首页> 外文OA文献 >Inhibition of the Autolytic System by Vancomycin Causes Mimicry of Vancomycin-Intermediate Staphylococcus aureus-Type Resistance, Cell Concentration Dependence of the MIC, and Antibiotic Tolerance in Vancomycin-Susceptible S. aureus
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Inhibition of the Autolytic System by Vancomycin Causes Mimicry of Vancomycin-Intermediate Staphylococcus aureus-Type Resistance, Cell Concentration Dependence of the MIC, and Antibiotic Tolerance in Vancomycin-Susceptible S. aureus

机译:万古霉素对自溶系统的抑制导致模仿万古霉素中间金黄色葡萄球菌型耐药,MIC的细胞浓度依赖性以及对万古霉素敏感的金黄色葡萄球菌的抗生素耐受性

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摘要

Treatment of the fully vancomycin-susceptible Staphylococcus aureus strain COL with subinhibitory concentrations of vancomycin allowed its continued growth but generated a phenotype reminiscent of some S. aureus isolates with vancomycin-intermediate S. aureus (VISA)-type resistance: the bacteria grew in multicellular clusters; electron microscopy showed inhibition of cell separation and accumulation of amorphous cell wall-like material at the bacterial surface. Titration of free vancomycin showed a gradual disappearance of the drug from the medium, which—eventually—coincided with an increase in the growth rate, burst in viable titer, and dispersal of cellular clusters. Addition of inhibitory concentrations of vancomycin to the same strain at a higher cell concentration caused a very different—antibiotic-tolerant—response: an immediate halt in growth, followed by a prolonged lag, during which there was neither a loss of viable titer or optical density nor a change in cell morphology but a gradual removal of vancomycin from the medium to the cell wall of the bacterium, from which the antibiotic could be recovered in a biologically active form. Eventually, the drug-treated culture resumed normal growth. The transient appearance of both the VISA phenotype and vancomycin tolerance could be traced to the inhibition of the autolytic system of the bacterium by vancomycin molecules attached to the cell wall, blocking the access of a staphylococcal murein hydrolase(s) to its cell wall substrate.
机译:用亚抑制浓度的万古霉素处理对万古霉素敏感的金黄色葡萄球菌菌株COL使其继续生长,但产生的表型让人想起某些具有万古霉素中间金黄色葡萄球菌(VISA)型抗性的金黄色葡萄球菌分离株:细菌在多细胞中生长集群电子显微镜显示抑制细胞分离和在细菌表面聚集无定形细胞壁样物质。游离万古霉素的滴定表明药物从培养基中逐渐消失,最终伴随着生长速率的增加,活性滴度的爆发和细胞团的分散。在较高细胞浓度下将抑制浓度的万古霉素添加到同一菌株中会引起非常不同的(抗生素耐受性)反应:生长立即停止,随后是长时间的延迟,在此期间既不丧失活度滴度也没有光学滴度密度和细胞形态没有变化,而是从培养基中逐渐除去万古霉素到细菌的细胞壁,由此可以以生物活性形式从中回收抗生素。最终,药物处理的培养物恢复了正常的生长。 VISA表型和万古霉素耐受性的瞬时出现可以归因于附着在细胞壁上的万古霉素分子对细菌自溶系统的抑制,从而阻止了葡萄球菌莫来蛋白酶水解酶进入其细胞壁底物。

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