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纳米颗粒渗透诱导水渗透、离子传输和脂质翻转。

Nanoparticle permeation induces water penetration, ion transport, and lipid flip-flop.

机构信息

Department of Chemical Engineering, University of Illinois at Chicago, 810 South Clinton Street, Chicago, Illinois 60607, USA.

出版信息

Langmuir. 2012 Dec 11;28(49):16989-7000. doi: 10.1021/la302879r. Epub 2012 Dec 3.

Abstract

Nanoparticles are generally considered excellent candidates for targeted drug delivery. However, ion leakage and cytotoxicity induced by nanoparticle permeation is a potential problem in such drug delivery schemes because of the toxic effect of many ions. In this study, we have carried out a series of coarse-grained molecular dynamics simulations to investigate the water penetration, ion transport, and lipid molecule flip-flop in a protein-free phospholipid bilayer membrane during nanoparticle permeation. The effect of ion concentration gradient, pressure differential across the membrane, nanoparticle size, and permeation velocity have been examined in this work. Some conclusions from our studies include (1) The number of water molecules in the interior of the membrane during the nanoparticle permeation increases with the nanoparticle size and the pressure differential across the membrane but is unaffected by the nanoparticle permeation velocity or the ion concentration gradient. (2) Ion transport is sensitive to the size of nanoparticle as well as the ion concentration gradient between two sides of the membrane; no anion/cation selectivity is observed for small nanoparticle permeation, while anions are preferentially translocated through the membrane when the size of nanoparticle is large enough. (3) Incidences of lipid molecule flip-flop increases with the size of nanoparticle and ion concentration gradient and decreases with the pressure differential and the nanoparticle permeation velocity.

摘要

纳米粒子通常被认为是靶向药物输送的优秀候选者。然而,由于许多离子的毒性作用,纳米粒子渗透引起的离子泄漏和细胞毒性是这种药物输送方案中的一个潜在问题。在这项研究中,我们进行了一系列粗粒度分子动力学模拟,以研究纳米粒子渗透过程中无蛋白磷脂双层膜中的水渗透、离子传输和脂质分子翻转。本工作考察了离子浓度梯度、膜两侧压差、纳米粒子尺寸和渗透速度对这些过程的影响。我们的研究得出了一些结论,包括:(1)在纳米粒子渗透过程中,膜内部的水分子数量随纳米粒子尺寸和膜两侧的压差而增加,但不受纳米粒子渗透速度或离子浓度梯度的影响。(2)离子传输对纳米粒子的尺寸以及膜两侧的离子浓度梯度都很敏感;对于小尺寸的纳米粒子渗透,没有观察到阴离子/阳离子选择性,而当纳米粒子尺寸足够大时,阴离子优先穿过膜。(3)脂质分子翻转的发生率随纳米粒子尺寸和离子浓度梯度的增加而增加,随膜两侧的压差和纳米粒子渗透速度的降低而降低。

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