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Partial wrapping and spontaneous endocytosis of spherical nanoparticles by tensionless lipid membranes

机译:无张力脂质膜对球形纳米颗粒的部分包裹和自发内吞作用

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Computer simulations of an implicit-solvent particle-based model are performed to investigate the interactions between small spherical nanoparticles and tensionless lipid bilayers. We found that nanoparticles are either unbound, wrapped by the bilayer, or endocytosed. The degree of wrapping increases with increasing the adhesion strength. The transition adhesion strength between the unbound and partially wrapped states decreases as the nanoparticle diameter is increased. We also observed that the transition adhesion strength between the wrapped states and endocytosis state decreases with increasing the nanoparticle diameter. The partial wrapping of the nanoparticles by the tensionless bilayer is explained by an elastic theory which accounts for the fact that the interaction between the nanoparticle and the bilayer extends beyond the contact region. The theory predicts that for small nanoparticles, the wrapping angle increases continuously with increasing the adhesion strength. However, for relatively large nanoparticles, the wrapping angle exhibits a discontinuity between weakly and strongly wrapped states. The size of the gap in the wrapping angle between the weakly wrapped and strongly wrapped states increases with decreasing the range of nanoparticle-bilayer interaction. (C) 2016 AIP Publishing LLC.
机译:进行了基于隐式溶剂颗粒模型的计算机模拟,以研究小球形纳米颗粒与无张力脂质双层之间的相互作用。我们发现纳米颗粒未结合,被双层包裹或被内吞。包裹程度随着粘附强度的增加而增加。随着纳米颗粒直径的增加,未结合状态和部分包裹状态之间的过渡粘合强度降低。我们还观察到包裹状态和胞吞状态之间的过渡粘合强度随纳米粒子直径的增加而降低。弹性理论解释了无张力双层对纳米颗粒的部分包裹,这解释了纳米颗粒与双层之间的相互作用超出接触区域这一事实。该理论预测,对于小的纳米颗粒,包裹角会随着粘附强度的增加而连续增加。然而,对于相对较大的纳米颗粒,包裹角在弱包裹状态和强包裹状态之间表现出不连续性。弱包裹状态和强包裹状态之间的包裹角间隙的大小随着纳米颗粒-双层相互作用范围的减小而增加。 (C)2016 AIP出版有限责任公司。

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