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Evaluation of the Single Yeast Cell's Adhesion to ITO Substrates With Various Surface Energies via ESEM Nanorobotic Manipulation System

机译:通过ESEM纳米机器人操纵系统评估单酵母细胞对具有多种表面能的ITO基底的粘附力

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摘要

Cell-surface adhesion force is important for cell activities and the development of bio materials. In this paper, a method for in situ single cell $(W303)$ adhesion force measurement was proposed based on nanorobotic manipulation system inside an environment scanning electron microscope (ESEM). An end effector was fabricated from a commercial atomic force microscope (AFM) cantilever by focused ion beam (FIB) etching. The spring constant of it was calibrated by nanomanipulation approach. Three kinds of hydrophilic and hydrophobic ITO plates were prepared by using VUV-irradiation and OTS coating techniques. The shear adhesion strength of the single yeast cell to each substrate was measured based on the deflection of the end effector. The results demonstrated that the cell adhesion force was larger under the wet condition in the ESEM environment than in the aqueous condition. It also showed that the cell adhesion force to hydrophilic surface was larger than that to the hydrophobic surface. Studies of single cell's adhesion on various plate surfaces and environments could give new insights into the tissue engineering and biological field.
机译:细胞表面粘附力对于细胞活动和生物材料的发展很重要。本文提出了一种在环境扫描电子显微镜(ESEM)内部基于纳米机器人操纵系统的原位单细胞(W303)$粘附力测量方法。通过聚焦离子束(FIB)蚀刻从商用原子力显微镜(AFM)悬臂制造出末端执行器。它的弹簧常数通过纳米操作方法校准。利用VUV辐照和OTS涂层技术制备了三种亲水性和疏水性ITO板。基于末端执行器的挠度测量单个酵母细胞对每个底物的剪切粘附强度。结果表明,在ESEM环境中,在潮湿条件下的细胞粘附力大于在水性条件下的细胞粘附力。还表明细胞对亲水表面的粘附力大于对疏水表面的粘附力。对单细胞在各种板表面和环境上的粘附性的研究可以为组织工程和生物领域提供新的见解。

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