Design of a novel MEMS platform for the biaxial stimulation of living cells

被引:47
作者
Scuor, N.
Gallina, P.
Panchawagh, H. V.
Mahajan, R. L.
Sbaizero, O.
Sergo, V.
机构
[1] Univ Trieste, DMRN, I-34127 Trieste, Italy
[2] Univ Trieste, CENMAT, I-34127 Trieste, Italy
[3] Univ Trieste, Dipartimento Energet, I-34127 Trieste, Italy
[4] Univ Colorado, Dept Mech Engn, Boulder, CO 80309 USA
关键词
MEMS; cell stretching; mechanical loading; biaxial loading;
D O I
10.1007/s10544-006-8268-3
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Micromechanical systems are increasingly being used as tools in biological applications, since their characteristic dimensions permit to operate at the same length scale of the structures under investigation. Here, we present a methodology for the design, fabrication and operation of a tool for the assessment of mechanical properties of single cells. In particular, we describe a microsystems platform to study bio-mechanical response of single living cells to in-plane biaxial stretching. The proposed device employs a new linkage design in order to obtain the displacement of the quadrants of a sliced circular plate in mutually-orthogonal directions using just one linear actuator. With this linkage geometry, the whole device has only one degree of freedom. This results in a very predictable and reliable mechanical behaviour, thereby allowing use a simple and easily available control electronics. Results of this study have relevance for the design of a powerful yet simple BioMEMS platform for the characterization of living cells as in-plane bi-axial loading simulated the conditions experienced by cells in vivo more realistically than a uniaxial stretching.
引用
收藏
页码:239 / 246
页数:8
相关论文
共 30 条
[1]   A DEVICE FOR THE APPLICATION OF KNOWN SIMULATED ORTHODONTIC FORCES TO HUMAN-CELLS INVITRO [J].
ANDERSEN, KL ;
NORTON, LA .
JOURNAL OF BIOMECHANICS, 1991, 24 (07) :649-&
[2]  
[Anonymous], 2013, Biomechanics: Motion, Flow, Stress, and Growth
[3]   Cell and molecular mechanics of biological materials [J].
Bao, G ;
Suresh, S .
NATURE MATERIALS, 2003, 2 (11) :715-725
[4]  
BARBEE KA, 1989, IEEE ENG MED BIOL SO
[5]   A cell strain system for small homogeneous strain applications [J].
Bottlang, M ;
Simnacher, M ;
Schmitt, H ;
Brand, RA ;
Claes, L .
BIOMEDIZINISCHE TECHNIK, 1997, 42 (11) :305-309
[6]   THE PROLIFERATIVE AND SYNTHETIC RESPONSE OF ISOLATED CALVARIAL BONE-CELLS OF RATS TO CYCLIC BIAXIAL MECHANICAL STRAIN [J].
BRIGHTON, CT ;
STRAFFORD, B ;
GROSS, SB ;
LEATHERWOOD, DF ;
WILLIAMS, JL ;
POLLACK, SR .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 1991, 73A (03) :320-331
[7]   THE INOSITOL PHOSPHATE-PATHWAY AS A MEDIATOR IN THE PROLIFERATIVE RESPONSE OF RAT CALVARIAL BONE-CELLS TO CYCLICAL BIAXIAL MECHANICAL STRAIN [J].
BRIGHTON, CT ;
SENNETT, BJ ;
FARMER, JC ;
IANNOTTI, JP ;
HANSEN, CA ;
WILLIAMS, JL ;
WILLIAMSON, J .
JOURNAL OF ORTHOPAEDIC RESEARCH, 1992, 10 (03) :385-393
[8]  
BUCKLEY MJ, 1988, BONE MINER, V4, P225
[9]   Single cell mechanotransduction and its modulation analyzed by atomic force microscope indentation [J].
Charras, GT ;
Horton, MA .
BIOPHYSICAL JOURNAL, 2002, 82 (06) :2970-2981
[10]  
Deutsch J, 2000, J BIOMED MATER RES, V53, P267, DOI 10.1002/(SICI)1097-4636(2000)53:3<267::AID-JBM12>3.0.CO