the quality and resolution of conventional dermoscopic images of skin lesions with the full-body images captured by the iToBoS imaging system. Secondary objectives are to collect imaging, clinical and genetic data across the three sites, to create labelled datasets for use in training the iToBoS AI component. Also, to refine and develop a holistic melanoma risk score method to be used for the iToBoS system. Lastly, to assess safety of the iToBoS system. At study site we will aim to recruit 200 participants stratified by risk (of melanoma) categories (low/normal, high, and ultra-high). Participants will be required to attend 3 study visits (months 0, 6 and 12), for total body imaging with the iToBoS system, and dermoscopic images of individual moles. Genetic research and clinical testing are an optional part of the study.
Malignant melanoma, is a kind of malignant tumor derived from melanocytes. It is common in skin, mucous membrane, eye choroid and other parts. Melanoma is one of the fastest growing malignant tumors with an annual incidence rate of 3-5%. In 2012, there were 232000 new cases of melanoma and 55000 deaths worldwide. Though, the incidence rate of melanoma is relatively low in China, it has been increasing rapidly in recent years. Melanoma has seriously endangering the health of Chinese people. Patients with stage Ⅳ melanoma have a poor prognosis. According to statistics, the median survival time of stage M1a melanoma is 15 months, while stage M1b is 8 months. The median survival time of bone metastasis melanoma is 6 months, while liver and brain metastasis is 4 months. The overall median survival time of metastatic melanoma is only 7.5 months, and the 2-year survival rate is 15%. For patients with advanced melanoma, dacarbazine is the only chemotherapy drug approved by NMPA, but its overall effective rate is only 13.4%, and the median survival time is 5.6 ~ 11 months. Therapies(new drugs or new combination treatments)with higher remission rate and longer survival are urgently needed for patients with advanced melanoma.
Malignant melanoma, is a kind of malignant tumor derived from melanocytes. It is common in skin, mucous membrane, eye choroid and other parts. Melanoma is one of the fastest growing malignant tumors with an annual incidence rate of 3-5%. In 2012, there were 232000 new cases of melanoma and 55000 deaths worldwide. Though, the incidence rate of melanoma is relatively low in China, it has been increasing rapidly in recent years. Melanoma has seriously endangering the health of Chinese people. Patients with stage Ⅳ melanoma have a poor prognosis. According to statistics, the median survival time of stage M1a melanoma is 15 months, while stage M1b is 8 months. The median survival time of bone metastasis melanoma is 6 months, while liver and brain metastasis is 4 months. The overall median survival time of metastatic melanoma is only 7.5 months, and the 2-year survival rate is 15%. For patients with advanced melanoma, dacarbazine is the only chemotherapy drug approved by NMPA, but its overall effective rate is only 13.4%, and the median survival time is 5.6 ~ 11 months. Therapies(new drugs or new combination treatments)with higher remission rate and longer survival are urgently needed for patients with advanced melanoma.
This study is open to adults with advanced head and neck cancer, skin cancer, or non-small cell lung cancer. People can take part if previous treatments were not successful. The purpose of this study is to find out how 2 medicines called BI 765063 and BI 770371 are taken up in the tumours and how they get distributed in the body. In addition to BI 765063 or BI 770371, participants also receive ezabenlimab. BI 765063, BI 770371 and ezabenlimab are antibodies that may help the immune system fight cancer. Such therapies are also called immune checkpoint inhibitors. Participants get either BI 765063 or BI 770371 in combination with ezabenlimab as an infusion into a vein every 3 weeks. In the first weeks, doctors check how BI 765063 and BI 770371 are taken up in tumours. To do so, the doctors use imaging methods (PET/CT scans). For this, participants get BI 765063 or BI 770371 injected in a labelled form up to 2 times. Participants can stay in the study as long as they benefit from treatment and can tolerate it. The doctors regularly check participants' health and take note of any unwanted effects.