Stem Cells International · 2018 · 10 citations · 47 references
Due to their potential for tissue engineering applications and ability to modulate the immune system and reduce inflammation, mesenchymal stem cells (MSCs) have been explored as a promising option for the treatment of chronic diseases and injuries. However, there are problems associated with the use of this type of cell that limit their applications. Several studies have been exploring the possibility to produce mesenchymal stem cells from pluripotent stem cells (PSCs). The aim of these studies is to generate MSCs with advantageous characteristics of both PSCs and MSCs. However, there are still some questions concerning the characteristics of MSCs derived from the differentiation of PSCs that must be answered before they can be used to treat diseases and injuries. The objective of this study was, therefore, to determine if PSCs exposed to SB431542, a TGF-<i>β</i> inhibitor, are able to differentiate to MSCs, judging by morphology, expression of mesenchymal and pluripotent stem cell markers, expression of pluripotency-related genes, and ability to differentiate to osteocytes and adipocytes. The results obtained demonstrated that it is possible to induce the differentiation of both embryonic stem cells and induce pluripotent stem cells into cells with characteristics that highly resemble those from MSCs through the inhibition of the TGF-<i>β</i> pathway.
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Multilineage Potential of Adult Human Mesenchymal Stem Cells
Mark F. Pittenger, Alastair M. Mackay, Stephen C. Beck et al. · Science · 1999 · 20.9K citations
Adult Stem Cell, Multilineage Potential, Biomedical Engineering +16
Embryonic Stem Cell Lines Derived from Human Blastocysts
James A. Thomson, Joseph Itskovitz‐Eldor, Sander S. Shapiro et al. · Science · 1998 · 15.8K citations
Telomerase Activity, Adult Stem Cell, Biomedical Engineering +16
Human Adipose Tissue Is a Source of Multipotent Stem Cells
Patricia A. Zuk, Min Zhu, Peter Ashjian et al. · Molecular Biology of the Cell · 2002 · 6.6K citations · Full text
Tissue Engineering, Human Adipose Tissue, Adult Stem Cell +16