Mechanical stretch induces hair regeneration through the alternative activation of macrophages

Mechanical stimulation is known to affect cell proliferation, differentiation, and regeneration. Here, the authors demonstrate that stretching mouse skin recruits macrophages and polarizes them into M2 cells that facilitate hair regeneration through the release of growth factors, including HGF and I...

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Autores principales: Szu-Ying Chu, Chih-Hung Chou, Hsien-Da Huang, Meng-Hua Yen, Hsiao-Chin Hong, Po-Han Chao, Yu-Hsuan Wang, Po-Yu Chen, Shi-Xin Nian, Yu-Ru Chen, Li-Ying Liou, Yu-Chen Liu, Hui-Mei Chen, Feng-Mao Lin, Yun-Ting Chang, Chih-Chiang Chen, Oscar K. Lee
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/8566efb334e94d97a598b8573cfbba21
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spelling oai:doaj.org-article:8566efb334e94d97a598b8573cfbba212021-12-02T16:57:32ZMechanical stretch induces hair regeneration through the alternative activation of macrophages10.1038/s41467-019-09402-82041-1723https://doaj.org/article/8566efb334e94d97a598b8573cfbba212019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09402-8https://doaj.org/toc/2041-1723Mechanical stimulation is known to affect cell proliferation, differentiation, and regeneration. Here, the authors demonstrate that stretching mouse skin recruits macrophages and polarizes them into M2 cells that facilitate hair regeneration through the release of growth factors, including HGF and IGF-1Szu-Ying ChuChih-Hung ChouHsien-Da HuangMeng-Hua YenHsiao-Chin HongPo-Han ChaoYu-Hsuan WangPo-Yu ChenShi-Xin NianYu-Ru ChenLi-Ying LiouYu-Chen LiuHui-Mei ChenFeng-Mao LinYun-Ting ChangChih-Chiang ChenOscar K. LeeNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Szu-Ying Chu
Chih-Hung Chou
Hsien-Da Huang
Meng-Hua Yen
Hsiao-Chin Hong
Po-Han Chao
Yu-Hsuan Wang
Po-Yu Chen
Shi-Xin Nian
Yu-Ru Chen
Li-Ying Liou
Yu-Chen Liu
Hui-Mei Chen
Feng-Mao Lin
Yun-Ting Chang
Chih-Chiang Chen
Oscar K. Lee
Mechanical stretch induces hair regeneration through the alternative activation of macrophages
description Mechanical stimulation is known to affect cell proliferation, differentiation, and regeneration. Here, the authors demonstrate that stretching mouse skin recruits macrophages and polarizes them into M2 cells that facilitate hair regeneration through the release of growth factors, including HGF and IGF-1
format article
author Szu-Ying Chu
Chih-Hung Chou
Hsien-Da Huang
Meng-Hua Yen
Hsiao-Chin Hong
Po-Han Chao
Yu-Hsuan Wang
Po-Yu Chen
Shi-Xin Nian
Yu-Ru Chen
Li-Ying Liou
Yu-Chen Liu
Hui-Mei Chen
Feng-Mao Lin
Yun-Ting Chang
Chih-Chiang Chen
Oscar K. Lee
author_facet Szu-Ying Chu
Chih-Hung Chou
Hsien-Da Huang
Meng-Hua Yen
Hsiao-Chin Hong
Po-Han Chao
Yu-Hsuan Wang
Po-Yu Chen
Shi-Xin Nian
Yu-Ru Chen
Li-Ying Liou
Yu-Chen Liu
Hui-Mei Chen
Feng-Mao Lin
Yun-Ting Chang
Chih-Chiang Chen
Oscar K. Lee
author_sort Szu-Ying Chu
title Mechanical stretch induces hair regeneration through the alternative activation of macrophages
title_short Mechanical stretch induces hair regeneration through the alternative activation of macrophages
title_full Mechanical stretch induces hair regeneration through the alternative activation of macrophages
title_fullStr Mechanical stretch induces hair regeneration through the alternative activation of macrophages
title_full_unstemmed Mechanical stretch induces hair regeneration through the alternative activation of macrophages
title_sort mechanical stretch induces hair regeneration through the alternative activation of macrophages
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/8566efb334e94d97a598b8573cfbba21
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