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  4. PEDF-derived peptide promotes skeletal muscle regeneration through its mitogenic effect on muscle progenitor cells
 
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PEDF-derived peptide promotes skeletal muscle regeneration through its mitogenic effect on muscle progenitor cells

Journal
American Journal of Physiology - Cell Physiology
Journal Volume
309
Journal Issue
3
Pages
C159-C168
Date Issued
2015
Author(s)
Ho T.-C.
Chiang Y.-P.
Chuang C.-K.
SHOW-LI CHEN  
Hsieh J.-W.
Lan Y.-W.
Tsao Y.-P.
DOI
10.1152/ajpcell.00344.2014
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938495001&doi=10.1152%2fajpcell.00344.2014&partnerID=40&md5=25e058be57051dfb8c7ff23da75e335a
https://scholars.lib.ntu.edu.tw/handle/123456789/416922
Abstract
In response injury, intrinsic repair mechanisms are activated in skeletal muscle to replace the damaged muscle fibers with new muscle fibers. The regeneration process starts with the proliferation of satellite cells to give rise to myoblasts, which subsequently differentiate terminally into myofibers. Here, we investigated the promotion effect of pigment epithelial-derived factor (PEDF) on muscle regeneration. We report that PEDF and a synthetic PEDF-derived short peptide (PSP; residues Ser(93)-Leu(112)) induce satellite cell proliferation in vitro and promote muscle regeneration in vivo. Extensively, soleus muscle necrosis was induced in rats by bupivacaine, and an injectable alginate gel was used to release the PSP in the injured muscle. PSP delivery was found to stimulate satellite cell proliferation in damaged muscle and enhance the growth of regenerating myofibers, with complete regeneration of normal muscle mass by 2 wk. In cell culture, PEDF/PSP stimulated C2C12 myoblast proliferation, together with a rise in cyclin D1 expression. PEDF induced the phosphorylation of ERK1/2, Akt, and STAT3 in C2C12 myoblasts. Blocking the activity of ERK, Akt, or STAT3 with pharmacological inhibitors attenuated the effects of PEDF/PSP on the induction of C2C12 cell proliferation and cyclin D1 expression. Moreover, 5-bromo-2'-deoxyuridine pulse-labeling demonstrated that PEDF/PSP stimulated primary rat satellite cell proliferation in myofibers in vitro. In summary, we report for the first time that PSP is capable of promoting the regeneration of skeletal muscle. The signaling mechanism involves the ERK, AKT, and STAT3 pathways. These results show the potential utility of this PEDF peptide for muscle regeneration.
Publisher
American Physiological Society
Type
journal article

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