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Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts

PURPOSE: To investigate the Shikonin (SHI) induce autophagy of hypertrophic scar-derived fibroblasts (HSFs) and the mechanism of which in repairing hypertrophic scar. METHODS: This study showed that SHI induced autophagy from HSFs and repaired skin scars through the AMPK/mTOR pathway. Alamar Blue an...

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Autores principales: Zhang, Qing, Wang, Maomao, Deng, Xingwang, Zhao, Dan, Zhao, Fang, Xiao, Jinli, Ma, Jiaxiang, Pan, Xiaoliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira para o Desenvolvimento da Pesquisa em Cirurgia 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10592587/
https://www.ncbi.nlm.nih.gov/pubmed/37878984
http://dx.doi.org/10.1590/acb384623
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author Zhang, Qing
Wang, Maomao
Deng, Xingwang
Zhao, Dan
Zhao, Fang
Xiao, Jinli
Ma, Jiaxiang
Pan, Xiaoliang
author_facet Zhang, Qing
Wang, Maomao
Deng, Xingwang
Zhao, Dan
Zhao, Fang
Xiao, Jinli
Ma, Jiaxiang
Pan, Xiaoliang
author_sort Zhang, Qing
collection PubMed
description PURPOSE: To investigate the Shikonin (SHI) induce autophagy of hypertrophic scar-derived fibroblasts (HSFs) and the mechanism of which in repairing hypertrophic scar. METHODS: This study showed that SHI induced autophagy from HSFs and repaired skin scars through the AMPK/mTOR pathway. Alamar Blue and Sirius red were used to identify cell activity and collagen. Electron microscopy, label-free quantitative proteomic analysis, fluorescence and other methods were used to identify autophagy. The differences in the expression of autophagy and AMPK/mTOR pathway-related proteins after SHI treatment were quantitatively analyzed by Western blots. A quantitative real-time polymerase chain reaction assay was used to detect the expression of LC3, AMPK and ULK after adding chloroquine (CQ) autophagy inhibitor. RESULTS: After treatment with SHI for 24 hours, it was found that the viability of HSFs was significantly reduced, the protein expression of LC3-II/LC3-I and Beclin1 increased, while the protein expression of P62 decreased. The expression of phosphorylated AMPK increased and expression of phosphorylated mTOR decreased. After the use of CQ, the cell autophagy caused by SHI was blocked. The key genes LC3 and P62 were then reexamined by immunohistochemistry using a porcine full-thickness burn hypertrophic scar model, and the results verified that SHI could induce autophagy in vivo. CONCLUSIONS: These findings suggested that SHI promoted autophagy of HSFs cells, and the potential mechanism may be related to the AMPK/mTOR signal pathway, which provided new insights for the treatment of hypertrophic scars.
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spelling pubmed-105925872023-10-24 Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts Zhang, Qing Wang, Maomao Deng, Xingwang Zhao, Dan Zhao, Fang Xiao, Jinli Ma, Jiaxiang Pan, Xiaoliang Acta Cir Bras Original Article PURPOSE: To investigate the Shikonin (SHI) induce autophagy of hypertrophic scar-derived fibroblasts (HSFs) and the mechanism of which in repairing hypertrophic scar. METHODS: This study showed that SHI induced autophagy from HSFs and repaired skin scars through the AMPK/mTOR pathway. Alamar Blue and Sirius red were used to identify cell activity and collagen. Electron microscopy, label-free quantitative proteomic analysis, fluorescence and other methods were used to identify autophagy. The differences in the expression of autophagy and AMPK/mTOR pathway-related proteins after SHI treatment were quantitatively analyzed by Western blots. A quantitative real-time polymerase chain reaction assay was used to detect the expression of LC3, AMPK and ULK after adding chloroquine (CQ) autophagy inhibitor. RESULTS: After treatment with SHI for 24 hours, it was found that the viability of HSFs was significantly reduced, the protein expression of LC3-II/LC3-I and Beclin1 increased, while the protein expression of P62 decreased. The expression of phosphorylated AMPK increased and expression of phosphorylated mTOR decreased. After the use of CQ, the cell autophagy caused by SHI was blocked. The key genes LC3 and P62 were then reexamined by immunohistochemistry using a porcine full-thickness burn hypertrophic scar model, and the results verified that SHI could induce autophagy in vivo. CONCLUSIONS: These findings suggested that SHI promoted autophagy of HSFs cells, and the potential mechanism may be related to the AMPK/mTOR signal pathway, which provided new insights for the treatment of hypertrophic scars. Sociedade Brasileira para o Desenvolvimento da Pesquisa em Cirurgia 2023-10-23 /pmc/articles/PMC10592587/ /pubmed/37878984 http://dx.doi.org/10.1590/acb384623 Text en https://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 work is properly cited.
spellingShingle Original Article
Zhang, Qing
Wang, Maomao
Deng, Xingwang
Zhao, Dan
Zhao, Fang
Xiao, Jinli
Ma, Jiaxiang
Pan, Xiaoliang
Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title_full Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title_fullStr Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title_full_unstemmed Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title_short Shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
title_sort shikonin promotes hypertrophic scar repair by autophagy of hypertrophic scar-derived fibroblasts
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10592587/
https://www.ncbi.nlm.nih.gov/pubmed/37878984
http://dx.doi.org/10.1590/acb384623
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