Cargando…

miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction

Aging impairs the functions of human mesenchymal stem cells (MSCs), thereby severely reducing their beneficial effects on myocardial infarction (MI). MicroRNAs (miRNAs) play crucial roles in regulating the senescence of MSCs; however, the underlying mechanisms remain unclear. Here, we investigated t...

Descripción completa

Detalles Bibliográficos
Autores principales: Hong, Yimei, He, Haiwei, Jiang, Guojun, Zhang, Hao, Tao, Wuyuan, Ding, Yue, Yuan, Dongsheng, Liu, Jing, Fan, Huimin, Lin, Fang, Liang, Xiaoting, Li, Xin, Zhang, Yuelin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7189985/
https://www.ncbi.nlm.nih.gov/pubmed/32196916
http://dx.doi.org/10.1111/acel.13128
_version_ 1783527601820663808
author Hong, Yimei
He, Haiwei
Jiang, Guojun
Zhang, Hao
Tao, Wuyuan
Ding, Yue
Yuan, Dongsheng
Liu, Jing
Fan, Huimin
Lin, Fang
Liang, Xiaoting
Li, Xin
Zhang, Yuelin
author_facet Hong, Yimei
He, Haiwei
Jiang, Guojun
Zhang, Hao
Tao, Wuyuan
Ding, Yue
Yuan, Dongsheng
Liu, Jing
Fan, Huimin
Lin, Fang
Liang, Xiaoting
Li, Xin
Zhang, Yuelin
author_sort Hong, Yimei
collection PubMed
description Aging impairs the functions of human mesenchymal stem cells (MSCs), thereby severely reducing their beneficial effects on myocardial infarction (MI). MicroRNAs (miRNAs) play crucial roles in regulating the senescence of MSCs; however, the underlying mechanisms remain unclear. Here, we investigated the significance of miR‐155‐5p in regulating MSC senescence and whether inhibition of miR‐155‐5p could rejuvenate aged MSCs (AMSCs) to enhance their therapeutic efficacy for MI. Young MSCs (YMSCs) and AMSCs were isolated from young and aged donors, respectively. The cellular senescence of MSCs was evaluated by senescence‐associated β‐galactosidase (SA‐β‐gal) staining. Compared with YMSCs, AMSCs exhibited increased cellular senescence as evidenced by increased SA‐β‐gal activity and decreased proliferative capacity and paracrine effects. The expression of miR‐155‐5p was much higher in both serum and MSCs from aged donors than young donors. Upregulation of miR‐155‐5p in YMSCs led to increased cellular senescence, whereas downregulation of miR‐155‐5p decreased AMSC senescence. Mechanistically, miR‐155‐5p inhibited mitochondrial fission and increased mitochondrial fusion in MSCs via the AMPK signaling pathway, thereby resulting in cellular senescence by repressing the expression of Cab39. These effects were partially reversed by treatment with AMPK activator or mitofusin2‐specific siRNA (Mfn2‐siRNA). By enhancing angiogenesis and promoting cell survival, transplantation of anti‐miR‐155‐5p‐AMSCs led to improved cardiac function in an aged mouse model of MI compared with transplantation of AMSCs. In summary, our study shows that miR‐155‐5p mediates MSC senescence by regulating the Cab39/AMPK signaling pathway and miR‐155‐5p is a novel target to rejuvenate AMSCs and enhance their cardioprotective effects.
format Online
Article
Text
id pubmed-7189985
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-71899852020-04-30 miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction Hong, Yimei He, Haiwei Jiang, Guojun Zhang, Hao Tao, Wuyuan Ding, Yue Yuan, Dongsheng Liu, Jing Fan, Huimin Lin, Fang Liang, Xiaoting Li, Xin Zhang, Yuelin Aging Cell Original Articles Aging impairs the functions of human mesenchymal stem cells (MSCs), thereby severely reducing their beneficial effects on myocardial infarction (MI). MicroRNAs (miRNAs) play crucial roles in regulating the senescence of MSCs; however, the underlying mechanisms remain unclear. Here, we investigated the significance of miR‐155‐5p in regulating MSC senescence and whether inhibition of miR‐155‐5p could rejuvenate aged MSCs (AMSCs) to enhance their therapeutic efficacy for MI. Young MSCs (YMSCs) and AMSCs were isolated from young and aged donors, respectively. The cellular senescence of MSCs was evaluated by senescence‐associated β‐galactosidase (SA‐β‐gal) staining. Compared with YMSCs, AMSCs exhibited increased cellular senescence as evidenced by increased SA‐β‐gal activity and decreased proliferative capacity and paracrine effects. The expression of miR‐155‐5p was much higher in both serum and MSCs from aged donors than young donors. Upregulation of miR‐155‐5p in YMSCs led to increased cellular senescence, whereas downregulation of miR‐155‐5p decreased AMSC senescence. Mechanistically, miR‐155‐5p inhibited mitochondrial fission and increased mitochondrial fusion in MSCs via the AMPK signaling pathway, thereby resulting in cellular senescence by repressing the expression of Cab39. These effects were partially reversed by treatment with AMPK activator or mitofusin2‐specific siRNA (Mfn2‐siRNA). By enhancing angiogenesis and promoting cell survival, transplantation of anti‐miR‐155‐5p‐AMSCs led to improved cardiac function in an aged mouse model of MI compared with transplantation of AMSCs. In summary, our study shows that miR‐155‐5p mediates MSC senescence by regulating the Cab39/AMPK signaling pathway and miR‐155‐5p is a novel target to rejuvenate AMSCs and enhance their cardioprotective effects. John Wiley and Sons Inc. 2020-03-20 2020-04 /pmc/articles/PMC7189985/ /pubmed/32196916 http://dx.doi.org/10.1111/acel.13128 Text en © 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Hong, Yimei
He, Haiwei
Jiang, Guojun
Zhang, Hao
Tao, Wuyuan
Ding, Yue
Yuan, Dongsheng
Liu, Jing
Fan, Huimin
Lin, Fang
Liang, Xiaoting
Li, Xin
Zhang, Yuelin
miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title_full miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title_fullStr miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title_full_unstemmed miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title_short miR‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
title_sort mir‐155‐5p inhibition rejuvenates aged mesenchymal stem cells and enhances cardioprotection following infarction
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7189985/
https://www.ncbi.nlm.nih.gov/pubmed/32196916
http://dx.doi.org/10.1111/acel.13128
work_keys_str_mv AT hongyimei mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT hehaiwei mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT jiangguojun mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT zhanghao mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT taowuyuan mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT dingyue mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT yuandongsheng mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT liujing mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT fanhuimin mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT linfang mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT liangxiaoting mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT lixin mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction
AT zhangyuelin mir1555pinhibitionrejuvenatesagedmesenchymalstemcellsandenhancescardioprotectionfollowinginfarction