Fluid Shear Stress Promotes an Endothelial-Like Phenotype During the Early Differentiation of Embryonic Stem Cells

被引:1
作者
Ahsan, Tabassum [1 ]
Nerem, Robert M. [2 ]
机构
[1] Tulane Univ, Dept Biomed Engn, Lindy Boggs Ctr 500, New Orleans, LA 70118 USA
[2] Parker H Petit Inst Bioengn & Biosci, Georgia Inst Technol, Atlanta, GA 30332 USA
基金
美国国家科学基金会;
关键词
IN-VITRO; PROGENITOR CELLS; SUSPENSION-CULTURE; EXPRESSION; EFFICIENCY; PROLIFERATION; INHIBITION; BIOREACTOR; FORCES;
D O I
10.1089/ten.tea.2010.0014
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Stem and progenitor cells are emerging as a potential source for cell-based therapies, in which large homogenous populations of differentiated cells are frequently deemed necessary for efficacy. Methods focused on biochemical cues have not yet yielded the numbers of endothelial cells thought necessary for cardiovascular applications. Interest in alternate methods has prompted the study of physical cues on stem and progenitor cell differentiation. In this study, fluid-based shear stress, at levels comparable to those experienced by endothelial cells in large vessels, was applied during the first few days of mouse embryonic stem cell differentiation. After 2 days of applied shear stress, there were increases in cell proliferation and in protein expression of endothelial markers (FLK1, VECAD, and PECAM). Further, treatment increased the number of FLK1+ cells from 1% to 40%, which were then capable of forming vessel-like structures in vitro. Thus, shear stress may be used to direct differentiation of embryonic stem cells toward an endothelial-like phenotype, helping to address the cell sourcing issue in cardiovascular regenerative medicine and tissue engineering.
引用
收藏
页码:3547 / 3553
页数:7
相关论文
共 33 条
[1]   Biomechanical forces promote embryonic haematopoiesis [J].
Adamo, Luigi ;
Naveiras, Olaia ;
Wenzel, Pamela L. ;
McKinney-Freeman, Shannon ;
Mack, Peter J. ;
Gracia-Sancho, Jorge ;
Suchy-Dicey, Astrid ;
Yoshimoto, Momoko ;
Lensch, M. William ;
Yoder, Mervin C. ;
Garcia-Cardena, Guillermo ;
Daley, George Q. .
NATURE, 2009, 459 (7250) :1131-U120
[2]   Isolation of putative progenitor endothelial cells for angiogenesis [J].
Asahara, T ;
Murohara, T ;
Sullivan, A ;
Silver, M ;
vanderZee, R ;
Li, T ;
Witzenbichler, B ;
Schatteman, G ;
Isner, JM .
SCIENCE, 1997, 275 (5302) :964-967
[3]   Development of a perfusion fed bioreactor for embryonic stem cell-derived cardiomyocyte generation: Oxygen-mediated enhancement of cardiomyocyte output [J].
Bauwens, C ;
Yin, T ;
Dang, S ;
Peerani, R ;
Zandstra, PW .
BIOTECHNOLOGY AND BIOENGINEERING, 2005, 90 (04) :452-461
[4]   Valvular endothelial cells regulate the phenotype of interstitial cells in co-culture: Effects of steady shear stress [J].
Butcher, Jonathan T. ;
Nerem, Robert M. .
TISSUE ENGINEERING, 2006, 12 (04) :905-915
[5]   Unique morphology and focal adhesion development of valvular endothelial cells in static and fluid flow environments [J].
Butcher, JT ;
Penrod, AM ;
García, AJ ;
Nerem, RM .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2004, 24 (08) :1429-1434
[6]   Rotary suspension culture enhances the efficiency, yield, and homogeneity of embryoid body differentiation [J].
Carpenedo, Richard L. ;
Sargent, Carolyn Y. ;
Mcdevitt, Todd C. .
STEM CELLS, 2007, 25 (09) :2224-2234
[7]   Effects of mechanical forces on signal transduction and gene expression in endothelial cells [J].
Chien, S ;
Li, S ;
Shyy, JYJ .
HYPERTENSION, 1998, 31 (01) :162-169
[8]   Induction of vascular endothelial phenotype and cellular proliferation from human cord blood stem cells cultured in simulated microgravity [J].
Chiu, B ;
Wan, JZM ;
Abley, D ;
Akabutu, J .
ACTA ASTRONAUTICA, 2005, 56 (9-12) :918-922
[9]   Efficiency of embryoid body formation and hematopoietic development from embryonic stem cells in different culture systems [J].
Dang, SM ;
Kyba, M ;
Perlingeiro, R ;
Daley, GQ ;
Zandstra, PW .
BIOTECHNOLOGY AND BIOENGINEERING, 2002, 78 (04) :442-453
[10]  
Duffy GP, 2009, TISSUE ENG PT A, V15, P2459, DOI [10.1089/ten.tea.2008.0341, 10.1089/ten.TEA.2008.0341]