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Journal Article

Computational Modelling of the Impact of Evaporation on In-Vitro Dermal Absorption

Benjamin N. Deacon; Samadhi Silva; Guoping Lian; Marina Evans; Tao Chen
Pharmaceutical Research · Vol. 41, Issue 10 · pp. 1979-1990 · 2024

Abstract

Purpose Volatiles are common in personal care products and dermatological drugs. Determining the impact of evaporation of volatiles on skin permeation is crucial to evaluate and understand their delivery, bioavailability, efficacy and safety. We aim to develop an in-silico model to simulate the impact of evaporation on the dermal absorption of volatiles. Method The evaporation of volatile permeants was modelled using vapour pressure as the main factor. This model considers evaporation as a passive diffusion process driven by the concentration gradient between the air-vehicle interface and the ambient environment. The evaporation model was then integrated with a previously published physiologically based pharmacokinetic (PBPK) model of skin permeation and compared with published in vitro permeation test data from the Cosmetics Europe ADME Task Force. Results The evaporation-PBPK model shows improved predictions when evaporation is considered. In particular, good agreement has been obtained for the distributions in the evaporative loss, and the overall percutaneous absorption. The model is further compared with published in-silico models from the Cosmetics Europe ADME Task Force where favourable results are achieved. Conclusion The evaporation of volatile permeants under finite dose in vitro permeation test conditions has been successfully predicted using a mechanistic model with the intrinsic volatility parameter vapour pressure. Integrating evaporation in PBPK modelling significantly improved the prediction of dermal delivery.

Bibliographic Information

JournalPharmaceutical Research
PublisherSpringer
Publication Date2024-10-01
Publication Year2024
Volume41
Issue10
Pages1979-1990
Document TypeJournal Article
Print ISSN0724-8741
eISSN1573-904X
DOI10.1007/s11095-024-03779-y

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NARA Access Coverage1984-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11095
Publisher PageOpen Publisher Page
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