Ensayos clínicos A continuación, se enumeran los ensayos clínicos actuales.455 estudios en Oncología (médica) (solo estudios abiertos). Filtra esta lista de estudios por sede, estatus, etc. A Study of Standard Systemic Therapy with or without Definitive Treatment in Treating Participants with Metastatic Prostate Cancer Rochester, Minn., La Crosse, Wis., Scottsdale/Phoenix, Ariz. The purpose of this study is to evaouate how well standard systemic therapy with or without definitive treatment (prostate removal surgery or radiation therapy) works in treating participants with prostate cancer that has spread to other places in the body. Immune Response to Antigens Jacksonville, Fla. The purpose of this study is to sequence patient germline and tumor samples, and nominate top neoantigen candidates using an in-house developed bioinformatics pipeline, and to validate the neoantigen candidates by laboratory assays using patient peripheral blood immune cells or serum. Personalized Neoantigen Peptide-Based Vaccine in Combination With Pembrolizumab for the Treatment of Advanced Solid Tumors, The PNeoVCA Study Jacksonville, Fla. The purpose of this study ia to determine the safety and tolerability of personalized neoantigen peptide administered in combination with pembrolizumab to patients with advanced solid tumors. Patients' tumors will be sequenced during a pre-registration component or will have had successful sequencing pre-study. A personalized neoantigen peptide vaccine containing up to 20 unique peptides will be manufactured for each qualifying patient based on the results. Innovative CAR-TIL immunotherapy against melanoma Jacksonville, Fla. The chimeric antigen receptor (CAR) T-cell therapy is a revolutionary cellular immunotherapy strategy that has transformed the treatment of B cell malignancies by engineering T cells to recognize B cell specific tumor markers; however, attempts to treat solid tumors with CAR T-cells have identified unique challenges that have rendered CAR T cells less effective against these tumors. Conventional CARs are designed to target tumor-associated antigens, but antigenic heterogeneity and the variable nature of surface antigen expression provide escape mechanisms for solid tumors from CAR T-cell attack. [1, 2] The solid tumor stroma acts as an immunosuppressive cloud that impedes the homing of peripheral CAR T-cells into the tumor microenvironment (TME). The hostile TME can also drive CAR T-cells to functional exhaustion and metabolic dysfunction, thus blunting the therapeutic efficacy of CAR T-cells.[3] Oncolytic viruses or radiation that generate local inflammation in the TME have been shown to promote T cell homing and infiltration [4] but do not address the exhaustion of tumor infiltrating lymphocytes (TILs). The PD-1/PD-L1 cascade allows tumors to evade the immune system by suppressing T cell function within the TME. [5, 6] An ideal adoptive cellular therapy must possess the ability to not only return to the site of the tumor but must also retain cytotoxic potential after a recognition event. We present here a CAR design that allows PD-1 to recognize PD-L1 on the tumor; however, the intracellular CAR design is one that results in T cell activation as opposed to inhibition. We hypothesize that targeting melanoma with a PD-1 (MC9324) CAR TIL therapy would capitalize on the tumor homing machinery of the TIL to drive the CAR TIL to the tumor where engagement of the PD-1 domain of the CAR with PD-L1 on the tumor cell would result in T cell cytotoxic killing. A Study to Evaluate Bleomycin, Carboplatin, Etoposide, or Cisplatin in Treating Pediatric and Adult Patients with Germ Cell Tumors Rochester, Minn. The purpose of this study is to evaluate how well bleomycin, carboplatin, etoposide, or cisplatin work in treating pediatric and adult patients with germ cell tumors. Active surveillance may help doctors to monitor subjects with low risk germ cell tumors after their tumor is removed. Drugs used in chemotherapy, such as bleomycin, carboplatin, etoposide, and cisplatin, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Tebentafusp Regimen Versus Investigator's Choice in Previously Treated Advanced Melanoma (TEBE-AM) Rochester, Minn., Jacksonville, Fla., Scottsdale/Phoenix, Ariz. The purpose of this study is to evaluate the effectiveness and safety of tebentafusp-based regimens tebentafusp monotherapy and in combination with anti-PD1) vs investigator choice (including clinical trials of