AI Article Synopsis

  • Endothelial dysfunction and inflammation lead to changes in vascular smooth muscle cells (SMCs), contributing to arterial blockages; this study explores the underlying mechanisms.
  • Bulk sequencing of RNA in a rodent model identified six overexpressed miRNAs in injured arteries, particularly four (miR-130b-5p, miR-132-3p, miR-370-3p, and miR-410-3p) linked to SMC proliferation and inflammation.
  • Targeting and inhibiting miR-132-3p and miR-370-3p can prevent excessive cell growth, with miR-370-3p influencing SMC phenotype by regulating BMP-7, a key gene in this process.

Article Abstract

Endothelial dysfunction and inflammatory immune response trigger dedifferentiation of vascular smooth muscle cells (SMCs) from contractile to synthetic phenotype and initiate arterial occlusion. However, the complex vascular remodeling process playing roles in arterial occlusion initiation is largely unknown. We performed bulk sequencing of small and messenger RNAs in a rodent arterial injury model. Bioinformatic data analyses reveal that six miRNAs are overexpressed in injured rat carotids as well as synthetic-type human vascular SMCs. In vitro cell-based assays show that four miRNAs (miR-130b-5p, miR-132-3p, miR-370-3p, and miR-410-3p) distinctly regulate the proliferation of and monocyte adhesion to the vascular SMCs. Individual inhibition of the four selected miRNAs strongly prevents the neointimal hyperplasia in the injured rat carotid arteries. Mechanistically, miR-132-3p and miR-370-3p direct the cell cycle progression, triggering SMC proliferation. Gene ontology analysis of mRNA sequencing data consistently reveal that the miRNA targets include gene clusters that direct proliferation, differentiation, and inflammation. Notably, bone morphogenic protein (BMP)-7 is a prominent target gene of miR-370-3p, and it regulates vascular SMC proliferation in cellular and animal models. Overall, this study first reports that the miR-370-3p/BMP-7 axis determines the vascular SMC phenotype in both rodent and human systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9918535PMC
http://dx.doi.org/10.1038/s41598-022-26711-zDOI Listing

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Article Synopsis
  • Endothelial dysfunction and inflammation lead to changes in vascular smooth muscle cells (SMCs), contributing to arterial blockages; this study explores the underlying mechanisms.
  • Bulk sequencing of RNA in a rodent model identified six overexpressed miRNAs in injured arteries, particularly four (miR-130b-5p, miR-132-3p, miR-370-3p, and miR-410-3p) linked to SMC proliferation and inflammation.
  • Targeting and inhibiting miR-132-3p and miR-370-3p can prevent excessive cell growth, with miR-370-3p influencing SMC phenotype by regulating BMP-7, a key gene in this process.
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