Three dimensional modeling of axonal microtubules

F. Manuchehrfar, A. Shamloo
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Abstract

Axon is a filament in neuronal system and axonal microtubules are bundles in axons. In axons, microtubules are coated with microtubule-associated protein tau, a natively unfolded profuse filamentous protein in the central nervous system. These proteins are responsible for the cross-linked structure of the axonal microtubule bundles. Through complimentary dimerization with other tau proteins, bridges are formed to nearby microtubules to create bundles. The transverse reinforcement of microtubules by cross-linking to the cytoskeleton has been shown to enhance their ability to bear compressive loads. Though microtubules are conventionally regarded as bearing compressive loads, in certain circumstances such as in traumatic stretch injury, they are placed in tension. We employ Standard Linear Solid, a viscoelastic model, to computationally simulate microtubules. This study investigates the dynamic response of two dimensional axonal microtubules under suddenly applied end forces. We obtain the results for steady state behavior of axonal microtubule for different forces.
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轴突微管的三维建模
轴突是神经系统中的细丝,轴突微管是轴突中的束。在轴突中,微管被微管相关蛋白tau包裹,这是一种在中枢神经系统中天然未折叠的大量丝状蛋白。这些蛋白质负责轴突微管束的交联结构。通过与其他tau蛋白的互补二聚化,与附近的微管形成桥接,形成束。通过与细胞骨架交联的微管横向增强已被证明可以增强其承受压缩载荷的能力。虽然微管通常被认为是承受压缩载荷,但在某些情况下,例如在创伤性拉伸损伤中,它们被置于张力状态。我们采用标准线性固体,粘弹性模型,计算模拟微管。本文研究了二维轴突微管在突然施加的末端力作用下的动态响应。得到了轴突微管在不同力作用下的稳态行为。
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