Engineered Skin Substitute Regenerates the Skin with Hair Follicle Formation

Currently, engineered skin substitutes (ESS) are unable to regenerate cutaneous appendages. Recent studies have shown that skin-derived precursors (SKPs), which are extensively available, have the potential to induce hair follicle neogenesis. Here, we demonstrate that ESS consisting of culture-expan...

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Bibliographic Details
Main Authors: Jinmei Wang, Xiaoxiao Wang, Jundong Xie, Bin Yao, Miaohua Mo, Danjun Ma, Chen Huang, Renhe Xu, Xiaobing Fu, Edward E. Tredget, Yaojiong Wu
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Biomedicines
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Online Access:https://www.mdpi.com/2227-9059/9/4/400
Description
Summary:Currently, engineered skin substitutes (ESS) are unable to regenerate cutaneous appendages. Recent studies have shown that skin-derived precursors (SKPs), which are extensively available, have the potential to induce hair follicle neogenesis. Here, we demonstrate that ESS consisting of culture-expanded SKPs and epidermal stem cells (Epi-SCs) reconstitute the skin with hair follicle regeneration after grafting into nude mice. SKPs seeded in a C-GAG matrix proliferated and expressed higher levels of hair induction signature genes—such as <i>Akp2</i>, <i>Sox2</i>, <i>CD133</i> and <i>Bmp6</i>—compared to dermal fibroblasts. Moreover, when ESS prepared by seeding a mixture of culture-expanded murine SKPs and human adult Epi-SCs into a C-GAG matrix was grafted into full-thickness skin wounds in nude mice, black hairs were generated within 3 weeks. Immunofluorescence analysis showed that the SKPs were localized to the dermal papillae of the newly-formed hair follicle. Our results indicate that SKPs can serve as the hair-inductive cells in ESS to furnish it with hair genesis potential
ISSN:2227-9059