手性(物理)
抗菌剂
纳米纤维
抗菌肽
超分子化学
两亲性
肽
膜
超分子手性
化学
氨基酸
立体化学
纳米技术
分子
生物物理学
组合化学
材料科学
生物化学
有机化学
生物
聚合物
物理
手征对称破缺
量子力学
Nambu–Jona Lasinio模型
共聚物
夸克
作者
Yanyan Xie,Xiao-Tong Qin,Jiaxing Zhang,Mei-Yan Sun,Fengping Wang,Meimei Huang,Shiru Jia,Wei Qi,Yuefei Wang,Cheng Zhong
标识
DOI:10.1016/j.jcis.2022.04.058
摘要
The nanostructured antimicrobial agents, self-assembled by the antimicrobial peptides (AMPs), represent an intriguing platform for the treatment of pathogens. Although the structural characteristics significantly influence antimicrobial functionality, the role of chirality is usually ignored and still unclear. Herein, two homochiral AMPs (all L- or all D-amino acids), including C16-LV4LR4 (LL) and C16-DV4DR4 (DD), and a heterochiral AMP with alternating D-/L-amino acids, C16-DV4LR4 (DL), were self-assembled into left-handed, right-handed, and right-handed helical nanofibers, respectively. The valine configuration determined the supramolecular chirality of the nanofibers. However, the DL molecules exhibited a highly aggregated propensity to form more stable helical nanofibers with a lower degree of twist and a larger helical pitch. This characteristic resulted in the optimal antimicrobial activity of the DL nanofibers against both Gram-negative and Gram-positive bacteria. Furthermore, the membrane permeability assay confirmed the higher activity for damaging the cell membrane by the DL nanofibers. These results demonstrated the significance of molecular chirality in directing the self-assembly of the amphiphilic peptides, eventually affecting their antimicrobial activity. This study opens up the possibility to fabricate promising nanostructured antimicrobial materials by controlling the chirality and structure of the materials.
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