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Platelet-Rich Plasma Promotes the Proliferation of Human Muscle Derived Progenitor Cells and Maintains Their Stemness
Authors
A Dellavalle
A Kalen
+85 more
A Kocaoemer
A Mathur
A Mauro
A Shahdadfar
Arvydas Usas
B Cao
B Peault
B Zheng
Bahar Ahani
BM Deasy
C Doucet
C Lange
CB Gates
Chien-Wen Chen
D Shepro
D Tschoepe
DJ Soomekh
DM Dohan Ehrenfest
DS Musgrave
DT Covas
E Garbayo
E Lucarelli
E Pierantozzi
EN Olson
F Kievits
Felipe Prosper
G Weibrich
H Lei
H Niwa
H Oshima
Hongshuai Li
I Chambers
J Alsousou
J Fiedler
J Guo
James Cummins
JF Martin
JH Lubowitz
Johnny Huard
JP Vogel
JS Park
JY Lee
K Bieback
K Bieback
K Mitsui
K Tamama
K Tamama
KL Urish
KS Lee
L Chen
L Mazzucco
M Crisan
M Dominici
M Mastrogiacomo
M Pesce
M Zong
MA Refaai
MH Rosner
MH Tai
Minakshi Poddar
Mitra Lavasani
MM Levy
O Petrenko
P Borrione
P Cassiede
P Kasten
P Niemeyer
P Parsons
R Gruber
RE Marx
RE Scharf
RT Nguyen
S Zhou
Seth Thompson
SH Zaky
T Matsumoto
TA Linkhart
TA Rando
U Riekstina
V Kashyap
VL Gassling
W Risau
Z Huang
Z Qu
Z Qu-Petersen
Publication date
7 June 2013
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
Human muscle-derived progenitor cells (hMDPCs) offer great promise for muscle cell-based regenerative medicine; however, prolonged ex-vivo expansion using animal sera is necessary to acquire sufficient cells for transplantation. Due to the risks associated with the use of animal sera, the development of a strategy for the ex vivo expansion of hMDPCs is required. The purpose of this study was to investigate the efficacy of using platelet-rich plasma (PRP) for the ex-vivo expansion of hMDPCs. Pre-plated MDPCs, myoendothelial cells, and pericytes are three populations of hMDPCs that we isolated by the modified pre-plate technique and Fluorescence Activated Cell Sorting (FACS), respectively. Pooled allogeneic human PRP was obtained from a local blood bank, and the effect that thrombin-activated PRP-releasate supplemented media had on the ex-vivo expansion of the hMDPCs was tested against FBS supplemented media, both in vitro and in vivo. PRP significantly enhanced short and long-term cell proliferation, with or without FBS supplementation. Antibody-neutralization of PDGF significantly blocked the mitogenic/proliferative effects that PRP had on the hMDPCs. A more stable and sustained expression of markers associated with stemness, and a decreased expression of lineage specific markers was observed in the PRP-expanded cells when compared with the FBS-expanded cells. The in vitro osteogenic, chondrogenic, and myogenic differentiation capacities of the hMDPCs were not altered when expanded in media supplemented with PRP. All populations of hMDPCs that were expanded in PRP supplemented media retained their ability to regenerate myofibers in vivo. Our data demonstrated that PRP promoted the proliferation and maintained the multi-differentiation capacities of the hMDPCs during ex-vivo expansion by maintaining the cells in an undifferentiated state. Moreover, PDGF appears to be a key contributing factor to the beneficial effect that PRP has on the proliferation of hMDPCs. © 2013 Li et al
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