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两亲性Janus纳米颗粒诱导脂质双层破坏的计算研究:Janus平衡和带电脂质浓度的联合效应

Computational investigation on lipid bilayer disruption induced by amphiphilic Janus nanoparticles: combined effect of Janus balance and charged lipid concentration.

作者信息

Nguyen Danh, Wu James, Corrigan Patrick, Li Ying

机构信息

Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Nanoscale. 2023 Oct 12;15(39):16112-16130. doi: 10.1039/d3nr00403a.

Abstract

Janus nanoparticles (NPs) with charged/hydrophobic compartments have garnered attention for their potential antimicrobial activity. These NPs have been shown to disrupt lipid bilayers in experimental studies, yet the underlying mechanisms of this disruption at the particle-membrane interface remain unclear. To address this knowledge gap, the present study conducts a computational investigation to systematically examine the disruption of lipid bilayers induced by amphiphilic Janus NPs. The focus of this study is on the combined effects of the hydrophobicity of the Janus NP, referred to as the Janus balance, defined as the ratio of hydrophilic to hydrophobic surface coverage, and the concentration of charged phospholipids on the interactions between Janus NPs and lipid bilayers. Computational simulations were conducted using a coarse-grained molecular dynamics (MD) approach. The results of these MD simulations reveal that while the area change of the bilayer increases monotonically with the Janus balance, the effect of charged lipid concentration in the membrane is not easy to be predicted. Specifically, it was found that the concentration of negatively charged lipids is directly proportional to the intensity of membrane disruption. Conversely, positively charged lipids have a negligible effect on membrane defects. This study provides molecular insights into the significant role of Janus balance in the disruption of lipid bilayers by Janus NPs and supports the selectivity of Janus NPs for negatively charged lipid membranes. Furthermore, the anisotropic properties of Janus NPs were found to play a crucial role in their ability to disrupt the membrane the combination of hydrophobic and electrostatic interactions. This finding is validated by testing the current Janus NP design on a bacterial membrane-mimicking model. This computational study may serve as a foundation for further studies aimed at optimizing the properties of Janus NPs for specific antimicrobial applications.

摘要

具有带电/疏水隔室的Janus纳米颗粒(NPs)因其潜在的抗菌活性而受到关注。在实验研究中,这些纳米颗粒已被证明会破坏脂质双层,但在颗粒-膜界面处这种破坏的潜在机制仍不清楚。为了填补这一知识空白,本研究进行了一项计算研究,以系统地研究两亲性Janus纳米颗粒诱导的脂质双层破坏。本研究的重点是Janus纳米颗粒的疏水性(称为Janus平衡,定义为亲水表面覆盖率与疏水表面覆盖率之比)和带电磷脂浓度对Janus纳米颗粒与脂质双层之间相互作用的综合影响。使用粗粒度分子动力学(MD)方法进行了计算模拟。这些MD模拟的结果表明,虽然双层的面积变化随Janus平衡单调增加,但膜中带电脂质浓度的影响却不容易预测。具体而言,发现带负电荷脂质的浓度与膜破坏强度成正比。相反,带正电荷的脂质对膜缺陷的影响可忽略不计。本研究提供了分子层面的见解,揭示了Janus平衡在Janus纳米颗粒破坏脂质双层中的重要作用,并支持Janus纳米颗粒对带负电荷脂质膜的选择性。此外,发现Janus纳米颗粒的各向异性特性在其破坏膜的能力中起着关键作用——疏水和静电相互作用的结合。通过在细菌膜模拟模型上测试当前的Janus纳米颗粒设计,验证了这一发现。这项计算研究可为进一步优化Janus纳米颗粒的性能以用于特定抗菌应用的研究奠定基础。

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