| Literature DB >> 30958604 |
Yong Zhu1, Hai-Tao Long2, Lei Zeng2, Yi-Fu Tang2, Rui-Bo Zhao2, Zhang-Yuan Lin2, Shu-Shan Zhao2, Liang Cheng1.
Abstract
Heterotopic ossification (HO) is a common disturbing complication of intra-articular fractures. Its prevention and treatment are still difficult as its pathogenesis is unclear. It was reported that PDGFRα+ muscle cells in skeletal muscle may participate in the formation of HO; however, the specific mechanism is still unknown. This study investigated the function of miR-19b-3p in osteogenic differentiation of PDGFRα+ muscle cells. MiR-19b-3p was upregulated during PDGFRα+ muscle cell osteogenic differentiation. The exogenous expression of miR-19b-3p led to an increase in osteogenic marker gene transcription and translation during the osteogenic differentiation of PDGFRα+ muscle cells. Furthermore, both alkaline phosphatase and alizarin red staining increased in miR-19b-3p mimic transfected cells. Over-expression of miR-19b-3p led to the down-regulation of gene of phosphate and tension homology deleted on chromosome ten (PTEN). Additionally, the dual luciferase reporter assay demonstrated that PTEN was a direct target of miR-19b-3p. The increase of osteocalcin, osteopontin, and Runt-related transcription factor 2 protein levels induced by ectopic miR-19b-3p expression could be partially reversed by PTEN over-expression. In conclusion, our results suggested that miR-19b-3p may be a promising target in inhibiting PDGFRα+ muscle cell osteogenic differentiation and treatment of HO.Entities:
Keywords: PDGFRα+ muscle cells; PTEN; heterotopic ossification; miR-19b-3p; osteogenesis
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Year: 2019 PMID: 30958604 DOI: 10.1002/cbin.11133
Source DB: PubMed Journal: Cell Biol Int ISSN: 1065-6995 Impact factor: 3.612