Skip to main content
Passa alla visualizzazione normale.

ALICE CONIGLIARO

Mir-31-5p is a lipus-mechanosensitive microrna that targets hif-1α signaling and cytoskeletal proteins

  • Authors: Costa V.; Carina V.; Conigliaro A.; Raimondi L.; De Luca A.; Bellavia D.; Salamanna F.; Setti S.; Alessandro R.; Fini M.; Giavaresi G.
  • Publication year: 2019
  • Type: Articolo in rivista
  • OA Link: http://hdl.handle.net/10447/363287

Abstract

The roles of low-intensity pulsed ultrasound (LIPUS) and microRNAs (miRNAs) on hMSCs commitments have already been investigated; however, the effects of the application of their co-treatments in an in vitro cell model are still unknown. Our previous studies demonstrated that (i) LIPUS modulated hMSCs cytoskeletal organization and (ii) miRNA-675-5p have a role in HIF-1α signaling modulation during hMSCs osteoblast commitment. We investigated for the first time the role of LIPUS as promoter tool for miRNA expression. Thanks to bioinformatic analysis, we identified miR-31-5p as a LIPUS-induced miRNA and investigated its role through in vitro studies of gain and loss of function. Results highlighted that LIPUS stimulation induced a hypoxia adaptive cell response, which determines a reorganization of cell membrane and cytoskeleton proteins. MiR-31-5p gain and loss of function studies, demonstrated as miR-31-5p overexpression, were able to induce hypoxic and cytoskeletal responses. Moreover, the co-treatments LIPUS and miR-31-5p inhibitor abolished the hypoxic responses including angiogenesis and the expression of Rho family proteins. MiR-31-5p was identified as a LIPUS-mechanosensitive miRNAs and may be considered a new therapeutic option to promote or abolish hypoxic response and cytoskeletal organization on hMSCs during the bone regeneration process.