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首页> 外文期刊>Journal of biomechanical engineering. >Effects of Virus Size and Cell Stiffness on Forces, Work, and Pressures Driving Membrane Invagination in a Receptor-Mediated Endocytosis
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Effects of Virus Size and Cell Stiffness on Forces, Work, and Pressures Driving Membrane Invagination in a Receptor-Mediated Endocytosis

机译:病毒大小和细胞刚度对受体介导的内吞作用中驱动膜内陷的力,工作和压力的影响

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摘要

A continuum model based on the contact mechanics theory was developed and used for evaluating virus indentation forces at the early stage of membrane invagination, as well as the work of the virus indentation forces and virus-cell contact pressures in a receptor-mediated endocytosis, depending on the virus size and virus/cell stiffnesses. The model indicated that early virus indentation forces are in the order of 1-10 pN and for a given extent of virus engulfment, they increase linearly with the elastic modulus of the host cell and also with the square of the virus radius. The work of invagination at the initial phase of virus endocytosis is in the order of tens of zeptojoules and peak virus-cell contact pressures at this stage are in the order of hundreds of Pascals to several kPa. For a given extent of virus engulfment, peak and average contact pressures increase.linearly with the elastic modulus of the host cell but interestingly, they are negligibly affected by the virus size. The present model may be useful in the fields of cellular biomechanics, virology and nanodrug delivery to evaluate mechanical factors during the early phase of membrane invagination.
机译:建立了基于接触力学理论的连续模型,用于评估膜内陷早期的病毒压入力,以及在受体介导的内吞作用中病毒压入力和病毒细胞接触压力的作用,具体取决于病毒大小和病毒/细胞刚度。该模型表明,早期病毒压入力约为1-10 pN,对于给定程度的病毒吞噬力,它们随宿主细胞的弹性模量以及病毒半径的平方线性增加。病毒内吞作用初始阶段的内吞工作大约为数十焦耳,在此阶段病毒与细胞的峰值接触压力大约为数百帕斯卡至几千帕。对于给定程度的病毒吞噬,峰值和平均接触压力随宿主细胞的弹性模量线性增加,但有趣的是,它们受到病毒大小的影响可忽略不计。本模型在细胞生物力学,病毒学和纳米药物递送领域中可用于在膜内陷的早期评估机械因素。

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