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Continuum model of mechanical interactions between biological cells and artificial nanostructures

机译:生物细胞与人工纳米结构之间机械相互作用的连续模型

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The controlled insertion of artificial nanostructures into biological cells has been utilized for patch clamping, targeted drug delivery, cell lysing, and cell mechanics measurements. In this work, an elastic continuum model is implemented to treat the deformation of spherical cells in solution due to their interaction with cylindrical probes. At small deformations, the force varies nonlinearly with indentation due to global deformation of the cell shape. However, at large indentations, the force varies linearly with indentation due to more localized deformations. These trends are consistent with experimental measurements under comparable conditions and can be used to develop design rules for optimizing probe-cell interactions.
机译:人工纳米结构在生物细胞中的受控插入已被用于膜片钳,靶向药物递送,细胞裂解和细胞力学测量。在这项工作中,实现了一个弹性连续体模型来处理由于球形细胞与圆柱探针相互作用而在溶液中产生的变形。在较小的变形下,由于孔格形状的整体变形,力随压痕而非线性变化。但是,在较大的凹痕处,由于局部变形较大,力随凹痕线性变化。这些趋势与可比条件下的实验测量结果一致,可用于开发设计规则以优化探针-细胞相互作用。

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