investigational agents, salvage therapy per local standard of care (SoC), best supportive care (BSC)) on protocol survivor follow up) in patients with advanced non-ocular melanoma. A Survey of Pheochromocytoma and Paraganglioma Patient Environment Rochester, Minn. The purpose of this study is to determine the association of environmental, geographic factors, as well as presence of comorbidities associated with hypoxia with development of pheochromocytomas and paragangliomas (PPGL), location of PPGL, and number of PPGL. Analyses of Metabolic Agents Following Brain Radiation Rochester, Minn. The purpose of this study is to determine the feasibility of serial cerebrospinal fluid (CSF) assessments to evaluate the pharmacodynamic impact of agents targeting radiation-induced biology administered following completion of brain radiation. Establishment of Preclinical Models from Patients with Gynecological Malignancies Rochester, Minn., Scottsdale/Phoenix, Ariz. Effective treatments for recurrent gynecological cancer are lacking, and there is a need for novel therapeutic options. One of the barriers to improving outcomes in this subgroup of patients is the paucity of tumor models that can mimic patient characteristics to study novel therapies. Patient-derived xenograft (PDX) models are considerate the most representative pre-clinical model of human cancer, recapitulating the key characteristics of the original patient tumor. Other preclincal models to test drug effcicacy includes ex vivo 3D culture and 2D culture systems. In this study, we make and test preclinical models of gynecological cancers (ovarian, fallopian tube, peritoneal, uterine, vulvar, cervix, and vaginal) of any histologic subtype using surplus tumor specimens obtained at the time of routine tumor biopsy procedure, or clinically-indicated surgery. Hypo-fractionated Proton Radiation Therapy With or Without Androgen Suppression for Intermediate Risk Prostate Cancer Scottsdale/Phoenix, Ariz. The purpose of this study is to compare the effects, good and/or bad of two treatment methods on subjects and their cancer. Proton beam radiation therapy is one of the treatments for men with prostate cancer who have localized disease. The benefit of the combination with androgen suppression is not completely understood. This study will compare the use of hypofraction proton therapy (28 treatments) alone to proton therapy with androgen suppression therapy. Numeración de páginas Estudios clínicos AnteriorPágina anterior Ir a página 2020 Ir a página 2121 Ir a página 2222 Ir a página 2323 Ir a página 2424 SiguientePróxima página Solicite una consulta Conocimientos y categoríasInvestigación May 09, 2023 Comparte en: FacebookTwitter U.S. News & World Report reconoce a Mayo Clinic en Rochester (Minnesota), Mayo Clinic en Jacksonville (Florida) y Mayo Clinic en Phoenix y Scottsdale (Arizona) entre los mejores hospitales oncológicos del país para el período 2024-2025. Lee más sobre este gran honor. Oncología (médica)Página inicialdel departamentoSeccionesDescripción generalEnfermedades tratadasMédicosGrupos especializadosConocimientos y categoríasEnsayos clínicosInvestigaciónExperiencias en Mayo Clinic y nuestros pacientes cuentan su historiaCostos y seguroNoticias de Mayo ClinicRemisiones Investigación: los pacientes son la prioridad Mostrar la transcripción Para video Investigación: los pacientes son la prioridad [SUENA MÚSICA] Dr. Joseph Sirven, profesor de Neurología, Mayo Clinic: La misión de Mayo se centra en el paciente. La prioridad es el paciente. Aquí, la misión y la investigación se hacen para progresar en la forma de ayudar mejor al paciente y para asegurarnos de que el paciente sea la prioridad en la atención médica. De muchas maneras, esto equivale a un ciclo. Puede comenzar con algo tan simple como una idea que se desarrolla en un laboratorio, se traslada a la atención directa del paciente y, si todo sale bien y resulta útil o beneficioso, pasa a ser el método estándar. Creo que una de las características tan singulares de la forma de investigar en Mayo es la concentración en el paciente, y es lo que realmente le ayuda a captar la atención de todos. SeccionesSolicite una ConsultaDescripción generalEnfermedades tratadasMédicosGrupos especializadosConocimientos y categoríasEnsayos clínicosInvestigaciónExperiencias en Mayo Clinic y nuestros pacientes cuentan su historiaCostos y seguroNoticias de Mayo ClinicRemisiones ORG-20180179 Centros y departamentos médicos Oncología (médica)