Mechano-Regulation Theory-based Finite Element Analysis on the Effects of Driving Strain History on Cellular Differentiation

Citations

WEB OF SCIENCE

2
Citations

SCOPUS

2

초록

The aim of this study was to determine the appropriate driving strain history of a dynamic cell culture device for inducing accelerated cell differentiation. Silicone rubber film is an electroactive polymer and was used as a flexible cell stimulator to transfer mechanical strains to developing cells. Mechano-regulation theory with a deviatoric strain was used to estimate tissue differentiation under strain conditions during iterative calculations by means of finite element analysis. Various driving strain histories comprising 4%, 5%, and 6% strains were introduced to determine the correlation between the strain history and the development of cell phenotypes. The simulation results revealed that driving strain conditions mainly comprising low levels of strain (4%) provided appropriate conditions for differentiating mesenchymal cells into osteoblasts.

키워드

Cell culture device; Cell differentiation; Finite element analysis; Silicone rubber; Strain history; MESENCHYMAL STEM-CELLS; BONE HEALING-PROCESS; TISSUE DIFFERENTIATION; LOCAL VASCULARIZATION; BIOPHYSICAL STIMULI; GAP SIZE; SIMULATION; STABILITY; PLATE
제목
Mechano-Regulation Theory-based Finite Element Analysis on the Effects of Driving Strain History on Cellular Differentiation
저자
Lee, Han-Young; Bae, Ji-Hun; Chang, Seung-Hwan
DOI
10.1007/s12541-015-0241-8
발행일
2015-07
유형
Article
저널명
International Journal of Precision Engineering and Manufacturing
권
16
호
8
페이지
1851 ~ 1858