Single-cell transcriptomics identifies adipose tissue CD271<sup>+</sup> progenitors for enhanced angiogenesis in limb ischemia.

Inoue, Oto; Goten, Chiaki; Hashimuko, Daiki; Yamaguchi, Kosei; Takeda, Yusuke; Nomura, Ayano; Ootsuji, Hiroshi; Takashima, Shinichiro et al. · Cell Rep Med · 2023

basic_science · Level V

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Abstract

Therapeutic angiogenesis using mesenchymal stem/stromal cell grafts have shown modest and controversial effects in preventing amputation for patients with critical limb ischemia. Through single-cell transcriptomic analysis of human tissues, we identify CD271<sup>+</sup> progenitors specifically from subcutaneous adipose tissue (AT) as having the most prominent pro-angiogenic gene profile distinct from other stem cell populations. AT-CD271<sup>+</sup> progenitors demonstrate robust in vivo angiogenic capacity over conventional adipose stromal cell grafts, characterized by long-term engraftment, augmented tissue regeneration, and significant recovery of blood flow in a xenograft model of limb ischemia. Mechanistically, the angiogenic capacity of CD271<sup>+</sup> progenitors is dependent on functional CD271 and mTOR signaling. Notably, the number and angiogenic capacity of CD271<sup>+</sup> progenitors are strikingly reduced in insulin-resistant donors. Our study highlights the identification of AT-CD271<sup>+</sup> progenitors with in vivo superior efficacy for limb ischemia. Furthermore, we showcase comprehensive single-cell transcriptomics strategies for identification of suitable grafts for cell therapy.

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