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  5. α7 integrin expressing human fetal myogenic progenitors have stem cell-like properties and are capable of osteogenic differentiation
 
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α7 integrin expressing human fetal myogenic progenitors have stem cell-like properties and are capable of osteogenic differentiation

Journal
Experimental Cell Research
Journal Volume
312
Journal Issue
20
Pages
4162-4180
Date Issued
2006
Author(s)
Ozeki N.
Lim M.
JANE CHUNG-CHEN YAO  
Tolar M.
Kramer R.H.
DOI
10.1016/j.yexcr.2006.09.017
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-33845658566&doi=10.1016%2fj.yexcr.2006.09.017&partnerID=40&md5=a3a98feb16c82ad33a6a0444e7cf4090
https://scholars.lib.ntu.edu.tw/handle/123456789/516816
Abstract
During muscle development, precursor cells fuse to form myofibers. Following injury in adult muscle, quiescent satellite cells become activated to regenerate muscle in a fashion similar to fetal development. Recent studies indicate that murine skeletal myoblasts can differentiate along multiple cell lineages including the osteoblastic pathway. However, little is known about the multipotency of human myogenic cells. Here, we isolate myogenic precursor cells from human fetal and adult muscle by sorting for the laminin-binding alpha7 integrin and demonstrate their differentiation potential and alteration in adhesive behavior. The alpha7-positive human fetal progenitors were efficient at forming myotubes and a majority expressed known muscle markers including M-cadherin and c-Met, but were heterogeneous for desmin and MyoD expression. To test their pluripotent differentiation potential, enriched populations of alpha7-positive fetal cells were subjected to inductive protocols. Although the myoblasts appeared committed to a muscle lineage, they could be converted to differentiate along the osteoblastic pathway in the presence of BMP-2. Interestingly, osteogenic cells showed altered adhesion and migratory activity that reflected growth factor-induced changes in integrin expression. These results indicate that alpha7-expressing fetal myoblasts are capable of differentiation to osteoblast lineage with a coordinated switch in integrin profiles and may represent a mechanism that promotes homing and recruitment of myogenic stem cells for tissue repair and remodeling.
Type
journal article

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