Literature DB >> 20233794

A mouse model of androgenetic alopecia.

Judy S Crabtree1, Edward J Kilbourne, Bryan J Peano, Susan Chippari, Thomas Kenney, Christopher McNally, Wei Wang, Heather A Harris, Richard C Winneker, Sunil Nagpal, Catherine C Thompson.   

Abstract

Androgenetic alopecia (AGA), commonly known as male pattern baldness, is a form of hair loss that occurs in both males and females. Although the exact cause of AGA is not known, it is associated with genetic predisposition through traits related to androgen synthesis/metabolism and androgen signaling mediated by the androgen receptor (AR). Current therapies for AGA show limited efficacy and are often associated with undesirable side effects. A major hurdle to developing new therapies for AGA is the lack of small animal models to support drug discovery research. Here, we report the first rodent model of AGA. Previous work demonstrating that the interaction between androgen-bound AR and beta-catenin can inhibit Wnt signaling led us to test the hypothesis that expression of AR in hair follicle cells could interfere with hair growth in an androgen-dependent manner. Transgenic mice overexpressing human AR in the skin under control of the keratin 5 promoter were generated. Keratin 5-human AR transgenic mice exposed to high levels of 5alpha-dihydrotestosterone showed delayed hair regeneration, mimicking the AGA scalp. This effect is AR mediated, because treatment with the AR antagonist hydroxyflutamide inhibited the effect of dihydrotestosterone on hair growth. These results support the hypothesis that androgen-mediated hair loss is AR dependent and suggest that AR and beta-catenin mediate this effect. These mice can now be used to test new therapeutic agents for the treatment of AGA, accelerating the drug discovery process.

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Year:  2010        PMID: 20233794     DOI: 10.1210/en.2009-1474

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  12 in total

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Review 3.  Androgenetic alopecia: a review.

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Review 4.  Regulation of signaling pathways in hair follicle stem cells.

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Journal:  Burns Trauma       Date:  2022-07-04

5.  Valproic acid induces hair regeneration in murine model and activates alkaline phosphatase activity in human dermal papilla cells.

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6.  Hair growth promotion effect of cedrol cream and its dermatopharmacokinetics.

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Journal:  RSC Adv       Date:  2018-12-18       Impact factor: 4.036

7.  The Androgen Receptor Antagonizes Wnt/β-Catenin Signaling in Epidermal Stem Cells.

Authors:  Kai Kretzschmar; Denny L Cottle; Pawel J Schweiger; Fiona M Watt
Journal:  J Invest Dermatol       Date:  2015-06-29       Impact factor: 8.551

8.  The Hair Growth-Promoting Effect of Rumex japonicus Houtt. Extract.

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Journal:  Evid Based Complement Alternat Med       Date:  2016-11-16       Impact factor: 2.629

9.  Differences in reproductive toxicology between alopecia drugs: an analysis on adverse events among female and male cases.

Authors:  Min Wu; Qingxiong Yu; Qingfeng Li
Journal:  Oncotarget       Date:  2016-12-13

10.  A Guide to Studying Human Hair Follicle Cycling In Vivo.

Authors:  Ji Won Oh; Jennifer Kloepper; Ewan A Langan; Yongsoo Kim; Joongyeub Yeo; Min Ji Kim; Tsai-Ching Hsi; Christian Rose; Ghil Suk Yoon; Seok-Jong Lee; John Seykora; Jung Chul Kim; Young Kwan Sung; Moonkyu Kim; Ralf Paus; Maksim V Plikus
Journal:  J Invest Dermatol       Date:  2016-01       Impact factor: 8.551

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