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Modeling of retrograde nanoparticle transport in axons and dendrites

机译:轴突和树突中逆行纳米粒子运输的建模。

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This paper presents a pioneering modeling study on nanoparticle internalization and transport in neurons. The model developed in this paper is based on recent experimental results that indicate that after entering a neurite by endocytosis, nanoparticles are transported toward the neuron soma in endocytic vesicles by retrograde molecular-motor-driven transport. Experimental results also indicate that nanoparticles enter axons at axon terminals while in dendrites they enter through the entire plasma membrane. The model equations developed in this paper are based on these experimental observations. The analytical solution of these equations is obtained; the solution predicts the distribution of the concentration of nanoparticles associated with free nanoparticle-loaded vesicles (NLVs) (not transported on microtubules (MTs)) as well as the distribution of the concentration of nanoparticles associated with NLVs transported on MTs by dynein motors. The fluxes of nanoparticles by diffusion and motor-driven transport as well as the total (combined) flux of nanoparticles are also predicted.
机译:本文提出了关于神经元中纳米粒子内在化和转运的开创性建模研究。本文基于最近的实验结果开发的模型表明,通过内吞作用进入神经突后,纳米颗粒通过逆行分子马达驱动的运输作用向内吞小泡中的神经元体运输。实验结果还表明,纳米粒子在轴突末端进入轴突,而在树突中,它们穿过整个质膜进入。本文开发的模型方程式基于这些实验观察结果。得到这些方程的解析解。该解决方案预测了与游离纳米颗粒负载囊泡(NLV)相关联的纳米颗粒的浓度分布(未在微管(MTs)上运输),以及与由达因马达驱动的MTs上运输的NLVs相关的纳米颗粒浓度分布。还预测了通过扩散和电机驱动的运输而产生的纳米粒子通量,以及纳米粒子的总(组合)通量。

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