首页> 中文期刊> 《临床医学工程》 >Micro-RNAs Regulate Metabolic Syndrome-induced Senescence in Adipose Tissue-derived Mesenchymal Stem Cells of through P16/MAPK Pathway

Micro-RNAs Regulate Metabolic Syndrome-induced Senescence in Adipose Tissue-derived Mesenchymal Stem Cells of through P16/MAPK Pathway

         

摘要

Background Mesenchymal stem cells(MSC)constitute an important repair system,but may be impaired by exposure to cardiovascular risk factors.Consequently,adipose tissue-derived MSCs from pigs with the metabolic syndrome(Met S)show decreased vitality.A growing number of micro RNAs(mi RNAs)are recognized as key modulators of senescence,but their role in regulating senescence in MSC in Mets is unclear.We tested the hypothesis that Met S upregulates in MSC expression of mi RNAs that can serve as post-transcriptional regulators of senescence-associated(SA)genes.Methods MSCs were collected from swine abdominal adipose tissue after 16 weeks of Lean or Obese diet(n=6 each).Next-generation mi RNA sequencing(mi RNA-seq)was performed to identify mi RNAs up-or down-regulated in Met S-MSC compare to Lean-MSCs.Functional pathway analysis of SA genes targeted by mi RNAs was performed using gene ontology analysis.MSC senescence was evaluated by p16 and p21 immunoreactivity,H2AX protein expression,and SA-beta-Galactosidase activity.In addition,gene expression of p16,p21,MAPK3,and MAPK14 was studied after inhibition of SA-mi R-27b.Results Senescence biomarkers were significantly elevated in Met S MSC.We found the 7 upregulated mi RNAs,including mi R-27b,and 3 downregulated mi RNAs in Met S-MSCs,which regulate 35 SA genes,particularly MAPK signaling.Inhibition of mi R-27b in cultured MSC downregulated p16 and MARP3 genes.Conclusions Met S modulate MSC expression of SA-mi RNAs that may play the role in modulating their senescence,and the p16 pathway in Met S-MSCs senescence is the primary pathway.

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