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Surface-anchored poly(acryloyl-L(D)-valine) with enhanced chirality-selective effect on cellular uptake of gold nanoparticles

机译:表面锚定的聚(丙烯酰基-L(D)-缬氨酸)对金纳米颗粒的细胞摄取具有增强的手性选择性作用

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摘要

Chirality is one of the ubiquitous phenomena in biological systems. The left handed (L-) amino acids and right handed (D-) sugars are normally found in proteins, and in RNAs and DNAs, respectively. The effect of chiral surfaces at the nanoscale on cellular uptake has, however, not been explored. This study reveals for the first time the molecular chirality on gold nanoparticles (AuNPs) functions as a direct regulator for cellular uptake. Monolayers of 2-mercaptoacetyl-L(D)-valine (L(D)-MAV) and poly(acryloyl-L(D)-valine (L(D)-PAV) chiral molecules were formed on AuNPs surface, respectively. The internalized amount of PAV-AuNPs was several times larger than that of MAV-AuNPs by A549 and HepG2 cells, regardless of the chirality difference. However, the D-PAV-AuNPs were internalized with significantly larger amount than the L-PAV-AuNPs. This chirality-dependent uptake effect is likely attributed to the preferable interaction between the L-phospholipid-based cell membrane and the D-enantiomers.
机译:手性是生物系统中普遍存在的现象之一。左手(L-)氨基酸和右手(D-)糖通常分别存在于蛋白质,RNA和DNA中。然而,尚未探索纳米级的手性表面对细胞摄取的影响。这项研究首次揭示了金纳米颗粒(AuNPs)上的分子手性充当细胞摄取的直接调节剂。在AuNPs表面分别形成2-巯基乙酰基-L(D)-缬氨酸(L(D)-MAV)和聚(丙烯酰-L(D)-缬氨酸(L(D)-PAV)手性分子的单层。不论手性如何,PAV-AuNPs的内在化量均比A549和HepG2细胞的MAV-AuNPs大数倍,但D-PAV-AuNPs的内化量明显大于L-PAV-AuNPs。这种手性依赖性的吸收作用可能归因于基于L-磷脂的细胞膜与D-对映异构体之间的优选相互作用。

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