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February 17, 20261 citationsOpen Access

Photoprotection for Skin Cancer: What’s New

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YGYolanda GilaberteAEAndrés Ederra-GaléJGJuan Jose Garcia-Alfonso

Key Points

  • This review aims to evaluate the effectiveness of various photoprotective strategies in preventing skin cancer.
  • Conducted a narrative review of literature from PubMed (2010–2025)
  • Included studies in English and Spanish
  • Employed search terms related to photoprotection and skin cancer
  • Selected articles based on clinical relevance.
  • Daily sunscreen use significantly reduces actinic keratoses and squamous cell carcinoma
  • Evidence for protection against basal cell carcinoma and melanoma is mixed
  • DNA-repair enzymes decrease cyclobutane pyrimidine dimers and improve actinic keratoses
  • Antioxidants show preventive effects on skin damage and cancer
  • Oral and topical nicotinamide demonstrate potential in preventing skin cancer in certain populations.

Abstract

Background: Skin cancer is the most common malignancy worldwide. Although photoprotection is the cornerstone of skin cancer prevention, evidence regarding the role of other radiations different from the ultraviolet radiation and the efficacy of sunscreens, oral supplements, DNA-repair enzymes, and antioxidants continues to evolve. Objectives: To review the current evidence on photoprotective strategies and assess their role in preventing actinic keratoses (AK), keratinocyte carcinomas and melanoma. Methods: A narrative review of the literature was conducted using PubMed (2010–2025), including studies in English and Spanish. Search terms comprised “photoprotection,” “sunscreen,” “oral photoprotection,” “skin cancer,” “melanoma,” “keratinocyte cancer,” “UV radiation,” “non-melanoma skin cancer” and related concepts. Articles were selected for clinical relevance. Results: Daily sunscreen use significantly reduces AK and cutaneous squamous cell carcinoma in high-risk individuals, although evidence for basal cell carcinoma and melanoma prevention remains heterogeneous. Balanced broad-spectrum protection, including UVA and visible light filtering, seems to be important, whereas high-energy visible light needs further investigation. DNA-repair enzymes have shown reductions in cyclobutane pyrimidine dimers and clinical improvement of AK. Antioxidants such as Polypodium leucotomos extract, topical and oral, exhibit preventive effects on actinic damage and carcinogenesis. Topical and especially oral nicotinamide demonstrate chemopreventive potential in immunocompetent patients. Vulnerable populations—including transplant recipients, XP patients, individuals with albinism, and outdoor workers—require tailored photoprotection strategies with demonstrated benefit. Conclusions: Photoprotection extends far beyond UV filters, encompassing biological ingredients, antioxidants, oral supplements, and broad-spectrum strategies that target the full exposome. Comprehensive, behaviour-based photoprotection programmes are essential for high-risk groups.

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Cite This Study

Gilaberte et al. (2026) studied this question.

synapsesocial.com/papers/699405494e9c9e835dfd60f2https://doi.org/10.3390/cancers18040634
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