| Literature DB >> 26975470 |
Ester Sara Di Filippo1, Rosa Mancinelli2, Tiziana Pietrangelo3, Rita Maria Laura La Rovere4, Mattia Quattrocelli5, Maurilio Sampaolesi6, Stefania Fulle7.
Abstract
Satellite cells that reside on the myofibre surface are crucial for the muscle homeostasis and regeneration. Aging goes along with a less effective regeneration of skeletal muscle tissue mainly due to the decreased myogenic capability of satellite cells. This phenomenon impedes proper maintenance and contributes to the age-associated decline in muscle mass, known as sarcopenia. The myogenic potential impairment does not depend on a reduced myogenic cell number, but mainly on their difficulty to complete a differentiation program. The unbalanced production of reactive oxygen species in elderly people could be responsible for skeletal muscle impairments. microRNAs are conserved post-transcriptional regulators implicated in numerous biological processes including adult myogenesis. Here, we measure the ROS level and analyze myomiR (miR-1, miR-133b and miR-206) expression in human myogenic precursors obtained from Vastus lateralis of elderly and young subjects to provide the molecular signature responsible for the differentiation impairment of elderly activated satellite cells.Entities:
Keywords: Aging; Human satellite cells; ROS; Sarcopenia; myomiRNAs
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Year: 2016 PMID: 26975470 DOI: 10.1016/j.bbrc.2016.03.030
Source DB: PubMed Journal: Biochem Biophys Res Commun ISSN: 0006-291X Impact factor: 3.575