Vitronectin modulates human mesenchymal stem cell response to insulin-like growth factor-I and transforming growth factor beta 1 in a serum-free environment


Autoria(s): Leavesley, David; Parker, Tony J.; Upton, Zee
Data(s)

2009

Resumo

The use of animal sera for the culture of therapeutically important cells impedes the clinical use of the cells. We sought to characterize the functional response of human mesenchymal stem cells (hMSCs) to specific proteins known to exist in bone tissue with a view to eliminating the requirement of animal sera. Insulin-like growth factor-I (IGF-I), via IGF binding protein-3 or -5 (IGFBP-3 or -5) and transforming growth factor-beta 1 (TGF-beta(1)) are known to associate with the extracellular matrix (ECM) protein vitronectin (VN) and elicit functional responses in a range of cell types in vitro. We found that specific combinations of VN, IGFBP-3 or -5, and IGF-I or TGF-beta(1) could stimulate initial functional responses in hMSCs and that IGF-I or TGF-beta(1) induced hMSC aggregation, but VN concentration modulated this effect. We speculated that the aggregation effect may be due to endogenous protease activity, although we found that neither IGF-I nor TGF-beta(1) affected the functional expression of matrix metalloprotease-2 or -9, two common proteases expressed by hMSCs. In summary, combinations of the ECM and growth factors described herein may form the basis of defined cell culture media supplements, although the effect of endogenous protease expression on the function of such proteins requires investigation.

Identificador

http://eprints.qut.edu.au/30824/

Publicador

Mary Ann Liebert, Inc. Publishers

Relação

DOI:10.1089/ten.tea.2007.0431

Leavesley, David, Parker, Tony J., & Upton, Zee (2009) Vitronectin modulates human mesenchymal stem cell response to insulin-like growth factor-I and transforming growth factor beta 1 in a serum-free environment. Tissue Engineering: Part A, 15(6), pp. 1415-1426.

Fonte

Faculty of Health; Institute of Health and Biomedical Innovation

Palavras-Chave #060106 Cellular Interactions (incl. Adhesion Matrix Cell Wall) #060199 Biochemistry and Cell Biology not elsewhere classified #100404 Regenerative Medicine (incl. Stem Cells and Tissue Engineering) #Stem Cells, Vitronectin, Insulin-like Growth Factor, Transforming Growth Factor beta, Bone Tissue Engineering
Tipo

Journal Article