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Current Insights into the Role of UV Radiation-Induced Oxidative Stress in Melanoma Pathogenesis
by
Łuczaj, Wojciech
, Gieniusz, Ernest
, Skrzydlewska, Elżbieta
in
Animals
/ Cancer therapies
/ Carcinogens
/ Care and treatment
/ Cell cycle
/ Cell growth
/ Diagnosis
/ Disease prevention
/ Epidemiology
/ Health aspects
/ Humans
/ Immunotherapy
/ Kinases
/ Medical prognosis
/ Melanocytes - metabolism
/ Melanocytes - pathology
/ Melanocytes - radiation effects
/ Melanoma
/ Melanoma - etiology
/ Melanoma - metabolism
/ Melanoma - pathology
/ Metastasis
/ Mutation
/ Oxidative stress
/ Oxidative Stress - radiation effects
/ Pathogenesis
/ Patient outcomes
/ Proteins
/ Review
/ Signal Transduction - radiation effects
/ Skin cancer
/ Skin Neoplasms - etiology
/ Skin Neoplasms - metabolism
/ Skin Neoplasms - pathology
/ Sun
/ Ultraviolet radiation
/ Ultraviolet Rays - adverse effects
2024
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Current Insights into the Role of UV Radiation-Induced Oxidative Stress in Melanoma Pathogenesis
by
Łuczaj, Wojciech
, Gieniusz, Ernest
, Skrzydlewska, Elżbieta
in
Animals
/ Cancer therapies
/ Carcinogens
/ Care and treatment
/ Cell cycle
/ Cell growth
/ Diagnosis
/ Disease prevention
/ Epidemiology
/ Health aspects
/ Humans
/ Immunotherapy
/ Kinases
/ Medical prognosis
/ Melanocytes - metabolism
/ Melanocytes - pathology
/ Melanocytes - radiation effects
/ Melanoma
/ Melanoma - etiology
/ Melanoma - metabolism
/ Melanoma - pathology
/ Metastasis
/ Mutation
/ Oxidative stress
/ Oxidative Stress - radiation effects
/ Pathogenesis
/ Patient outcomes
/ Proteins
/ Review
/ Signal Transduction - radiation effects
/ Skin cancer
/ Skin Neoplasms - etiology
/ Skin Neoplasms - metabolism
/ Skin Neoplasms - pathology
/ Sun
/ Ultraviolet radiation
/ Ultraviolet Rays - adverse effects
2024
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Current Insights into the Role of UV Radiation-Induced Oxidative Stress in Melanoma Pathogenesis
by
Łuczaj, Wojciech
, Gieniusz, Ernest
, Skrzydlewska, Elżbieta
in
Animals
/ Cancer therapies
/ Carcinogens
/ Care and treatment
/ Cell cycle
/ Cell growth
/ Diagnosis
/ Disease prevention
/ Epidemiology
/ Health aspects
/ Humans
/ Immunotherapy
/ Kinases
/ Medical prognosis
/ Melanocytes - metabolism
/ Melanocytes - pathology
/ Melanocytes - radiation effects
/ Melanoma
/ Melanoma - etiology
/ Melanoma - metabolism
/ Melanoma - pathology
/ Metastasis
/ Mutation
/ Oxidative stress
/ Oxidative Stress - radiation effects
/ Pathogenesis
/ Patient outcomes
/ Proteins
/ Review
/ Signal Transduction - radiation effects
/ Skin cancer
/ Skin Neoplasms - etiology
/ Skin Neoplasms - metabolism
/ Skin Neoplasms - pathology
/ Sun
/ Ultraviolet radiation
/ Ultraviolet Rays - adverse effects
2024
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Current Insights into the Role of UV Radiation-Induced Oxidative Stress in Melanoma Pathogenesis
Journal Article
Current Insights into the Role of UV Radiation-Induced Oxidative Stress in Melanoma Pathogenesis
2024
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Overview
Cutaneous melanoma accounts for the majority of skin cancer-related deaths, and its incidence increases each year. The growing number of melanoma cases, especially in advanced stages, poses a significant socio-medical challenge throughout the world. Extensive research on melanoma pathogenesis identifies UV radiation as the most important factor in melanocytic transformation. Oxidative effects of UV irradiation exert their influence on melanoma pathogenesis primarily through modification of nucleic acids, proteins, and lipids, further disrupting cellular signaling and cell cycle regulation. Its effects extend beyond melanocytes, leading to immunosuppression in the exposed skin tissue, which consequently creates conditions for immune surveillance evasion and further progression. In this review, we focus on the specific molecular changes observed in the UV-dependent oxidative stress environment and their biological consequences in the course of the disease, which have not been considered in previous reviews on melanoma. Nonetheless, data show that the exact role of oxidative stress in melanoma initiation and progression remains unclear, as it affects cancerous cells differently depending on the specific context. A better understanding of the pathophysiological basis of melanoma development holds promise for identifying potential targets, which could lead to effective melanoma prevention strategies.
Publisher
MDPI AG,MDPI
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