DocumentCode :
3188093
Title :
Effects of mechanical stress and scaffold material on osteogenesis and chondrogenesis
Author :
Suzuki, O. ; Takahashi, I. ; Kamakura, S. ; Sasaki, K. ; Kamijo, R. ; Nakamura, M. ; Oda, M. ; Uchida, T. ; Arai, F. ; Fukuda, T.
Author_Institution :
Graduate Sch. of Dentistry, Tohoku Univ., Sendai, Japan
fYear :
2005
fDate :
7-9 Nov. 2005
Firstpage :
235
Lastpage :
240
Abstract :
The present study was designed to investigate how mouse bone marrow stromal ST2 cells and rat limb mesenchymal stem cells respond to mechanical stress. Mechanical stress loading culture devices originally developed or commercially available were used to induce quantitative strain to these cells. Differentiation of ST2, estimated by alkaline phosphatase (ALP), was shown to be affected by the amount of the strain. Chondrogenic cell differentiation was enhanced by stretch stimulation through phosphplylation of extracellular-signaling regulated kinases (ERKs). In this study, the effect of synthetic scaffold octacalcium phosphate (OCP) was also determined. OCP implantation enhanced bone regeneration. The results suggest that the differentiation of these skeletal tissue forming cells is under control of the mechanical stresses through the signaling cascade. It is likely that the scaffold plays a role of site scaffolding the cells to assist differentiation.
Keywords :
biomechanics; biomedical materials; bone; cellular biophysics; prosthetics; stress effects; alkaline phosphatase; bone regeneration; chondrogenic cell differentiation; extracellular-signaling regulated kinases phosphplylation; mechanical stress loading culture devices; mouse bone marrow stromal ST2 cells; quantitative strain; rat limb mesenchymal stem cells; scaffold material; signaling cascade; skeletal tissue forming cells; stretch stimulation; synthetic scaffold octacalcium phosphate; Adhesives; Biomembranes; Bones; Capacitive sensors; Dentistry; Extracellular; Fibroblasts; Mice; Stem cells; Stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro-NanoMechatronics and Human Science, 2005 IEEE International Symposium on
Print_ISBN :
0-7803-9482-8
Type :
conf
DOI :
10.1109/MHS.2005.1589996
Filename :
1589996
Link To Document :
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