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用于研究单个活细胞在基底上局部粘附位点力响应的功能化生物微机电系统传感器。

Functionalized biomicroelectromechanical systems sensors for force response study at local adhesion sites of single living cells on substrates.

作者信息

Saif M Taher A, Sager Chad Randall, Coyer Sean

机构信息

Department of Mechanical and Industrial Engineering, University of Illinois at Urbana-Champaign, 1206 W. Green Street, Urbana, IL 61801, USA.

出版信息

Ann Biomed Eng. 2003 Sep;31(8):950-61. doi: 10.1114/1.1591189.

Abstract

We present a method of measuring force response of a single living cell, attached to a substrate, in situ, by a functionalized microelectromechanical systems sensor that applies local deformation on the cell. The sensor is a single crystal silicon microcantilever beam with prescribed shape and geometry, and is coated by a thin layer of fibronectin. It is brought in contact with a cell to form adhesion cites, and is then moved by a piezoactuator to deform the cell locally. The force is transmitted from the adhesion site(s) on the cantilever to the sites on the substrate through the cytoskeleton. The interaction force between the cell and the cantilever is measured from the deformation of the cantilever and its spring constant, which can be obtained by several independent means. The force and the cell deformation can be 10 s of nano-Newtons and micrometers, respectively. We demonstrate the method using two families of force sensors with spring constants of 18 and 0.4 nN/microm. Several cells, endothelial and fibroblast, are deformed by tens of micrometers until the adhesion sites failed. Their force-deformation response shows strong linearity. Several possible mechanisms are discussed to explain the linear response.

摘要

我们提出了一种通过功能化微机电系统传感器原位测量附着在基底上的单个活细胞的力响应的方法,该传感器对细胞施加局部变形。该传感器是具有规定形状和几何结构的单晶硅微悬臂梁,并涂覆有一层纤连蛋白薄层。它与细胞接触形成粘附位点,然后由压电致动器移动以局部变形细胞。力从悬臂上的粘附位点通过细胞骨架传递到基底上的位点。细胞与悬臂之间的相互作用力通过悬臂的变形及其弹簧常数来测量,弹簧常数可通过几种独立方法获得。力和细胞变形分别可达数十纳牛顿和微米。我们使用弹簧常数为18和0.4 nN/μm的两类力传感器演示了该方法。几个内皮细胞和成纤维细胞被变形数十微米,直到粘附位点失效。它们的力-变形响应显示出很强的线性。讨论了几种可能的机制来解释这种线性响应。

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