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具有选择性抗菌活性的膜靶向脂肽的设计与溶液相合成

Design and Solution-Phase Synthesis of Membrane-Targeting Lipopeptides with Selective Antibacterial Activity.

作者信息

Konai Mohini M, Adhikary Utsarga, Haldar Jayanta

机构信息

Antimicrobial Research Laboratory, New Chemistry Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bengaluru, 560064, Karnataka, India.

出版信息

Chemistry. 2017 Sep 18;23(52):12853-12860. doi: 10.1002/chem.201702227. Epub 2017 Aug 21.

Abstract

Designing selective antibacterial molecules remains an unmet goal in the field of membrane-targeting agents. Herein, we report the rational design and synthesis of a new class of lipopeptides, which possess highly selective bacterial killing over mammalian cells. The selective interaction with bacterial over mammalian membranes was established through various spectroscopic, as well as microscopic experiments, including biophysical studies with the model membranes. A detailed antibacterial structure-activity relationship was delineated after preparing a series of molecules consisting of the peptide moieties with varied sequence of amino acids, such as d-phenylalanine, d-leucine, and d-lysine. Antibacterial activity was found to vary with the nature and positioning of hydrophobicity in the molecules, as well as number of positive charges. Optimized lipopeptide 9 did not show any hemolytic activity even at 1000 μg mL and displayed >200-fold and >100-fold selectivity towards S. aureus and E. coli, respectively. More importantly, compound 9 was found to display good antibacterial activity (MIC 6.3-12.5 μg mL ) against the five top most critical bacteria according to World Health Organization (WHO) priority pathogens list. Therefore, the results suggested that this new class of lipopeptides bear real promises for the development as future antibacterial agents.

摘要

设计选择性抗菌分子仍然是膜靶向剂领域尚未实现的目标。在此,我们报告了一类新型脂肽的合理设计与合成,这类脂肽对哺乳动物细胞具有高度选择性的杀菌作用。通过各种光谱实验以及显微镜实验,包括与模型膜的生物物理研究,确定了其与细菌膜而非哺乳动物膜的选择性相互作用。在制备了一系列由具有不同氨基酸序列(如d-苯丙氨酸、d-亮氨酸和d-赖氨酸)的肽部分组成的分子后,描绘了详细的抗菌构效关系。发现抗菌活性随分子中疏水性的性质和位置以及正电荷数量而变化。优化后的脂肽9即使在1000μg/mL时也未表现出任何溶血活性,对金黄色葡萄球菌和大肠杆菌的选择性分别大于200倍和100倍。更重要的是,根据世界卫生组织(WHO)重点病原体清单,发现化合物9对五种最关键的细菌具有良好的抗菌活性(MIC为6.3 - 12.5μg/mL)。因此,结果表明这类新型脂肽作为未来抗菌剂的开发具有真正的前景。

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