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Clinical Application of Pharmacogenetic Markers in the Treatment of Dermatologic Pathologies
Cristina Membrive Jiménez1, Cristina Pérez Ramírez1,2, Almudena Sánchez Martín1
1Pharmacy Service, Pharmacogenetics Unit, University Hospital Virgen de las Nieves, 18014 Granada, Spain.
Abstract:
Dermatologic pathologies are the fourth most common cause of non-fatal disease worldwide; however, they produce a psychosocial, economic, and occupational impact equal to or greater than other chronic conditions. The most prevalent are actinic keratosis, followed by basal-cell carcinoma, in a lesser proportion acne vulgaris, psoriasis, and hidradenitis suppurativa, among others, and more rarely dermatitis herpetiformis. To treat actinic keratosis and basal-cell carcinoma, 5-fluorouracil (5-FU) 0.5% is administered topically with good results, although in certain patients it produces severe toxicity. On the other hand, dapsone is a drug commonly used in inflammatory skin conditions such as dermatitis herpetiformis; however, it occasionally causes hemolytic anemia. Additionally, biologic drugs indicated for the treatment of moderate-to-severe psoriasis and hidradenitis suppurativa have proved to be effective and safe; nevertheless, a small percentage of patients do not respond to treatment with biologics in the long term or they are ineffective. This interindividual variability in response may be due to alterations in genes that encode proteins involved in the pathologic environment of the disease or the mechanism of action of the medication. Pharmacogenetics studies the relationship between genetic variations and drug response, which is useful for the early identification of non-responsive patients and those with a higher risk of developing toxicity upon treatment. This review describes the pharmacogenetic recommendations with the strongest evidence at present for the treatments used in dermatology, highlighting those included in clinical practice guides. Currently, we could only find pharmacogenetic clinical guidelines for 5-FU. However, the summary of product characteristics for dapsone contains a pharmacogenetic recommendation from the United States Food and Drug Administration. Finally, there is an enormous amount of information from pharmacogenetic studies in patients with dermatologic pathologies (mainly psoriasis) treated with biologic therapies, but they need to be validated in order to be included in clinical practice guides.
Insights
Pharmacogenetics helps personalize dermatologic treatments by identifying genetic variations linked to drug response and toxicity. This review highlights current pharmacogenetic guidelines for common skin conditions, aiding in tailored patient care.
Area of Science:
- Pharmacogenomics and Precision Medicine
- Dermatology and Cutaneous Biology
- Translational Pharmacology
Background:
- Dermatologic conditions significantly impact global health, causing substantial psychosocial, economic, and occupational burdens.
- Common dermatologic diseases like actinic keratosis, basal-cell carcinoma, psoriasis, and hidradenitis suppurativa often require pharmacologic intervention.
- Variability in patient response and toxicity to treatments such as 5-fluorouracil, dapsone, and biologic agents necessitates personalized therapeutic strategies.
Purpose of the Study:
- To review current pharmacogenetic recommendations for dermatologic treatments with the strongest evidence.
- To identify pharmacogenetic guidelines applicable to clinical practice in dermatology.
- To assess the current state of pharmacogenetic research for commonly used dermatologic therapies.
Main Methods:
- Systematic literature review of pharmacogenetic studies and clinical practice guidelines relevant to dermatologic treatments.
- Analysis of existing pharmacogenetic information for 5-fluorouracil (5-FU), dapsone, and biologic therapies.
- Evaluation of the evidence supporting pharmacogenetic recommendations for drug selection and toxicity prediction.
Main Results:
- Pharmacogenetic clinical guidelines are currently established only for 5-fluorouracil (5-FU).
- The summary of product characteristics for dapsone includes a pharmacogenetic recommendation from the FDA.
- Extensive pharmacogenetic data exists for biologic therapies in psoriasis, but requires further validation for clinical implementation.
Conclusions:
- Pharmacogenetics offers a valuable tool for optimizing dermatologic treatment by predicting patient response and risk of adverse events.
- Clinical implementation of pharmacogenetic testing is limited but growing, with established guidelines for 5-FU and emerging data for biologics.
- Further research and validation are crucial to integrate pharmacogenetics into routine dermatologic care for improved patient outcomes.
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