In vivo reprogramming of wound-resident cells generates skin epithelial tissue.

Kurita, Masakazu; Araoka, Toshikazu; Hishida, Tomoaki; O'Keefe, David D; Takahashi, Yuta; Sakamoto, Akihisa; Sakurai, Masahiro; Suzuki, Keiichiro et al. · Nature · 2018

basic_science · Level V

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Abstract

Large cutaneous ulcers are, in severe cases, life threatening<sup>1,2</sup>. As the global population ages, non-healing ulcers are becoming increasingly common<sup>1,2</sup>. Treatment currently requires the transplantation of pre-existing epithelial components, such as skin grafts, or therapy using cultured cells<sup>2</sup>. Here we develop alternative supplies of epidermal coverage for the treatment of these kinds of wounds. We generated expandable epithelial tissues using in vivo reprogramming of wound-resident mesenchymal cells. Transduction of four transcription factors that specify the skin-cell lineage enabled efficient and rapid de novo epithelialization from the surface of cutaneous ulcers in mice. Our findings may provide a new therapeutic avenue for treating skin wounds and could be extended to other disease situations in which tissue homeostasis and repair are impaired.

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