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用光镊操纵活细胞中的力学特性研究。

Mechanical force characterization in manipulating live cells with optical tweezers.

机构信息

Department of Manufacturing Engineering and Engineering Management, City University of Hong Kong, Kowloon, Hong Kong.

出版信息

J Biomech. 2011 Feb 24;44(4):741-6. doi: 10.1016/j.jbiomech.2010.10.034. Epub 2010 Nov 18.

Abstract

Laser trapping with optical tweezers is a noninvasive manipulation technique and has received increasing attentions in biological applications. Understanding forces exerted on live cells is essential to cell biomechanical characterizations. Traditional numerical or experimental force measurement assumes live cells as ideal objects, ignoring their complicated inner structures and rough membranes. In this paper, we propose a new experimental method to calibrate the trapping and drag forces acted on live cells. Binding a micro polystyrene sphere to a live cell and moving the mixture with optical tweezers, we can obtain the drag force on the cell by subtracting the drag force on the sphere from the total drag force on the mixture, under the condition of extremely low Reynolds number. The trapping force on the cell is then obtained from the drag force when the cell is in force equilibrium state. Experiments on numerous live cells demonstrate the effectiveness of the proposed force calibration approach.

摘要

激光捕获技术是一种非侵入式的操纵技术,在生物应用中受到越来越多的关注。了解施加在活细胞上的力对于细胞生物力学特性的研究至关重要。传统的数值或实验力测量方法假设活细胞是理想的物体,忽略了它们复杂的内部结构和粗糙的细胞膜。在本文中,我们提出了一种新的实验方法来校准作用在活细胞上的捕获力和阻力。通过将一个微聚苯乙烯球绑定到一个活细胞上,并使用光学镊子移动混合物,我们可以在极低的雷诺数条件下,通过从混合物的总阻力中减去球体的阻力,获得细胞上的阻力。然后,当细胞处于力平衡状态时,从阻力中获得细胞上的捕获力。对大量活细胞的实验验证了所提出的力校准方法的有效性。

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