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Quantitative evaluation of cardiomyocyte contractility in a 3D microenvironment

Authors
Kim, JinseokPark, JungyulNa, KyounghwanYang, SungwookBaek, JeongeunYoon, EuisungChoi, SungsikLee, SanghoChun, KukjinPark, JongohPark, Sukho
Issue Date
7-Aug-2008
Publisher
ELSEVIER SCI LTD
Keywords
cardiomyocyte; contractile forced microcantilever; 3D microenvironment; grooved surface; cell-to-cell interactions
Citation
JOURNAL OF BIOMECHANICS, v.41, no.11, pp.2396 - 2401
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF BIOMECHANICS
Volume
41
Number
11
Start Page
2396
End Page
2401
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/122869
DOI
10.1016/j.jbiomech.2008.05.036
ISSN
0021-9290
Abstract
Three-dimensional cultures in a microfabricated environment provide in vivo-like conditions for cells, and have been used in a variety of applications in basic and clinical studies. In this Study, the contractility of cardiomyocytes in a 3D environment using complex 3D hybrid biopolymer microcantilevers was quantified and compared with that observed in a 2D environment. By measuring the deflections of the microcantilevers with different Surfaces and carrying out finite element modeling (FEM) of the focal pressures of the microcantilevers. it was found that the contractile force of high-density cardiomyocytes on 3D grooved surfaces was 65-85% higher than that of cardiomyocytes on flat surfaces. These results were supported by immunostaining, which showed alignment of the cytoskeleton and elongation of the nuclei, as well as by quantitative RT-PCR. which revealed that cells on the grooved surface had experienced sustained stimuli and tighter cell-to-cell interactions. Crown Copyright (c) 2008 Published by Elsevier Ltd. All rights reserved.
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