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Effects of basic fibroblast growth factor on proliferation and collagen production in human umbilical cord mesenchymal stem cells
Authors:LIN Li  LIN Shao-qiang  WANG Xiao-yu  ZHANG Xian
Institution:1.Department of Obstetrics and Gynecology, the First Affiliated Hospital, Jinan University, Guangzhou 510632, China;2.Department of Biological Pharmaceutics, School of Pharmacy, Wenzhou Medical College,Wenzhou 325035, China.
Abstract:AIM:To observe the growth pattern and surface markers of human umbilical cord mesenchymal stem cells(hUCMSCs) and to explore the influence of basic fibroblast growth factor (bFGF) on the proliferation and collagen production in hUCMSCs cultured in vitro. METHODS:hUCMSCs were isolated by enzyme digestion method and adherent culture. The surface markers CD45, CD34, CD105, CD29 and HLA-DR of the cells were analyzed by flow cytometry. The osteogenic ability and adipogenic differentiation were confirmed with oil red O and alizarin red staining. The optimal concentration of bFGF to promote the proliferation of hUCMSCs was 20 μg/L. The cells in control group were cultured in the growth medium consisting of DMEM/F12 and 10% volume fraction of fetal bovine serum. The cells in experiment group were cultured under the same condition of control group but plus 20 μg/L bFGF. The proliferation of hUCMSCs was analyzed by MTT assay. The expression of type I and III collagens at mRNA and protein levels was determined by RT-PCR and Western blotting. RESULTS:The growth curves indicated that bFGF promoted the proliferation of hUCMSCs. The hUCMSCs expressed CD29, but did not express CD34, CD45 or HLA-DR in the presence or absence of bFGF unanimously. The cells were alizarin red staining-positive and oil red O staining-positive. Compared with control group, the expression of type I and III collagens significantly decreased at mRNA and protein levels in experiment group. CONCLUSION:bFGF promotes the proliferation of hUCMSCs and does not change the expression of the surface markers. bFGF inhibits the expression of type I and III collagens at mRNA and protein levels, indicating that bFGF enhances the healing of wound without inducing scar hyperplasia.
Keywords:Basic fibroblast growth factor  Human umbilical cord mesenchymal stem cells  Collagen type Ⅰ  Collagen type Ⅲ  
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