The skin has a remarkable ability to grow under constant stretch. Using a controlled tissue expansion system in mice, we identified an enhanced inflammatory-metabolic network in stretched skin via single-cell RNA sequencing, flow cytometry and spatial transcriptomics. Stretched epidermal cells exhibit heightened cellular crosstalk of CXCL, CCL, TNF, and TGF-β signaling. Additionally, skin expansion increases macrophage and monocyte infiltration in the skin while altering systemic immune cell profiles. Glycolysis-related genes, including Glut1 and Aldoa were significantly elevated. We hypothesize that Piezo1, a non-selective calcium-permeable cation channel, senses tension in stretched skin, driving these responses. The epidermal-Piezo1 loss-of-function animals show reduced skin growth, tissue weight, tissue thickness, macrophage infiltration, and glycolysis activity. Conversely, animals with a pharmacological Piezo1 gain of function exhibit an increase in these factors. Our findings highlight the coordinating role of Piezo1 for metabolic changes and immune cell infiltration in tension-induced skin growth.
The mechanotransducer Piezo1 coordinates metabolism and inflammation to promote skin growth
机械转导器 Piezo1 协调新陈代谢和炎症反应,从而促进皮肤生长。
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作者:Yingchao Xue ,Elizabeth Winnicki ,Zhaoxu Zhang ,Ines Lopez ,Saifeng Wang ,Charles Kirby ,Sam S Lee ,Ang Li ,Chaewon Lee ,Hana Minsky ,Kaitlin Williams ,Kevin Yueh-Hsun Yang ,Ling He ,Sashank K Reddy ,Luis A Garza
| 期刊: | Nature Communications | 影响因子: | 14.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 25;16(1):6876. |
| doi: | 10.1038/s41467-025-62270-3 | 研究方向: | 代谢 |
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