Matches in SemOpenAlex for { <https://semopenalex.org/work/W3124342352> ?p ?o ?g. }
- W3124342352 abstract "As the most important component of the vascular wall, vascular smooth muscle cells (VSMCs) participate in the pathological process by phenotype transformation or differentiation from stem/progenitor cells. The main purpose of this study was to reveal the role and related molecular mechanism of microRNA-30c-5p (miR-30c-5p) in VSMC differentiation from adventitial progenitor cells expressing stem cell antigen-1(Sca-1).In this study, we detected the expression of miR-30c-5p in human normal peripheral arteries and atherosclerotic arteries. In vitro, a stable differentiation model from adventitial Sca-1+ progenitor cells to VSMCs was established using transforming growth factor-β1 (TGF-β1) induction and the expression of miR-30c-5p during the process was observed. Then, we explored the effect of miR-30c-5p overexpression and inhibition on the differentiation from adventitial Sca-1+ progenitor cells to VSMCs. The target genes of miR-30c-5p were identified by protein chip and biological analyses and the expression of these genes in the differentiation process were detected. Further, the relationship between the target gene and miR-30c-5p and its effect on differentiation were evaluated. Finally, the co-transfection of miR-30c-5p inhibitor and small interfering RNA (siRNA) of the target gene was implemented to verify the functional target gene of miR-30c-5p during the differentiation from adventitial Sca-1+ progenitor cells to VSMCs, and the dual-luciferase reporter gene assay was performed to detect whether the mRNA 3'untranslated region (UTR) of the target gene is the direct binding site of miR-30c-5p.The expression of miR-30c-5p in the human atherosclerotic arteries was significantly lower than that in the normal arteries. During the differentiation from adventitial Sca-1+ progenitor cells to VSMCs, the expression of VSMC special markers including smooth muscle α-actin (SMαA), smooth muscle-22α (SM22α), smooth muscle myosin heavy chain (SMMHC), and h1-caponin increased accompanied with cell morphology changing from elliptic to fusiform. Meanwhile, the expression of miR-30c-5p decreased significantly. In functional experiments, overexpression of miR-30c-5p inhibited SMαA, SM22α, SMMHC, and h1-caponin at the mRNA and protein levels. In contrast, inhibition of miR-30c-5p promoted the expression of SMαA, SM22α, SMMHC, and h1-caponin. The target gene, osteoprotegerin (OPG), was predicted through protein chip and bioinformatics analyses. Overexpression of miR-30c-5p inhibited OPG expression while inhibition of miR-30c-5p had an opposite effect. Co-transfection experiments showed that low expression of OPG could weaken the promotion effect of miR-30c-5p inhibitor on the differentiation from adventitial Sca-1+ progenitor cells to VSMCs and the dual-luciferase reporter gene assay demonstrated that miR-30c-5p could target the mRNA 3'UTR of OPG directly.This study demonstrates that miR-30c-5p expression was significantly decreased in atherosclerotic arteries and miR-30c-5p inhibited VSMC differentiation from adventitial Sca-1+ progenitor cells through targeting OPG, which may provide a new target for the treatment of VSMCs-associated diseases." @default.
- W3124342352 created "2021-02-01" @default.
- W3124342352 creator A5007058419 @default.
- W3124342352 creator A5023874610 @default.
- W3124342352 creator A5025851882 @default.
- W3124342352 creator A5026065900 @default.
- W3124342352 creator A5026657023 @default.
- W3124342352 creator A5054375187 @default.
- W3124342352 creator A5063748960 @default.
- W3124342352 creator A5063968220 @default.
- W3124342352 creator A5080114976 @default.
- W3124342352 date "2021-01-19" @default.
- W3124342352 modified "2023-10-16" @default.
- W3124342352 title "MiR-30c-5p regulates adventitial progenitor cells differentiation to vascular smooth muscle cells through targeting OPG" @default.
- W3124342352 cites W1510237891 @default.
- W3124342352 cites W1526166370 @default.
- W3124342352 cites W1789237159 @default.
- W3124342352 cites W1982436843 @default.
- W3124342352 cites W1985658116 @default.
- W3124342352 cites W1992534094 @default.
- W3124342352 cites W2000647744 @default.
