Mills J P, Qie L, Dao M, Lim C T, Suresh S
Department of Materials Science and Engineering. National University of Singapore, Singapore 117576, Singapore.
Mech Chem Biosyst. 2004 Sep;1(3):169-80.
Studies of the deformation characteristics of single biological cells can offer insights into the connections among mechanical state, biochemical response and the onset and progression of diseases. Deformation imposed by optical tweezers provides a useful means for the study of single cell mechanics under a variety of well-controlled stress-states. In this paper, we first critically review recent advances in the study of single cell mechanics employing the optical tweezers method, and assess its significance and limitations in comparison to other experimental tools. We then present new experimental and computational results on shape evolution, force-extension curves, elastic properties and viscoelastic response of human red blood cells subjected to large elastic deformation using optical tweezers. Potential applications of the methods examined here to study diseased cells are also briefly addressed.
对单个生物细胞变形特性的研究能够为深入了解机械状态、生化反应以及疾病的发生和发展之间的联系提供线索。光镊施加的变形为研究处于各种精确控制应力状态下的单细胞力学提供了一种有用的手段。在本文中,我们首先批判性地回顾了采用光镊方法进行单细胞力学研究的最新进展,并与其他实验工具相比较,评估其意义和局限性。然后,我们展示了利用光镊使人类红细胞发生大弹性变形时,其形状演变、力-伸长曲线、弹性特性和粘弹性响应方面新的实验和计算结果。本文还简要探讨了这里所研究的方法在研究病变细胞方面的潜在应用。