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首页> 外文期刊>Biophysical Journal >Elasticity in ionically cross-linked neurofilament networks.
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Elasticity in ionically cross-linked neurofilament networks.

机译:离子交联神经膜网络中的弹性。

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摘要

Neurofilaments are found in abundance in the cytoskeleton of neurons, where they act as an intracellular framework protecting the neuron from external stresses. To elucidate the nature of the mechanical properties that provide this protection, we measure the linear and nonlinear viscoelastic properties of networks of neurofilaments. These networks are soft solids that exhibit dramatic strain stiffening above critical strains of 30-70%. Surprisingly, divalent ions such as Mg(2+), Ca(2+), and Zn(2+) act as effective cross-linkers for neurofilament networks, controlling their solidlike elastic response. This behavior is comparable to that of actin-binding proteins in reconstituted filamentous actin. We show that the elasticity of neurofilament networks is entropic in origin and is consistent with a model for cross-linked semiflexible networks, which we use to quantify the cross-linking by divalent ions.
机译:神经细胞被发现在神经元的细胞骨架中,它们用作保护神经元的细胞内骨架免受外部应激的细胞内骨架。 为了阐明提供这种保护的机械性能的性质,我们测量神经内血管网络的线性和非线性粘弹性性质。 这些网络是软固体,表现出显着的菌株浓度,高于临界菌株30-70%。 令人惊讶的是,如Mg(2+),Ca(2+)和Zn(2+)如Mg(2+),Ca(2+)的二价离子充当神经膜网络的有效交联剂,控制它们的固体静力响应。 这种行为与重构丝状肌动蛋白中的肌动蛋白结合蛋白的这种行为相当。 我们表明,神经膜网络的弹性起源于熵,与交联半弯曲网络的模型一致,我们用于量化二价离子的交联。

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