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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Multiscale Modeling of Primary Cilium Deformations Under Local Forces and Shear Flows

机译:APS-流体动力学APS部门第70届年会-事件-局部力和剪切流作用下的初级Ci骨变形的多尺度建模

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We study the detailed deformations of a primary cilium under local forces and shear flows by developing a multiscale model based on the state-of-the-art understanding of its molecular structure. Most eukaryotic cells are ciliated with primary cilia. Primary cilia play important roles in chemosensation, thermosensation, and mechanosensation, but the detailed mechanism for mechanosensation is not well understood. We apply the dissipative particle dynamics (DPD) to model an entire well with a primary cilium and consider its different components, including the basal body, microtubule doublets, actin cortex, and lipid bilayer. We calibrate the mechanical properties of individual components and their interactions from experimental measurements and molecular dynamics simulations. We validate the simulations by comparing the deformation profile of the cilium and the rotation of the basal body with optical trapping experiments. After validations, we investigate the deformation of the primary cilium under shear flows. Furthermore, we calculate the membrane tensions and cytoskeleton stresses, and use them to predict the activation of mechanosensitive channels.
机译:我们基于对分子结构的最新了解,通过开发多尺度模型来研究初级纤毛在局部力和剪切流作用下的详细变形。大多数真核细胞具有纤毛和纤毛。原发性纤毛在化学传感,热敏和机械传感中起着重要作用,但是机械传感的详细机制尚不清楚。我们应用耗散粒子动力学(DPD)对具有初级纤毛的整个孔进行建模,并考虑其不同成分,包括基体,微管双峰,肌动蛋白皮层和脂质双层。我们通过实验测量和分子动力学模拟来校准各个组件的机械性能及其相互作用。我们通过光学诱捕实验比较纤毛的变形轮廓和基体的旋转来验证仿真。验证后,我们研究剪切流作用下初级纤毛的变形。此外,我们计算膜张力和细胞骨架应力,并用它们来预测机械敏感通道的激活。

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