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锚定但未内化:纳米金刚石的形状依赖内吞作用。

Anchored but not internalized: shape dependent endocytosis of nanodiamond.

机构信息

Department of Physics, The Chinese University of Hong Kong, Shatin, New Territory, Hong Kong.

Institute of Organic Chemistry and Biochemistry AS CR, v.v.i., Flemingovo nam. 2, 166 10 Prague 6, Czech Republic.

出版信息

Sci Rep. 2017 Apr 13;7:46462. doi: 10.1038/srep46462.

Abstract

Nanoparticle-cell interactions begin with the cellular uptake of the nanoparticles, a process that eventually determines their cellular fate. In the present work, we show that the morphological features of nanodiamonds (NDs) affect both the anchoring and internalization stages of their endocytosis. While a prickly ND (with sharp edges/corners) has no trouble of anchoring onto the plasma membrane, it suffers from difficult internalization afterwards. In comparison, the internalization of a round ND (obtained by selective etching of the prickly ND) is not limited by its lower anchoring amount and presents a much higher endocytosis amount. Molecular dynamics simulation and continuum modelling results suggest that the observed difference in the anchoring of round and prickly NDs likely results from the reduced contact surface area with the cell membrane of the former, while the energy penalty associated with membrane curvature generation, which is lower for a round ND, may explain its higher probability of the subsequent internalization.

摘要

纳米颗粒与细胞的相互作用始于纳米颗粒被细胞摄取,这一过程最终决定了它们在细胞内的命运。在本工作中,我们表明纳米金刚石(NDs)的形态特征影响其胞吞作用的锚定和内化阶段。虽然具有尖刺的 ND(具有锋利的边缘/角)毫不费力地锚定在质膜上,但随后的内化却很困难。相比之下,圆形 ND(通过选择性刻蚀具有尖刺的 ND 获得)的内化不受其较低的锚定量的限制,并且呈现出更高的胞吞作用量。分子动力学模拟和连续体建模结果表明,观察到的圆形和尖刺 ND 的锚定差异可能是由于前者与细胞膜的接触表面积减少所致,而对于圆形 ND 而言,与膜曲率生成相关的能量惩罚较低,这可能解释了其随后内化的更高概率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e874/5390292/e741a5e0dff3/srep46462-f1.jpg

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