再生(生物学)
平原的
伤口愈合
动力学
再生医学
细胞外
胞外囊泡
细胞生物学
药理学
生物医学工程
化学
干细胞
生物
医学
小RNA
微泡
外科
生物化学
物理
基因
量子力学
作者
Helena Henriques-Antunes,Renato M. S. Cardoso,Alessandra Zonari,Joana Simões‐Correia,Ermelindo C. Leal,Adrián Jiménez‐Balsa,Miguel M. Lino,Ana Barradas,Ivana Kostić,Célia Gomes,Jeffrey M. Karp,Eugénia Carvalho,Lino Ferreira
出处
期刊:ACS Nano
[American Chemical Society]
日期:2019-08-07
卷期号:13 (8): 8694-8707
被引量:124
标识
DOI:10.1021/acsnano.9b00376
摘要
Small extracellular vesicles (SEVs) offer a promising strategy for tissue regeneration, yet their short lifetime at the injured tissue limits their efficacy. Here, we show that kinetics of SEV delivery impacts tissue regeneration at tissue, cellular, and molecular levels. We show that multiple carefully timed applications of SEVs had superior regeneration than a single dose of the same total concentration of SEVs. Importantly, diabetic and non-diabetic wounds treated with a single time point dose of an injectable light-triggerable hydrogel containing SEVs demonstrated a robust increase in closure kinetics relative to wounds treated with a single or multiple doses of SEVs or platelet-derived growth factor BB, an FDA-approved wound regenerative therapy. The pro-healing activity of released SEVs was mediated at the tissue/cell level by an increase in skin neovascularization and re-epithelization and at the molecular level by an alteration in the expression of 7 miRNAs at different times during wound healing. This includes an alteration of has-miR-150-5p, identified here to be important for skin regeneration.
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