Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes

Patients with diabetes often have delayed wound healing, associated with excessive inflammation. Here the authors report that REG3A inhibits TLR3-driven inflammation in skin wounds, and show that REG3A is reduced in models of diabetes, which exacerbates inflammation in diabetic wounds.

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Autores principales: Yelin Wu, Yanchun Quan, Yuanqi Liu, Keiwei Liu, Hongquan Li, Ziwei Jiang, Tian Zhang, Hu Lei, Katherine A. Radek, Dongqing Li, Zhenhua Wang, Jilong Lu, Wang Wang, Shizhao Ji, Zhaofan Xia, Yuping Lai
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/db4113e335cb482b929e01312771ae8b
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spelling oai:doaj.org-article:db4113e335cb482b929e01312771ae8b2021-12-02T16:57:05ZHyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes10.1038/ncomms133932041-1723https://doaj.org/article/db4113e335cb482b929e01312771ae8b2016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13393https://doaj.org/toc/2041-1723Patients with diabetes often have delayed wound healing, associated with excessive inflammation. Here the authors report that REG3A inhibits TLR3-driven inflammation in skin wounds, and show that REG3A is reduced in models of diabetes, which exacerbates inflammation in diabetic wounds.Yelin WuYanchun QuanYuanqi LiuKeiwei LiuHongquan LiZiwei JiangTian ZhangHu LeiKatherine A. RadekDongqing LiZhenhua WangJilong LuWang WangShizhao JiZhaofan XiaYuping LaiNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yelin Wu
Yanchun Quan
Yuanqi Liu
Keiwei Liu
Hongquan Li
Ziwei Jiang
Tian Zhang
Hu Lei
Katherine A. Radek
Dongqing Li
Zhenhua Wang
Jilong Lu
Wang Wang
Shizhao Ji
Zhaofan Xia
Yuping Lai
Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
description Patients with diabetes often have delayed wound healing, associated with excessive inflammation. Here the authors report that REG3A inhibits TLR3-driven inflammation in skin wounds, and show that REG3A is reduced in models of diabetes, which exacerbates inflammation in diabetic wounds.
format article
author Yelin Wu
Yanchun Quan
Yuanqi Liu
Keiwei Liu
Hongquan Li
Ziwei Jiang
Tian Zhang
Hu Lei
Katherine A. Radek
Dongqing Li
Zhenhua Wang
Jilong Lu
Wang Wang
Shizhao Ji
Zhaofan Xia
Yuping Lai
author_facet Yelin Wu
Yanchun Quan
Yuanqi Liu
Keiwei Liu
Hongquan Li
Ziwei Jiang
Tian Zhang
Hu Lei
Katherine A. Radek
Dongqing Li
Zhenhua Wang
Jilong Lu
Wang Wang
Shizhao Ji
Zhaofan Xia
Yuping Lai
author_sort Yelin Wu
title Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
title_short Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
title_full Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
title_fullStr Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
title_full_unstemmed Hyperglycaemia inhibits REG3A expression to exacerbate TLR3-mediated skin inflammation in diabetes
title_sort hyperglycaemia inhibits reg3a expression to exacerbate tlr3-mediated skin inflammation in diabetes
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/db4113e335cb482b929e01312771ae8b
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