Proliferation

5

Integrins in Mechanotransduction

http://www.jbc.org
Year of publication: 
2004
Journal name: 
The Journal of Biological Chemistry
Mechanical forces are crucial to the regulation of cell and tissue morphology and function. At the cellular level, forces influence cytoskeletal organization, gene expression, proliferation, and survival. Integrin-mediated adhesions are intrinsically mechanosensitive and a large body of data implicates integrins in sensing mechanical forces. We review the relationship between integrins and mechanical forces, the role of integrins in cellular responses to stretch and fluid flow, and propose that some of these events are mechanistically related. Read more »
1

Stem cell fate dictated solely by altered nanotube dimension

http://www.ncbi.nlm.nih.gov
Year of publication: 
2008
Journal name: 
The National Academy of Sciences of the USA
Two important goals in stem cell research are to control the cell proliferation without differentiation and to direct the differentiation into a specific cell lineage when desired. Here, we demonstrate such paths by controlling only the nanotopography of culture substrates. Altering the dimensions of nanotubular-shaped titanium oxide surface structures independently allowed either augmented human mesenchymal stem cell (hMSC) adhesion or a specific differentiation of hMSCs into osteoblasts by using only the geometric cues, absent of osteogenic inducing media. Read more »
Clarence Chow's picture
Created by Clarence Chow 2 years 6 weeks ago
Category: Stem Cells   Tags:
5

Effects of cyclic stretch on proliferation of mesenchymal stem cells and their differentiation to smooth muscle cells

http://www.sciencedirect.com
Year of publication: 
2009
Journal name: 
Biochemical and Biophysical Research Communications
Bone marrow mesenchymal stem cells (MSCs) are capable of differentiating into a variety of cell types such as vascular smooth muscle cells (SMCs). In this study, we investigated influence of cyclic stretch on proliferation of hMSCs for different loading conditions, alignment of actin filaments, and consequent differentiation to SMCs. Isolated cells from bone marrow were exposed to cyclic stretch utilizing a customized device. Cell proliferation was examined by MTT assay, alignment of actin fibers by a designed image processing code, and cell differentiation by fluorescence staining. Read more »
yuanfangfu8910's picture
Created by yuanfangfu8910 2 years 8 weeks ago – Made popular 2 years 8 weeks ago
Category: Endothelial and Smooth Muscle   Tags:

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