Cargando…

Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway

Adipose‐derived mesenchymal stem cells (ASCs) are multipotent stromal cells that possess considerable therapeutic potential for tissue remodeling. However, their protective mechanism in critical limb ischemia has not been fully defined. After the occlusion of blood vessels, hypoxia becomes a promine...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Junchao, Qiu, Peng, Qin, Jinbao, Wu, Xiaoyu, Wang, Xin, Yang, Xinrui, Li, Bo, Zhang, Wenjie, Ye, Kaichuang, Peng, Zhiyou, Lu, Xinwu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7590195/
https://www.ncbi.nlm.nih.gov/pubmed/32627897
http://dx.doi.org/10.1002/stem.3250
_version_ 1783600752076259328
author Liu, Junchao
Qiu, Peng
Qin, Jinbao
Wu, Xiaoyu
Wang, Xin
Yang, Xinrui
Li, Bo
Zhang, Wenjie
Ye, Kaichuang
Peng, Zhiyou
Lu, Xinwu
author_facet Liu, Junchao
Qiu, Peng
Qin, Jinbao
Wu, Xiaoyu
Wang, Xin
Yang, Xinrui
Li, Bo
Zhang, Wenjie
Ye, Kaichuang
Peng, Zhiyou
Lu, Xinwu
author_sort Liu, Junchao
collection PubMed
description Adipose‐derived mesenchymal stem cells (ASCs) are multipotent stromal cells that possess considerable therapeutic potential for tissue remodeling. However, their protective mechanism in critical limb ischemia has not been fully defined. After the occlusion of blood vessels, hypoxia becomes a prominent feature of the ischemic limb. This study investigated the immunomodulatory effect of ASCs on ischemic muscle repair and explored the specific mechanism. We found that the ability of RAW264.7 cells to migrate was impaired in hypoxia, whereas coculturing with ASCs could enhance the migration capacity. In addition, under hypoxic conditions, the paracrine effect of ASCs was enhanced and ASCs could induce RAW264.7 macrophages toward the anti‐inflammatory M2 phenotype. We further demonstrated that ASCs‐derived interleukin 10 (IL‐10), mediated by hypoxia inducible factor‐1α (HIF‐1α), played a crucial role in the induction of M2 macrophages by activating the signal transducer and activator of transcription 3 (STAT3)/Arginase (Arg‐1) pathway. Our in vivo experiments revealed that transplanted ASCs exhibited an immunomodulatory effect by recruiting macrophages to ischemic muscle and increasing the density of M2 macrophages. The transplantation of ASCs into ischemic limbs induced increased blood flow reperfusion and limb salvage rate, whereas the depletion of tissue macrophages or transplanting HIF‐1α‐silenced ASCs inhibited the therapeutic effect. These findings elucidated the critical role of macrophages in ASCs‐mediated ischemic muscle repair and proved that allogeneic ASCs could exert the protective effect by enhancing the recruitment of macrophages and inducing macrophages toward M2 phenotype through HIF‐1α/IL‐10 pathway.
format Online
Article
Text
id pubmed-7590195
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-75901952020-10-30 Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway Liu, Junchao Qiu, Peng Qin, Jinbao Wu, Xiaoyu Wang, Xin Yang, Xinrui Li, Bo Zhang, Wenjie Ye, Kaichuang Peng, Zhiyou Lu, Xinwu Stem Cells Regenerative Medicine Adipose‐derived mesenchymal stem cells (ASCs) are multipotent stromal cells that possess considerable therapeutic potential for tissue remodeling. However, their protective mechanism in critical limb ischemia has not been fully defined. After the occlusion of blood vessels, hypoxia becomes a prominent feature of the ischemic limb. This study investigated the immunomodulatory effect of ASCs on ischemic muscle repair and explored the specific mechanism. We found that the ability of RAW264.7 cells to migrate was impaired in hypoxia, whereas coculturing with ASCs could enhance the migration capacity. In addition, under hypoxic conditions, the paracrine effect of ASCs was enhanced and ASCs could induce RAW264.7 macrophages toward the anti‐inflammatory M2 phenotype. We further demonstrated that ASCs‐derived interleukin 10 (IL‐10), mediated by hypoxia inducible factor‐1α (HIF‐1α), played a crucial role in the induction of M2 macrophages by activating the signal transducer and activator of transcription 3 (STAT3)/Arginase (Arg‐1) pathway. Our in vivo experiments revealed that transplanted ASCs exhibited an immunomodulatory effect by recruiting macrophages to ischemic muscle and increasing the density of M2 macrophages. The transplantation of ASCs into ischemic limbs induced increased blood flow reperfusion and limb salvage rate, whereas the depletion of tissue macrophages or transplanting HIF‐1α‐silenced ASCs inhibited the therapeutic effect. These findings elucidated the critical role of macrophages in ASCs‐mediated ischemic muscle repair and proved that allogeneic ASCs could exert the protective effect by enhancing the recruitment of macrophages and inducing macrophages toward M2 phenotype through HIF‐1α/IL‐10 pathway. John Wiley & Sons, Inc. 2020-08-04 2020-10-01 /pmc/articles/PMC7590195/ /pubmed/32627897 http://dx.doi.org/10.1002/stem.3250 Text en ©2020 The Authors. stem cells published by Wiley Periodicals LLC on behalf of AlphaMed Press 2020 This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Regenerative Medicine
Liu, Junchao
Qiu, Peng
Qin, Jinbao
Wu, Xiaoyu
Wang, Xin
Yang, Xinrui
Li, Bo
Zhang, Wenjie
Ye, Kaichuang
Peng, Zhiyou
Lu, Xinwu
Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title_full Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title_fullStr Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title_full_unstemmed Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title_short Allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing M2 macrophage polarization via the HIF‐1α/IL‐10 pathway
title_sort allogeneic adipose‐derived stem cells promote ischemic muscle repair by inducing m2 macrophage polarization via the hif‐1α/il‐10 pathway
topic Regenerative Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7590195/
https://www.ncbi.nlm.nih.gov/pubmed/32627897
http://dx.doi.org/10.1002/stem.3250
work_keys_str_mv AT liujunchao allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT qiupeng allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT qinjinbao allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT wuxiaoyu allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT wangxin allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT yangxinrui allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT libo allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT zhangwenjie allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT yekaichuang allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT pengzhiyou allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway
AT luxinwu allogeneicadiposederivedstemcellspromoteischemicmusclerepairbyinducingm2macrophagepolarizationviathehif1ail10pathway