Aragona Mariaceleste, Sifrim Alejandro, Malfait Milan, Song Yura, Van Herck Jens, Dekoninck Sophie, Gargouri Souhir, Lapouge Gaëlle, Swedlund Benjamin, Dubois Christine, Baatsen Pieter, Vints Katlijn, Han Seungmin, Tissir Fadel, Voet Thierry, Simons Benjamin D, Blanpain Cédric
Laboratory of Stem Cells and Cancer, Université Libre de Bruxelles, Brussels, Belgium.
Department of Human Genetics, University of Leuven, KU Leuven, Leuven, Belgium.
Nature. 2020 Aug;584(7820):268-273. doi: 10.1038/s41586-020-2555-7. Epub 2020 Jul 29.
The ability of the skin to grow in response to stretching has been exploited in reconstructive surgery. Although the response of epidermal cells to stretching has been studied in vitro, it remains unclear how mechanical forces affect their behaviour in vivo. Here we develop a mouse model in which the consequences of stretching on skin epidermis can be studied at single-cell resolution. Using a multidisciplinary approach that combines clonal analysis with quantitative modelling and single-cell RNA sequencing, we show that stretching induces skin expansion by creating a transient bias in the renewal activity of epidermal stem cells, while a second subpopulation of basal progenitors remains committed to differentiation. Transcriptional and chromatin profiling identifies how cell states and gene-regulatory networks are modulated by stretching. Using pharmacological inhibitors and mouse mutants, we define the step-by-step mechanisms that control stretch-mediated tissue expansion at single-cell resolution in vivo.
皮肤在拉伸刺激下生长的能力已被应用于整形手术。尽管已经在体外研究了表皮细胞对拉伸的反应,但机械力如何在体内影响它们的行为仍不清楚。在这里,我们开发了一种小鼠模型,通过该模型可以在单细胞分辨率下研究拉伸对皮肤表皮的影响。通过结合克隆分析、定量建模和单细胞RNA测序的多学科方法,我们发现拉伸通过在表皮干细胞的更新活动中产生短暂偏差来诱导皮肤扩张,而基底祖细胞的第二个亚群则继续致力于分化。转录和染色质分析确定了细胞状态和基因调控网络是如何被拉伸调节的。使用药理学抑制剂和小鼠突变体,我们在体内单细胞分辨率下定义了控制拉伸介导的组织扩张的逐步机制。