Literature DB >> 31357203

Skin Metabolism: Relevance of Skin Enzymes for Rational Drug Design.

Sung Min Pyo1, Howard I Maibach2.   

Abstract

Transdermal therapeutic systems (TTS) have numerous pharmacological benefits. Drug release, for example, is independent of whether a patient is in a fed or a fasted state, and lower doses can be given as gastrointestinal and hepatic first-pass metabolism is avoided. In addition, inter- and intrapatient variability is minimized as the release of the drug is mainly controlled by the system. This makes TTS interesting as alternative systems to the most common dosage form of oral tablets. The difficulty with the dermal administration route is transporting the drug through the skin, since the skin is an efficient barrier against foreign bodies. Various strategies have been reported in the literature of how drug penetration can be improved. Most of them, however, focus on overcoming the stratum corneum as the first (mechanical) skin barrier. However, penetration is much more complex, and the skin's barrier function does not only depend on the stratum corneum; what has been underestimated is the second (biological) skin barrier formed of enzymes. Compared to the stratum corneum, very little is known about these enzymes, e.g., which enzymes are present in the skin and where exactly they are localized. Hence, very few strategies can be found for how to bypass or even use the skin enzyme barrier for TTS development. This review article provides an overview of the skin enzymes considered to be relevant for the biotransformation of dermally applied drugs. Also, we discuss the use of dermal prodrugs and soft drugs and give the stereoselectivity of skin metabolism careful consideration. Finally, we provide suggestions on how to make use of the current knowledge about skin enzymes for rational TTS design.
© 2019 S. Karger AG, Basel.

Entities:  

Keywords:  Dermal delivery systems; Dermal prodrugs; Dermal soft drugs; Skin enzymes; Skin metabolism; Stereoselective metabolism; Transdermal therapeutic systems

Mesh:

Year:  2019        PMID: 31357203     DOI: 10.1159/000501732

Source DB:  PubMed          Journal:  Skin Pharmacol Physiol        ISSN: 1660-5527            Impact factor:   3.479


  3 in total

1.  Metabolism of Enantiomers of Rhododendrol in Human Skin Homogenate.

Authors:  Lihao Gu; Kazuhisa Maeda
Journal:  Metabolites       Date:  2022-05-03

2.  Hormone treatment and UVB exposure influences on female mice regarding skin physiological parameters, biochemical parameters and organ histology.

Authors:  Virgiliu Bogdan Şorop; Veronica Mădălina Borugă; Iulia Andreea Pînzaru; Ileana Ramona Barac; Crinela Utescu; Anca Laura Maghiari; Flavia Baderca; Lavinia Bălan; Maria Şorop-Florea; Victor Dumitraşcu; Doru Mihai Anastasiu; Sebastian Simu; Daniela Radu; Oana Suciu
Journal:  Rom J Morphol Embryol       Date:  2020 Jul-Sep       Impact factor: 1.033

3.  Multi-phase multi-layer mechanistic dermal absorption (MPML MechDermA) model to predict local and systemic exposure of drug products applied on skin.

Authors:  Nikunjkumar Patel; James F Clarke; Farzaneh Salem; Tariq Abdulla; Frederico Martins; Sumit Arora; Eleftheria Tsakalozou; Arran Hodgkinson; Omid Arjmandi-Tash; Sinziana Cristea; Priyanka Ghosh; Khondoker Alam; Sam G Raney; Masoud Jamei; Sebastian Polak
Journal:  CPT Pharmacometrics Syst Pharmacol       Date:  2022-06-27
  3 in total

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