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弹性膜上被动纳米颗粒的杜若塔克西

Durotaxis of Passive Nanoparticles on Elastic Membranes.

机构信息

Department of Physics and Astronomy, Institute for the Physics of Living Systems, University College London, London WC1E 6BT, United Kingdom.

MRC Laboratory for Molecular Cell Biology, University College London, London WC1E 6BT, United Kingdom.

出版信息

ACS Nano. 2021 Oct 26;15(10):15794-15802. doi: 10.1021/acsnano.1c02777. Epub 2021 Sep 22.

Abstract

The transport of macromolecules and nanoscopic particles to a target cellular site is a crucial aspect in many physiological processes. This directional motion is generally controlled active mechanical and chemical processes. Here we show, by means of molecular dynamics simulations and an analytical theory, that completely passive nanoparticles can exhibit directional motion when embedded in nonuniform mechanical environments. Specifically, we study the motion of a passive nanoparticle adhering to a mechanically nonuniform elastic membrane. We observe a nonmonotonic affinity of the particle to the membrane as a function of the membrane's rigidity, which results in the particle transport. This transport can be both up or down the rigidity gradient, depending on the absolute values of the rigidities that the gradient spans across. We conclude that rigidity gradients can be used to direct average motion of passive macromolecules and nanoparticles on deformable membranes, resulting in the preferential accumulation of the macromolecules in regions of certain mechanical properties.

摘要

大分子和纳米级颗粒向靶细胞部位的运输是许多生理过程中的一个关键方面。这种定向运动通常受到主动机械和化学过程的控制。在这里,我们通过分子动力学模拟和分析理论表明,当完全被动的纳米颗粒嵌入非均匀的机械环境中时,它们可以表现出定向运动。具体来说,我们研究了附着在机械不均匀弹性膜上的被动纳米颗粒的运动。我们观察到颗粒与膜之间的非单调亲和力作为膜的刚性的函数,这导致了颗粒的运输。这种运输可以沿着刚性梯度向上或向下,这取决于梯度跨越的刚性的绝对值。我们得出结论,刚性梯度可用于在可变形膜上引导被动大分子和纳米颗粒的平均运动,从而导致大分子优先积聚在具有特定机械性能的区域。

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