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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >A zinc complex of a neutral pyridine-based amphiphile: a highly efficient and potentially therapeutic bactericidal material
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A zinc complex of a neutral pyridine-based amphiphile: a highly efficient and potentially therapeutic bactericidal material

机译:中性吡啶基两亲物的锌配合物:一种高效且可能具有治疗作用的杀菌材料

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摘要

The alarming rise in antibiotic-resistant pathogenic bacteria demands a prudent approach in the generation of therapeutic antibacterials. The present study illustrates the development of a potent amphiphilic bactericidal material tailored to leverage interactions with metal-reactive groups (MRGs) present in the bacterial cell surface envelope. Complexation of Zn(II) with a neutral pyridine-based synthetic amphiphile (C1) generated the cationic C1-Zn, which exhibited manyfold higher membrane-directed bactericidal activity compared to the neutral C1, or the cationic amphiphile bearing two pyridinium head groups (C2). The relevance of MRGs in C1-Zn-bacteria interactions was validated by amphiphile-bacteria binding studies and metal protection assays performed with Mg(II). C1-Zn retained its bactericidal activity even in simulated gastric fluid (SGF) and the enhanced membrane-directed bactericidal activity of C1-Zn could be garnered in adjuvant applications to increase the efficacy of the therapeutic antibiotic erythromycin. Given the relevance of Zn(II) in S. aureus biofilm formation, the antibiofilm potential of the amphiphile C1 realized through Zn(II) complexation could be demonstrated. The lack of resistance in target bacteria coupled with a favorable therapeutic index (IC50/MIC) and non-toxic nature hold significant implications for C1-Zn as a potential antibacterial therapeutic material.
机译:抗生素耐药性致病菌的惊人增长要求在治疗性抗菌剂的产生中采取审慎的方法。本研究说明了一种有效的两亲杀菌材料的开发,该材料经过调整可利用与细菌细胞表面包膜中存在的金属反应性基团(MRG)的相互作用。 Zn(II)与中性吡啶基合成两亲物(C1)的络合生成阳离子C1-Zn,与中性C1或带有两个吡啶鎓头基的阳离子两亲物相比,阳离子C1-Zn具有更高的膜定向杀菌活性(C2 )。通过两亲细菌结合研究和用Mg(II)进行的金属保护分析验证了MRG在C1-Zn-细菌相互作用中的相关性。即使在模拟胃液(SGF)中,C1-Zn仍保持其杀菌活性,在佐剂应用中可提高C1-Zn的膜定向杀菌活性,以提高治疗性红霉素的疗效。鉴于Zn(II)在金黄色葡萄球菌生物膜形成中的相关性,可以证明通过Zn(II)络合实现的两亲性C1的抗生物膜潜力。目标细菌缺乏抗药性,加上良好的治疗指数(IC50 / MIC)和无毒性质,对C1-Zn作为潜在的抗菌治疗材料具有重要意义。

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