Title of article :
In-vitro differentiation study on isolated human mesenchymal stem cells
Author/Authors :
MOK, PL InternationalMedical University - Cellular Therapy Unit, MAKNA-HUKM Cancer Institute - Department of Medicine, Malaysia , CHEONG, SK InternationalMedical University - Cellular Therapy Unit, MAKNA-HUKM Cancer Institute - Department of Medicine, Malaysia , LEONG, CF National University of Malaysia - Faculty of Medicine - Department of Pathology, Malaysia
From page :
11
To page :
19
Abstract :
Mesenchymal stem cells are pluripotent progenitors that could be found in human bone marrow. Mesenchymal stem cells are capable of renewing themselves without differentiation in long-term culture. These cells also have low immunogenicity and can suppress alloreactive T cell responses. In the current study, mesenchymal stem cells isolated and propagated previously from the bone marrow of a megaloblastic anaemia patient were tested for their capabilities to differentiate into adipocytes, chondrocytes and osteoblasts in vitro. The differentiated cells were determined by Oil Red O, Alcian Blue-PAS and Alizarin Red S staining, and reverse transcriptase-polymerase chain reaction to determine the expression of mRNA specific for adipogenesis, chondrogenesis and osteogenesis. The results showed that the fibroblast-like cells were capable of differentiating into adipocytes, chondrocytes and osteoblasts upon chemical induction. The adipocytes, chondrocytes and osteoblasts were stained positively to Oil Red O, Alcian Blue-PAS and Alizarin Red S respectively. The differentiated cells were also found to express mRNA specific for adipogenesis (‘peroxisome proliferation-activated receptor م2’ and lipoprotein lipase), chondrogenesis (collagen type II) and osteogenesis (osteocalcin, osteopontin and alkaline phosphatase). In conclusion, this research has successfully isolated fibroblast-like cells from human bone marrow and these cells demonstrated morphological, cytochemical and immunochemical characteristics similar to mesenchymal stem cells. These cells maintain their proliferative properties and could be differentiated into the mesoderm lineage. The success of this study is vital because mesenchymal stem cells can be used in cellular therapy to regenerate or replace damaged tissues, or as a vehicle for therapeutic gene delivery in the future.
Keywords :
Mesenchymal stem cells , bone marrow , adipocytes , chondrocytes , osteoblasts
Journal title :
The Malaysian Journal of Pathology
Journal title :
The Malaysian Journal of Pathology
Record number :
2537571
Link To Document :
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