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Lipid Nanodisc-Templated Self-Assembly of Gold Nanoparticles into Strings and Rings

机译:金纳米颗粒的脂质纳米纳米粉末模特自组装成弦和环

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Gold nanoparticles (AuNPs) exhibit strong fluorescent and electromagnetic properties, which can be enhanced upon clustering and used in therapeutic, imaging, and sensing, applications. A combination of gold nano particles with lipid nanodiscs can be attractive for AuNP self-assembly and useful in biomedical applications. Using molecular dynamics simulations we show that lipid nanodiscs can serve as templates for AuNP clustering into rings and string-like structures. We demonstrate that equilibrium encapsulation of 1 nm hydrophobically 11 modified AuNPs into lipid nanodiscs composed of a mixture of dipalmitoylphosphatidylcholine (DPPC) and dihexanoylphosphatidylcholine (DHPC) lipids occurs at the rim and results in formation of a ring of gold. The interior of the nanodisc is inaccessible to AuNPs due to the DPPC liquid crystalline order. With temperature increase the lipid order diminishes, initiating the nanodisc transformation into a vesicle, upon which encapsulated AuNPs cluster into a close-packed string or nanoring, thereby stalling the vesiculation process at a "round vase" or cup-like stage depending on the AuNP concentration. In contrast, encapsulation of AuNPs by an equilibrium lipid vesicle results in its deformation with randomly clustered AuNPs, in agreement_ with experimental observations. We characterize the AuNP cluster size and surface-to-surface pair distribution, both of which impact the AuNP luminescent properties. We investigate the effect of alkane tether length on the nanodisc stability and AuNP clustering inside the nanodiscs and vesicles. Our results show that lipid nanodiscs can enhance gold cluster formation, which can be further exploited in imaging applications.
机译:金纳米颗粒(AUNP)表现出强大的荧光和电磁特性,可以在聚类上进行增强,用于治疗,成像和传感,应用。金纳米颗粒与脂质纳米粒子的组合可以对AUNP自组装具有吸引力,可用于生物医学应用。使用分子动力学模拟,我们表明脂纳米DISC可以用作AUNP聚集成环的模板和串状结构。我们证明将1nM疏水性11改性的AuNP的平衡封装成脂质纳米蛋白组成的脂质纳米胺(DPPC)和二己酰基磷脂酰胆碱(DHPC)脂质的脂质纳米胺(DHPC)脂质发生并导致形成金环。由于DPPC液晶阶,南达克的内部无法进入AUNPS。随着温度的增加,脂质顺序减小,将纳米乐能变换成囊泡,在囊泡中封装在封闭串或纳米束中,从而取下根据AUNP的“圆形花瓶”或杯状阶段的分化过程专注。相比之下,通过平衡脂质囊泡封装AUNP,导致随机聚集的AUNPS在协议中的变形,具有实验观察。我们表征AUNP簇大小和表面到表面对分布,两者都影响AUNP发光属性。我们探讨了烷烃系绳长度对纳米粥样和囊泡内的纳米型稳定性和AUNP聚类的影响。我们的研究结果表明,脂质纳米DISC可以增强金簇形成,可以进一步利用成像应用。

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