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Design and synthesis of amphiphilic xanthone-based, membrane-targeting antimicrobials with improved membrane selectivity

机译:设计和合成具有改进的膜选择性的基于两性黄酮的靶向膜的抗微生物剂

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This work describes how to tune the amphiphilic conformation of α-mangostin, a natural compound that contains a hydrophobic xanthone scaffold, to improve its antimicrobial activity and selectivity for Gram-positive bacteria. A series of xanthone derivatives was obtained by cationic modification of the free C3 and C6 hydroxyl groups of α-mangostin with amine groups of different pK_a values. Modified structures using moieties with high pK_a values, such as AM-0016 (3b), exhibited potent antimicrobial properties against Gram-positive bacteria. Compound 3b also killed bacteria rapidly without inducing drug resistance and was nontoxic when applied topically. Biophysical studies and molecular dynamics simulations revealed that 3b targets the bacterial inner membrane, forming an amphiphilic conformation at the hydrophobic-water interface. In contrast, moieties with low pK_a values reduced the antimicrobial activity of the parent compound when conjugated to the xanthone scaffold. This strategy provides a new way to improve "hits" for the development of membrane-active antibiotics that target drug-resistant pathogens.
机译:这项工作描述了如何调整α-芒果的两亲构象,α-芒果是一种天然化合物,含有疏水性的蒽酮骨架,以提高其抗菌活性和对革兰氏阳性细菌的选择性。通过用不同pK_a值的胺基对α-芒果的游离C3和C6羟基进行阳离子修饰,获得了一系列的an吨酮衍生物。使用具有高pK_a值的部分(例如AM-0016(3b))修饰的结构表现出对革兰氏阳性细菌的有效抗菌性能。化合物3b也迅速杀死细菌而不引起耐药性,并且当局部施用时是无毒的。生物物理研究和分子动力学模拟表明3b靶向细菌内膜,在疏水-水界面形成两亲构象。相反,具有低pK_a值的部分在与x吨酮骨架偶联时会降低母体化合物的抗菌活性。该策略为改善针对耐药性病原体的膜活性抗生素的开发提供了新的途径。

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