Minoxidil sulfotransferase enzymatical activity in plants: A novel paradigm in increasing minoxidil response in androgenetic alopecia

Author:

Mehta Nina1ORCID,Huang Sam2,Dhura Rachita3,Wambier Carlos4ORCID,do Nascimento Fonesca Daniel5,Little Sabrina2,Goren Andy6ORCID

Affiliation:

1. University of North Carolina School of Medicine Chapel Hill North Carolina USA

2. DA Labs, Inc. Irvine California USA

3. Department of Dermatology LTM Medical College and Hospital Sion Mumbai India

4. Department of Dermatology Alpert Medical School of Brown University Providence Rhode Island USA

5. College of Medicine Nilton Lins University Manaus Brazil

6. University of Rome (“G. Marconi”) Rome Italy

Abstract

AbstractBackgroundMinoxidil is the only US FDA approved topical drug for the treatment of androgenetic alopecia (AGA). Minoxidil is effective in hair re‐growth in 30%–40% of patients and 50% of males. To exert its hair growing effect, minoxidil must be sulfonated in the scalp by the minoxidil sulfotransferase enzyme (SULT1A1). Low scalp SULT1A1 correlates with lack of minoxidil response; thus, supplementing the scalp SULT1A1 with naturally occurring minoxidil sulfotransferase enzymes could potentially improve treatment outcomes in AGA patients.MethodsIn this study, we set to characterize SULT1A1 activity in various plants.ResultsFrom the 10 common botanical extracts we have studied, seven exhibited significant activity toward minoxidil as a substrate; thus, providing a potential novel paradigm to increase minoxidil response with natural supplements.ConclusionTo the best of our knowledge, this is the first study to characterize naturally occurring minoxidil sulfotransferase enzymes in plants.

Publisher

Wiley

Subject

Dermatology

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