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Membrane-Targeting DCAP Analogues with Broad-Spectrum Antibiotic Activity against Pathogenic Bacteria

机译:膜靶向DCAP类似物具有针对病原菌的广谱抗生素活性

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We performed a structure activity relationship study of 2-((3-(3,6-dichloro-9H-carbazol-9-yl)-2-hydroxypropyl)amino)-2-(hydroxymethyl)propane-1,3-diol (DCAP), which is an antibacterial agent that disrupts the membrane potential and permeability of bacteria. The stereochemistry of DCAP had no effect on the biological activity of DCAP. The aromaticity and electronegativity of the chlorine-substituted carbazole was required for activity, suggesting that its planar and dipolar characteristics orient DCAP in membranes. Increasing the hydrophobicity of the tail region of DCAP enhanced its antibiotic activity. Two DCAP analogues displayed promising antibacterial activity against the BSL-3 pathogens Bacillus anthracis and Francisella tularensis. Codosing DCAP analogues with ampicillin or kanamycin increased their potency. These studies demonstrate that DCAP and its analogues may be a promising scaffold for developing chemotherapeutic agents that bind to bacterial membranes and kill strains of slow-growing or dormant bacteria that cause persistent infections.
机译:我们进行了2-((3-(3,6-dichloro-9H-carbazol-9-yl)-2-羟丙基)氨基)-2-(羟甲基)丙烷-1,3-二醇( DCAP),它是一种破坏细菌膜电位和渗透性的抗菌剂。 DCAP的立体化学对DCAP的生物学活性没有影响。氯取代咔唑的芳香性和电负性是活性所必需的,表明其平面和偶极特性使膜中的DCAP定向。增加DCAP尾部区域的疏水性可增强其抗生素活性。两种DCAP类似物显示出对BSL-3病原菌炭疽芽孢杆菌和土拉弗朗西斯菌的有希望的抗菌活性。将DCAP类似物与氨苄西林或卡那霉素共同添加可增强其效力。这些研究表明,DCAP及其类似物可能是开发与细胞膜结合并杀死导致持续感染的缓慢生长或休眠细菌菌株的化学治疗剂的有希望的支架。

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