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The Three-Dimensional Human Skin Reconstruct Model: a Tool to Study Normal Skin and Melanoma Progression
Published on: August 3, 2011
Toxicity and Dermatokinetic Analysis of Ibrutinib in Human Skin Models
Maria Victória Souto-Silva1, Elizabete C I Bispo2, Lucas F F Albuquerque3
1Interdisciplinary Biosciences Laboratory, Faculty of Medicine, University of Brasilia, Brasília 70910-900, DF, Brazil.
Abstract:
Background/Objectives: Ibrutinib (IBR) is a tyrosine kinase inhibitor under investigation in preclinical and clinical settings as an alternative treatment for melanoma. Nevertheless, the limited oral bioavailability of IBR and the need for high doses of the drug to kill melanoma cells are major drawbacks for this purpose. Considering that melanoma is restricted to the skin at early stages, the topical application of IBR might constitute an effective and safer administration route. In this study, we determined IBR's toxicity and dermatokinetics using human primary cells and human organotypic skin explant cultures (hOSECs). Methods: After demonstrating that human primary fibroblasts and keratinocytes present IBR target genes, the cytotoxicity of the drug was determined using the MTT and annexin V/PI staining assays. IBR toxicity in the skin was assessed using the TTC assay, and the irritation potential was established using histological assessment. Finally, IBR cutaneous permeation was assessed ex vivo to determine the drug dermatokinetics. Results: Our findings reveal that IBR exerts dose-dependent toxicity towards skin cells, presenting an IC50 in the same range as melanoma cells. The topical application of the drug successfully reduced irritation and toxicity in the skin, and the drug was shown to successfully permeate the stratum corneum and reach the viable skin layers in therapeutic concentrations. Conclusions: Overall, our data encourage the topical application of IBR to treat melanoma, paving the way for future studies in this theme.
Insights
Topical application of ibrutinib (IBR) shows promise for melanoma treatment. This study found IBR effectively targets melanoma cells with reduced skin toxicity and irritation via topical delivery.
Area of Science:
- Oncology
- Dermatology
- Pharmacology
Background:
- Ibrutinib (IBR) is a tyrosine kinase inhibitor investigated for melanoma treatment.
- Limited oral bioavailability and high dosage requirements hinder IBR's efficacy.
- Topical IBR offers a potentially safer and more effective administration route for skin-restricted melanoma.
Purpose of the Study:
- To evaluate the toxicity and dermatokinetics of IBR.
- To assess IBR's efficacy in human primary cells and organotypic skin explant cultures (hOSECs).
Main Methods:
- Cytotoxicity assessed via MTT and annexin V/PI staining assays.
- Skin toxicity evaluated using TTC assay and histological assessment.
- Ex vivo cutaneous permeation studies determined dermatokinetics.
Main Results:
- IBR demonstrated dose-dependent toxicity, with IC50 comparable to melanoma cells.
- Topical IBR application reduced skin irritation and toxicity.
- IBR successfully permeated the stratum corneum, reaching therapeutic concentrations in viable skin layers.
Conclusions:
- Topical IBR is a viable strategy for melanoma treatment.
- This approach enhances drug safety and efficacy.
- Further research into topical IBR for melanoma is warranted.

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