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A Novel Technique of Quantifying Flexural Stiffness of Rod-Like Structures

机译:杆状结构抗弯刚度定量化的新技术

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摘要

In cellular and molecular biomechanics, extensional stiffness of rod-like structures such as leukocyte microvilli can be easily measured with many techniques, but not many techniques are available for measuring their flexural stiffness. In this paper, we report a novel technique of measuring the flexural stiffness of rod-like structures. This technique is based on image deconvolution and, as an example, it was used for determining the flexural stiffness of neutrophil microvilli. The probes we used were 40-nm-diameter fluorescent beads, which were bound to the tips of neutrophil microvilli by anti-L-selectin antibody. The fluorescent images of the bead, which was positioned at the center of the cell bottom, were acquired with high magnification and long exposure time (3 s). Using a Gaussian function as the point spread function of our imaging system, we established a convolution equation based on Boltzmann’s law, which yields an analytical expression that relates the bead image profile to the flexural stiffness of the microvillus. The flexural stiffness was then obtained by the least squares regression. On average, the flexural stiffness was determined to be 7 pN/μm for single neutrophil microvilli. With the resolution of our imaging system, this technique can be used for measuring any flexural stiffness smaller than 34 pN/μm and it has great potential in single molecule biomechanics.
机译:在细胞和分子生物力学中,杆状结构(如白细胞微绒毛)的拉伸刚度可以通过许多技术轻松测量,但测量挠曲刚度的技术并不多。在本文中,我们报告了一种测量杆状结构弯曲刚度的新技术。该技术基于图像去卷积,例如,该技术用于确定中性粒细胞微绒毛的抗弯刚度。我们使用的探针是直径为40 nm的荧光珠,通过抗L-选择素抗体与中性粒细胞微绒毛尖端结合。以较高的放大倍率和较长的曝光时间(3 s)获得位于细胞底部中央的珠子的荧光图像。使用高斯函数作为成像系统的点扩展函数,我们基于玻尔兹曼定律建立了卷积方程,该方程产生了解析表达式,该表达式将珠子图像轮廓与微绒毛的弯曲刚度相关联。然后通过最小二乘回归获得抗弯刚度。平均而言,单个嗜中性粒细胞微绒毛的弯曲刚度确定为7 pN /μm。凭借我们成像系统的分辨率,该技术可用于测量任何小于34 pN /μm的弯曲刚度,并且在单分子生物力学中具有巨大的潜力。

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