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首页> 外文期刊>Journal of Medicinal Chemistry >Antibacterial and Antibiofilm Activity of Cationic Small Molecules with Spatial Positioning of Hydrophobicity: An in Vitro and in Vivo Evaluation
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Antibacterial and Antibiofilm Activity of Cationic Small Molecules with Spatial Positioning of Hydrophobicity: An in Vitro and in Vivo Evaluation

机译:具有疏水性空间定位的阳离子小分子的抗菌和生物膜活性:体外和体内评价。

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More than 80% of the bacterial infections are associated with biofilm formation. To combat infections, amphiphilic small molecules have been developed as promising antibiofilm agents. However, cytotoxicity of such molecules still remains a major problem. Herein we demonstrate a concept in which antibacterial versus cytotoxic activities of cationic small molecules are tuned by spatial positioning of hydrophobic moieties while keeping positive charges constant. Compared to the molecules with more pendent hydrophobicity from positive centers (MIC = 1-4 mu g/mL and HC50 = 60-65 mu g/mL), molecules with more confined hydrophobicity between two centers show similar antibacterial activity but significantly less toxicity toward human erythrocytes (MIC = 1-4 mu g/mL and HC50 = 805-1242 mu g/mL). Notably, the optimized molecule is shown to be nontoxic toward human cells (HEK 293) at a concentration at which it eradicates established bacterial biofilms. The molecule is also shown to eradicate preformed bacterial biofilm in vivo in a murine model of superficial skin infection.
机译:超过80%的细菌感染与生物膜形成有关。为了对抗感染,已经开发出两亲小分子作为有前途的抗生物膜剂。但是,此类分子的细胞毒性仍然是主要问题。在本文中,我们证明了一个概念,其中阳离子小分子的抗菌和细胞毒活性通过疏水部分的空间定位来调节,同时保持正电荷恒定。与来自阳性中心的疏水性较高的分子(MIC = 1-4μg / mL和HC50 = 60-65μg/ mL)相比,在两个中心之间疏水性更强的分子显示出相似的抗菌活性,但对毒性的毒性明显降低人红细胞(MIC = 1-4μg / mL,HC50 = 805-1242μg / mL)。值得注意的是,优化的分子在消除已建立的细菌生物膜的浓度下对人细胞(HEK 293)无毒。该分子还显示出在浅表皮肤感染的鼠模型中体内消灭了预先形成的细菌生物膜。

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