- W3124342352 cites W2030599500 @default.
- W3124342352 cites W2044586762 @default.
- W3124342352 cites W2064750119 @default.
- W3124342352 cites W2067224443 @default.
- W3124342352 cites W2084267670 @default.
- W3124342352 cites W2089196685 @default.
- W3124342352 cites W2089539878 @default.
- W3124342352 cites W2096811575 @default.
- W3124342352 cites W2102321386 @default.
- W3124342352 cites W2106528543 @default.
- W3124342352 cites W2107247243 @default.
- W3124342352 cites W2113270312 @default.
- W3124342352 cites W2117963070 @default.
- W3124342352 cites W2120156784 @default.
- W3124342352 cites W2121822802 @default.
- W3124342352 cites W2128455103 @default.
- W3124342352 cites W2129651548 @default.
- W3124342352 cites W2136864391 @default.
- W3124342352 cites W2148840893 @default.
- W3124342352 cites W2149125440 @default.
- W3124342352 cites W2156606731 @default.
- W3124342352 cites W2157253583 @default.
- W3124342352 cites W2190278821 @default.
- W3124342352 cites W2479004574 @default.
- W3124342352 cites W2529878187 @default.
- W3124342352 cites W2585077596 @default.
- W3124342352 cites W2586659364 @default.
- W3124342352 cites W2601866644 @default.
- W3124342352 cites W2739712241 @default.
- W3124342352 cites W2781033773 @default.
- W3124342352 cites W2783936933 @default.
- W3124342352 cites W2789857646 @default.
- W3124342352 cites W2791399656 @default.
- W3124342352 cites W2810788245 @default.
- W3124342352 cites W2887674524 @default.
- W3124342352 cites W2922143627 @default.
- W3124342352 cites W2954849440 @default.
- W3124342352 cites W2960960570 @default.
- W3124342352 cites W2989773854 @default.
- W3124342352 cites W3005073811 @default.
- W3124342352 cites W4378618906 @default.
- W3124342352 cites W3145571634 @default.
- W3124342352 doi "https://doi.org/10.1186/s13287-020-02127-2" @default.
- W3124342352 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7814722" @default.
- W3124342352 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33468212" @default.
- W3124342352 hasPublicationYear "2021" @default.
- W3124342352 type Work @default.
- W3124342352 sameAs 3124342352 @default.
- W3124342352 citedByCount "7" @default.
- W3124342352 countsByYear W31243423522022 @default.
- W3124342352 countsByYear W31243423522023 @default.
- W3124342352 crossrefType "journal-article" @default.
- W3124342352 hasAuthorship W3124342352A5007058419 @default.
- W3124342352 hasAuthorship W3124342352A5023874610 @default.
- W3124342352 hasAuthorship W3124342352A5025851882 @default.
- W3124342352 hasAuthorship W3124342352A5026065900 @default.
- W3124342352 hasAuthorship W3124342352A5026657023 @default.
- W3124342352 hasAuthorship W3124342352A5054375187 @default.
- W3124342352 hasAuthorship W3124342352A5063748960 @default.
- W3124342352 hasAuthorship W3124342352A5063968220 @default.
- W3124342352 hasAuthorship W3124342352A5080114976 @default.
- W3124342352 hasBestOaLocation W31243423521 @default.
- W3124342352 hasConcept C104317684 @default.
- W3124342352 hasConcept C134018914 @default.
- W3124342352 hasConcept C145059251 @default.
- W3124342352 hasConcept C148738053 @default.
- W3124342352 hasConcept C150194340 @default.
- W3124342352 hasConcept C153911025 @default.
- W3124342352 hasConcept C161733203 @default.
- W3124342352 hasConcept C201750760 @default.
- W3124342352 hasConcept C22615655 @default.
- W3124342352 hasConcept C2779395532 @default.
- W3124342352 hasConcept C28328180 @default.
- W3124342352 hasConcept C2992686903 @default.
- W3124342352 hasConcept C54009773 @default.
- W3124342352 hasConcept C54355233 @default.
- W3124342352 hasConcept C86803240 @default.
- W3124342352 hasConcept C95444343 @default.
- W3124342352 hasConceptScore W3124342352C104317684 @default.