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Journal ArticleDOI

Permeation of hairless mouse skin I: Experimental methods and comparison with human epidermal permeation by alkanols

TLDR
The permeation of intact hairless mouse skin by alkanols was studied, and data for the quasi-steady-state and nonstationary-state aspects of mass transfer are given and great similarity in all facets of behavior is noted.
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This article is published in Journal of Pharmaceutical Sciences.The article was published on 1980-07-01. It has received 203 citations till now. The article focuses on the topics: Permeation.

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Methods for in vitro percutaneous absorption studies. II. Animal models for human skin.

TL;DR: Percutaneous absorption of compounds through the skin of selected animal species was compared to that occurring with human skin, using in vitro diffusion cell techniques: pig skin and hairless mouse skin were the best animal models for the slower penetrating urea.
Journal ArticleDOI

Toxicity and penetration of TiO2 nanoparticles in hairless mice and porcine skin after subchronic dermal exposure.

TL;DR: The results suggest that nanosize TiO(2) may pose a health risk to human after dermal exposure over a relative long time period, and that the pathological lesions are likely to be mediated through the oxidative stress induced by the deposited nanoparticles.
Journal ArticleDOI

Methods for in vitro percutaneous absorption studies IV: The flow‐through diffusion cell

TL;DR: Good agreement was obtained between the results of the in vivo and in vitro procedures on the permeation of cortisone and benzoic acid applied in a petrolatum vehicle and with rat skin in the flow-through and static-diffusion cells.
Journal ArticleDOI

Safety evaluation of topical applications of ethanol on the skin and inside the oral cavity.

TL;DR: As there might be industry bias in many studies about the safety of topical ethanol applications, as well as a general lack of scientific research on the long-term effects, there is a requirement for independent studies on this topic.
Book

Dermatological And Transdermal Formulations

TL;DR: The structure and function of the skin common skin disorders and their topical treatment basic mathematical principles in skin permeation skin transport methods for studying percutaneous absorption formulation strategies for modulating skinpermeation formulation and development of dermatological dosage forms a case for multivariate optimization and product homogeneity transdermal drug delivery systems safety considerations.
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Mechanism of Percutaneous Absorption: III. The Effect of Temperature on the Transport of Non-Electrolytes Across the Skin*

TL;DR: A reconciliation of these contrary theories and a re-interpretation of the conflicting data is really long overdue and quite necessary if a useful link between studies of skin permeability in the laboratory and their relevance to the topical application of a drug by the physician is to be obtained.
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