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Bactericidal Effects and Mechanism of Action of Olanexidine Gluconate a New Antiseptic

机译:新型杀菌剂葡糖酸奥拉西定的杀菌作用及作用机理

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摘要

Olanexidine gluconate [1-(3,4-dichlorobenzyl)-5-octylbiguanide gluconate] (development code OPB-2045G) is a new monobiguanide compound with bactericidal activity. In this study, we assessed its spectrum of bactericidal activity and mechanism of action. The minimal bactericidal concentrations of the compound for 30-, 60-, and 180-s exposures were determined with the microdilution method using a neutralizer against 320 bacterial strains from culture collections and clinical isolates. Based on the results, the estimated bactericidal olanexidine concentrations with 180-s exposures were 869 μg/ml for Gram-positive cocci (155 strains), 109 μg/ml for Gram-positive bacilli (29 strains), and 434 μg/ml for Gram-negative bacteria (136 strains). Olanexidine was active against a wide range of bacteria, especially Gram-positive cocci, including methicillin-resistant Staphylococcus aureus and vancomycin-resistant enterococci, and had a spectrum of bactericidal activity comparable to that of commercial antiseptics, such as chlorhexidine and povidone-iodine. In vitro experiments exploring its mechanism of action indicated that olanexidine (i) interacts with the bacterial surface molecules, such as lipopolysaccharide and lipoteichoic acid, (ii) disrupts the cell membranes of liposomes, which are artificial bacterial membrane models, (iii) enhances the membrane permeability of Escherichia coli, (iv) disrupts the membrane integrity of S. aureus, and (v) denatures proteins at relatively high concentrations (≥160 μg/ml). These results indicate that olanexidine probably binds to the cell membrane, disrupts membrane integrity, and its bacteriostatic and bactericidal effects are caused by irreversible leakage of intracellular components. At relatively high concentrations, olanexidine aggregates cells by denaturing proteins. This mechanism differs slightly from that of a similar biguanide compound, chlorhexidine.
机译:葡萄糖酸奥尼西定[1-(3,4-二氯苄基)-5-辛基双胍葡萄糖酸酯](开发代码OPB-2045G)是一种具有杀菌活性的新型单双胍化合物。在这项研究中,我们评估了其杀菌活性谱和作用机理。使用微量稀释法,使用中和剂针对培养物和临床分离物中的320种细菌菌株,通过微量稀释法确定化合物在30、60和180秒暴露下的最低杀菌浓度。根据结果​​,对于革兰氏阳性球菌(155株),暴露于180秒的奥兰西定杀菌浓度估计为869μg/ ml,对于革兰氏阳性杆菌(29株)为109μg/ ml,对于革兰氏阳性杆菌(29株)为434μg/ ml革兰氏阴性细菌(136株)。奥兰西定对多种细菌具有活性,尤其是革兰氏阳性球菌,包括耐甲氧西林的金黄色葡萄球菌和耐万古霉素的肠球菌,其杀菌活性与商业杀菌剂如洗必泰和聚维酮碘相当。探索其作用机理的体外实验表明,奥兰西定(i)与细菌表面分子如脂多糖和脂蛋白酸相互作用,(ii)破坏脂质体的细胞膜,这是人工细菌膜模型,(iii)增强了脂质体的细胞膜。大肠杆菌的膜通透性,(iv)破坏金黄色葡萄球菌的膜完整性,并且(v)在相对较高的浓度(≥160μg/ ml)下使蛋白质变性。这些结果表明,olanexidine可能与细胞膜结合,破坏膜的完整性,并且其抑菌和杀菌作用是由细胞内成分的不可逆泄漏引起的。在相对较高的浓度下,olanexidine通过使蛋白质变性来聚集细胞。该机理与相似的双胍化合物洗必太略有不同。

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