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Long-lived anomalous thermal diffusion induced by elastic cell membranes on nearby particles

机译:弹性细胞膜在附近粒子上引起的长寿命异常热扩散

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摘要

The physical approach of a small particle (virus, medical drug) to the cell membrane represents the crucial first step before active internalization and is governed by thermal diffusion. Using a fully analytical theory we show that the stretching and bending of the elastic membrane by the approaching particle induces a memory in the system, which leads to anomalous diffusion, even though the particle is immersed in a purely Newtonian liquid. For typical cell membranes the transient subdiffusive regime extends beyond 10 ms and can enhance residence times and possibly binding rates up to 50%. Our analytical predictions are validated by numerical simulations.
机译:小颗粒(病毒,药物)到达细胞膜的物理方法代表了主动内在化之前的关键第一步,并且受热扩散控制。使用完全分析的理论,我们表明,接近的粒子对弹性膜的拉伸和弯曲会在系统中引起记忆,即使粒子浸入纯牛顿液体中,也会导致异常扩散。对于典型的细胞膜,瞬态亚扩散机制会延长10毫秒以上,并可能增加停留时间,并可能使结合率提高到50%。我们的分析预测已通过数值模拟验证。

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