A Low-Cost Mechanical Stretching Device for Uniaxial Strain of Cells: A Platform for Pedagogy in Mechanobiology

被引:22
作者
Atcha, Hamza [1 ]
Davis, Chase T. [1 ]
Sullivan, Nicholas R. [1 ]
Smith, Tim D. [1 ]
Anis, Sara [1 ]
Dahbour, Waleed Z. [1 ]
Robinson, Zachery R. [1 ]
Grosberg, Anna [2 ,3 ]
Liu, Wendy F. [1 ,3 ]
机构
[1] Univ Calif Irvine, Dept Biomed Engn, Edwards Lifesci Ctr Adv Cardiovasc Technol, Irvine, CA 92697 USA
[2] Univ Calif Irvine, Dept Biomed Engn, Edwards Lifesci Ctr Adv Cardiovasc Technol, Ctr Complex Biol Syst, Irvine, CA 92697 USA
[3] Univ Calif Irvine, Dept Chem Engn & Mat Sci, Irvine, CA 92697 USA
来源
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME | 2018年 / 140卷 / 08期
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
SMOOTH-MUSCLE-CELLS; CYCLIC STRETCH; ORIENTATION;
D O I
10.1115/1.4039949
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Mechanical cues including stretch, compression, and shear stress play a critical role in regulating the behavior of many cell types, particularly those that experience substantial mechanical stress within tissues. Devices that impart mechanical stimulation to cells in vitro have been instrtunental in helping to develop a better understanding of how cells respond to mechanical forces. However, these devices often have constraints, such as cost and limited functional capabilities, that restrict their use in research or educational environments. Here, we describe a low-cost method to fabricate a uniaxial cell stretcher that would enable widespread use and facilitate engineering design and mechanobiology education for undergraduate students. The device is capable of producing consistent and reliable strain profiles through the use of a servomotor, gear, and gear rack system. The servomotor can be programmed to output various waveforms at specific frequencies and stretch amplitudes by controlling the degree of rotation, speed, and acceleration of the servogear. in addition, the stretchable membranes are easy to fabricate and can be customized, allowing for greater flexibility in culture well size. We used the custom-built stretching device to uniaxially strain macrophages and cardiomyocytes, and found that both cell types displayed functional and cell shape changes that were consistent with the previous studies using commercially available systems. Overall, this uniaxial cell stretcher provides a more cost-effective alternative to study the effects of mechanical stretch on cells, and can therefore, he widely used in research and educational environments to broaden the study and pedagogy of cell mechanobiology.
引用
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页数:9
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