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Frictional Behavior of Individual Vascular Smooth Muscle Cells Assessed By Lateral Force Microscopy

机译:横向力显微镜评估单个血管平滑肌细胞的摩擦行为

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摘要

With the advancement of the field of biotribology, considerable interest has arisen in the study of cell and tissue frictional properties. From the perspective of medical device development, the frictional properties between a rigid surface and underlying cells and tissues are of a particular clinical interest. As with many bearing surfaces, it is likely that contact asperities exist at the size scale of single cells and below. Thus, a technique to measure cellular frictional properties directly would be beneficial from both a clinical and a basic science perspective. In the current study, an atomic force microscope (AFM) with a 5 µm diameter borosilicate spherical probe simulating endovascular metallic stent asperities was used to characterize the surface frictional properties of vascular smooth muscle cells (VSMCs) in contact with a metallic endovascular stent. Various treatments were used to alter cell structure, in order to better understand the cellular components and mechanisms responsible for governing frictional properties. The frictional coefficient of the probe on VSMCs was found to be approximately 0.06. This frictional coefficient was significantly affected by cellular crosslinking and cytoskeletal depolymerization agents. These results demonstrate that AFM-based lateral force microscopy is a valuable technique to assess the friction properties of individual single cells on the micro-scale.
机译:随着生物摩擦学领域的发展,对细胞和组织摩擦特性的研究引起了极大的兴趣。从医疗设备开发的角度来看,刚性表面与下面的细胞和组织之间的摩擦特性具有特殊的临床意义。与许多轴承表面一样,接触粗糙可能存在于单个单元格及以下的尺寸范围内。因此,从临床和基础科学的角度来看,直接测量细胞摩擦特性的技术都是有益的。在当前的研究中,使用原子力显微镜(AFM)和直径5 µm的硼硅酸盐球形探针模拟血管内金属支架的粗糙情况,以表征与金属血管内支架接触的血管平滑肌细胞(VSMC)的表面摩擦特性。为了更好地了解负责控制摩擦性能的细胞成分和机制,使用了各种处理方法来改变细胞结构。发现探头在VSMC上的摩擦系数约为0.06。该摩擦系数受到细胞交联和细胞骨架解聚剂的显着影响。这些结果表明,基于原子力显微镜的横向力显微镜是一种有价值的技术,可以在微观尺度上评估单个单细胞的摩擦性能。

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