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用圆柱形原子力显微镜悬臂尖端探测细胞动态粘附和弹性特性。

Cell dynamic adhesion and elastic properties probed with cylindrical atomic force microscopy cantilever tips.

作者信息

Rico Félix, Roca-Cusachs Pere, Sunyer Raimon, Farré Ramon, Navajas Daniel

机构信息

Unitat de Biofísica i Bioenginyeria, Facultat de Medicina, Universitat de Barcelona-IDIBAPS, Barcelona, Spain.

出版信息

J Mol Recognit. 2007 Nov-Dec;20(6):459-66. doi: 10.1002/jmr.829.

Abstract

Cell adhesion is required for essential biological functions such as migration, tissue formation and wound healing, and it is mediated by individual molecules that bind specifically to ligands on other cells or on the extracellular matrix. Atomic force microscopy (AFM) has been successfully used to measure cell adhesion at both single molecule and whole cell levels. However, the measurement of inherent cell adhesion properties requires a constant cell-probe contact area during indentation, a requirement which is not fulfilled in common pyramidal or spherical AFM tips. We developed a procedure using focused ion beam (FIB) technology by which we modified silicon pyramidal AFM cantilever tips to obtain flat-ended cylindrical tips with a constant and known area of contact. The tips were validated on elastic gels and living cells. Cylindrical tips showed a fairly linear force-indentation behaviour on both gels and cells for indentations >200 nm. Cylindrical tips coated with ligands were used to quantify inherent dynamic cell adhesion and elastic properties. Force, work of adhesion and elasticity showed a marked dynamic response. In contrast, the deformation applied to the cells before rupture was fairly constant within the probed dynamic range. Taken together, these results suggest that the dynamic adhesion strength is counterbalanced by the dynamic elastic response to keep a constant cell deformation regardless of the applied pulling rate.

摘要

细胞黏附对于迁移、组织形成和伤口愈合等基本生物学功能是必需的,它由特异性结合其他细胞或细胞外基质上配体的单个分子介导。原子力显微镜(AFM)已成功用于在单分子和全细胞水平测量细胞黏附。然而,测量固有细胞黏附特性需要在压痕过程中保持恒定的细胞-探针接触面积,而普通的金字塔形或球形AFM探针无法满足这一要求。我们开发了一种使用聚焦离子束(FIB)技术的方法,通过该方法我们对硅金字塔形AFM悬臂探针进行了修饰,以获得具有恒定且已知接触面积的平头圆柱形探针。这些探针在弹性凝胶和活细胞上进行了验证。对于大于200 nm的压痕,圆柱形探针在凝胶和细胞上均表现出相当线性的力-压痕行为。涂有配体的圆柱形探针用于量化固有动态细胞黏附力和弹性特性。力、黏附功和弹性表现出明显的动态响应。相比之下,在探测的动态范围内,破裂前施加于细胞的变形相当恒定。综上所述,这些结果表明,动态黏附强度被动态弹性响应所抵消,从而无论施加的拉伸速率如何,都能保持细胞变形恒定。

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