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High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation

One of the major symptoms of diabetes mellitus (DM) is delayed wound healing, which affects large populations of patients worldwide. However, the underlying mechanism behind this illness remains elusive. Skin wound healing requires a series of coordinated processes, including fibroblast cell prolife...

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Autores principales: Xuan, Yuan Hu, Huang, Bin Bin, Tian, Hai Shan, Chi, Li Sha, Duan, Yuan Meng, Wang, Xi, Zhu, Zhong Xin, Cai, Wan Hui, Zhu, Yu Ting, Wei, Tie Min, Ye, Hong Bo, Cong, Wei Tao, Jin, Li Tai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171528/
https://www.ncbi.nlm.nih.gov/pubmed/25244316
http://dx.doi.org/10.1371/journal.pone.0108182
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author Xuan, Yuan Hu
Huang, Bin Bin
Tian, Hai Shan
Chi, Li Sha
Duan, Yuan Meng
Wang, Xi
Zhu, Zhong Xin
Cai, Wan Hui
Zhu, Yu Ting
Wei, Tie Min
Ye, Hong Bo
Cong, Wei Tao
Jin, Li Tai
author_facet Xuan, Yuan Hu
Huang, Bin Bin
Tian, Hai Shan
Chi, Li Sha
Duan, Yuan Meng
Wang, Xi
Zhu, Zhong Xin
Cai, Wan Hui
Zhu, Yu Ting
Wei, Tie Min
Ye, Hong Bo
Cong, Wei Tao
Jin, Li Tai
author_sort Xuan, Yuan Hu
collection PubMed
description One of the major symptoms of diabetes mellitus (DM) is delayed wound healing, which affects large populations of patients worldwide. However, the underlying mechanism behind this illness remains elusive. Skin wound healing requires a series of coordinated processes, including fibroblast cell proliferation and migration. Here, we simulate DM by application of high glucose (HG) in human foreskin primary fibroblast cells to analyze the molecular mechanism of DM effects on wound healing. The results indicate that HG, at a concentration of 30 mM, delay cell migration, but not cell proliferation. bFGF is known to promote cell migration that partially rescues HG effects on cell migration. Molecular and cell biology studies demonstrated that HG enhanced ROS production and repressed JNK phosphorylation, but did not affect Rac1 activity. JNK and Rac1 activation were known to be important for bFGF regulated cell migration. To further confirm DM effects on skin repair, a type 1 diabetic rat model was established, and we observed the efficacy of bFGF on both normal and diabetic rat skin repair. Furthermore, proteomic studies identified an increase of Annexin A2 protein nitration in HG-stressed fibroblasts and the nitration was protected by activation of bFGF signaling. Treatment with FGFR1 and JNK inhibitors delayed cell migration and increased Annexin A2 nitration levels, indicating that Annexin A2 nitration is modulated by bFGF signaling via activation of JNK. Together with these results, our data suggests that the HG-mediated delay of cell migration is linked to the inhibition of bFGF signaling, specifically through JNK suppression.
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spelling pubmed-41715282014-09-25 High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation Xuan, Yuan Hu Huang, Bin Bin Tian, Hai Shan Chi, Li Sha Duan, Yuan Meng Wang, Xi Zhu, Zhong Xin Cai, Wan Hui Zhu, Yu Ting Wei, Tie Min Ye, Hong Bo Cong, Wei Tao Jin, Li Tai PLoS One Research Article One of the major symptoms of diabetes mellitus (DM) is delayed wound healing, which affects large populations of patients worldwide. However, the underlying mechanism behind this illness remains elusive. Skin wound healing requires a series of coordinated processes, including fibroblast cell proliferation and migration. Here, we simulate DM by application of high glucose (HG) in human foreskin primary fibroblast cells to analyze the molecular mechanism of DM effects on wound healing. The results indicate that HG, at a concentration of 30 mM, delay cell migration, but not cell proliferation. bFGF is known to promote cell migration that partially rescues HG effects on cell migration. Molecular and cell biology studies demonstrated that HG enhanced ROS production and repressed JNK phosphorylation, but did not affect Rac1 activity. JNK and Rac1 activation were known to be important for bFGF regulated cell migration. To further confirm DM effects on skin repair, a type 1 diabetic rat model was established, and we observed the efficacy of bFGF on both normal and diabetic rat skin repair. Furthermore, proteomic studies identified an increase of Annexin A2 protein nitration in HG-stressed fibroblasts and the nitration was protected by activation of bFGF signaling. Treatment with FGFR1 and JNK inhibitors delayed cell migration and increased Annexin A2 nitration levels, indicating that Annexin A2 nitration is modulated by bFGF signaling via activation of JNK. Together with these results, our data suggests that the HG-mediated delay of cell migration is linked to the inhibition of bFGF signaling, specifically through JNK suppression. Public Library of Science 2014-09-22 /pmc/articles/PMC4171528/ /pubmed/25244316 http://dx.doi.org/10.1371/journal.pone.0108182 Text en © 2014 Xuan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xuan, Yuan Hu
Huang, Bin Bin
Tian, Hai Shan
Chi, Li Sha
Duan, Yuan Meng
Wang, Xi
Zhu, Zhong Xin
Cai, Wan Hui
Zhu, Yu Ting
Wei, Tie Min
Ye, Hong Bo
Cong, Wei Tao
Jin, Li Tai
High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title_full High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title_fullStr High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title_full_unstemmed High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title_short High-Glucose Inhibits Human Fibroblast Cell Migration in Wound Healing via Repression of bFGF-Regulating JNK Phosphorylation
title_sort high-glucose inhibits human fibroblast cell migration in wound healing via repression of bfgf-regulating jnk phosphorylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171528/
https://www.ncbi.nlm.nih.gov/pubmed/25244316
http://dx.doi.org/10.1371/journal.pone.0108182
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