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Published on: January 25, 2015
New Treatment Horizons in Uveal and Cutaneous Melanoma
Daciana Elena Brănişteanu1,2, Elena Porumb-Andrese1,2, Vlad Porumb3,4
1Department of Medical Specialties (III)-Dermatology, Faculty of Medicine, "Grigore T. Popa" University of Medicine and Pharmacy, 700115 Iasi, Romania.
Abstract:
Melanoma is a complex and heterogeneous malignant tumor with distinct genetic characteristics and therapeutic challenges in both cutaneous melanoma (CM) and uveal melanoma (UM). This review explores the underlying molecular features and genetic alterations in these melanoma subtypes, highlighting the importance of employing specific model systems tailored to their unique profiles for the development of targeted therapies. Over the past decade, significant progress has been made in unraveling the molecular and genetic characteristics of CM and UM, leading to notable advancements in treatment options. Genetic mutations in the mitogen-activated protein kinase (MAPK) pathway drive CM, while UM is characterized by mutations in genes like GNAQ, GNA11, BAP1, EIF1AX, and SF3B1. Chromosomal aberrations, including monosomy 3 in UM and monosomy 10 in CM, play significant roles in tumorigenesis. Immune cell infiltration differs between CM and UM, impacting prognosis. Therapeutic advancements targeting these genetic alterations, including oncolytic viruses and immunotherapies, have shown promise in preclinical and clinical studies. Oncolytic viruses selectively infect malignant cells, inducing oncolysis and activating antitumor immune responses. Talimogene laherparepvec (T-VEC) is an FDA-approved oncolytic virus for CM treatment, and other oncolytic viruses, such as coxsackieviruses and HF-10, are being investigated. Furthermore, combining oncolytic viruses with immunotherapies, such as CAR-T cell therapy, holds great potential. Understanding the intrinsic molecular features of melanoma and their role in shaping novel therapeutic approaches provides insights into targeted interventions and paves the way for more effective treatments for CM and UM.
Insights
This review details the molecular and genetic differences between cutaneous melanoma (CM) and uveal melanoma (UM), emphasizing targeted therapies like oncolytic viruses and immunotherapies for improved treatment outcomes.
Area of Science:
- Oncology
- Genetics
- Immunology
Background:
- Melanoma, encompassing cutaneous (CM) and uveal (UM) subtypes, presents complex genetic profiles and therapeutic hurdles.
- Recent advancements have elucidated distinct molecular features and genetic alterations driving CM and UM tumorigenesis.
Purpose of the Study:
- To review the molecular characteristics and genetic alterations in CM and UM.
- To highlight the importance of subtype-specific model systems for targeted therapy development.
- To explore emerging therapeutic strategies, including oncolytic viruses and immunotherapies.
Main Methods:
- Review of current literature on melanoma genetics, molecular biology, and therapeutic advancements.
- Analysis of genetic mutations (e.g., MAPK pathway in CM; GNAQ, GNA11, BAP1 in UM) and chromosomal aberrations (e.g., monosomy 3 in UM, monosomy 10 in CM).
- Examination of immune cell infiltration differences and their prognostic implications.
Main Results:
- CM is driven by MAPK pathway mutations, while UM features mutations in GNAQ, GNA11, BAP1, EIF1AX, and SF3B1.
- Chromosomal aberrations like monosomy 3 (UM) and monosomy 10 (CM) are critical in tumorigenesis.
- Oncolytic viruses (e.g., T-VEC) and immunotherapies show promise, with combination strategies being explored.
Conclusions:
- Understanding the unique molecular landscape of CM and UM is crucial for developing effective targeted therapies.
- Oncolytic viruses and immunotherapies represent promising avenues for melanoma treatment, particularly in combination approaches.
- Tailored therapeutic strategies based on specific melanoma subtypes are essential for improving patient outcomes.
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