4.4 Article

Human mesenchymal stem cells isolated from the umbilical cord

期刊

CELL BIOLOGY INTERNATIONAL
卷 32, 期 1, 页码 8-15

出版社

WILEY
DOI: 10.1016/j.cellbi.2007.08.002

关键词

Mesenchymal stem cells; Umbilical cord; Differentiation

资金

  1. National Natural Science Foundation of China [30471938]
  2. Natural Science Foundation of Ministry of Public Health of China [WKJ 2005-2-024]
  3. Jiangsu Province's Outstanding Medical Academic Leader program
  4. Foundation of Zhenjiang Key Institute of Clinical Laboratory Medicine [SH2006066, SH2006070]
  5. Natural Science Foundation of the Jiangsu Province [BK2007705, BK2007092]

向作者/读者索取更多资源

Mesenchymal stem cells (MSCs) are known as a population of multi-potential cells able to proliferate and differentiate into multiple mesodermal tissues including bone, cartilage, muscle, ligament, tendon, fat and stroma. In this study human MSCs were successfully isolated from the umbilical cords. The research characteristics of these cells, e. g., morphologic appearance, surface antigens, growth curve, cytogenetic features, cell cycle, differentiation potential and gene expression were investigated. After 2 weeks of incubation, fibroblast-like cells appeared to be dominant. During the second passage the cells presented a homogeneous population of spindle fibroblast-like cells. After more than 4 months (approximately 26 passages), the cells continued to retain their characteristics. Flow cytometry analysis revealed that CD29, CD44, CD95, CD105 and HLA-I were expressed on the cell surface, but there was no expression of hematopoietic lineage markers, such as CD34, CD38, CD71 and HLA-DR. Chromosomal analysis showed the cells kept a normal karyotype. The cell cycle at the third passage showed the percentage of G(0)/G(1), G(2)/M and S phase were 88.86%, 5.69% and 5.45%, respectively. The assays in vitro demonstrated the cells exhibited multi-potential differentiation into osteogenic and adipogenic cells. Both BMI-1 and nucleostemin genes, expressed in adult MSCs from bone marrow, were also expressed in umbilical cord MSCs. Here we show that umbilical cords may be a novel alternative source of human MSCs for experimental and clinical applications. (C) 2007 International Federation for Cell Biology. Published by Elsevier Ltd. All rights reserved.

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