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Active Contact Forces Drive Nonequilibrium Fluctuations in Membrane Vesicles

机译:主动接触力驱动膜囊泡的非平衡波动

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We analyze the nonequilibrium shape fluctuations of giant unilamellar vesicles encapsulating motile bacteria. Owing to bacteria-membrane collisions, we experimentally observe a significant increase in the magnitude of membrane fluctuations at low wave numbers, compared to the well-known thermal fluctuation spectrum. We interrogate these results by numerically simulating membrane height fluctuations via a modified Langevin equation, which includes bacteria-membrane contact forces. Taking advantage of the lengthscale and timescale separation of these contact forces and thermal noise, we further corroborate our results with an approximate theoretical solution to the dynamical membrane equations. Our theory and simulations demonstrate excellent agreement with nonequilibrium fluctuations observed in experiments. Moreover, our theory reveals that the fluctuation-dissipation theorem is not broken by the bacteria; rather, membrane fluctuations can be decomposed into thermal and active components.
机译:我们分析封装运动细菌的巨大单层囊泡的非平衡形状波动。由于细菌与膜的碰撞,我们从实验上观察到,与众所周知的热波动谱相比,低波数时膜波动的幅度显着增加。我们通过修改的Langevin方程数值模拟膜的高度波动来询问这些结果,该方程包括细菌-膜的接触力。利用这些接触力和热噪声的长度尺度和时间尺度分离,我们用动力学膜方程的近似理论解进一步证实了我们的结果。我们的理论和仿真表明,与实验中观察到的非平衡波动具有极好的一致性。而且,我们的理论表明,波动耗散定理没有被细菌破坏;相反,膜的起伏可以分解为热和活性成分。

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  • 来源
    《Physical review letters》 |2020年第15期|158102.1-158102.6|共6页
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  • 作者单位

    Univ Calif Santa Barbara Dept Chem Engn Santa Barbara CA 93106 USA;

    Univ Calif Berkeley Dept Chem & Biomol Engn Berkeley CA 94720 USA;

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