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Anti-Staphylococcus aureus evaluation of gallic acid by isothermal microcalorimetry and principle component analysis

机译:通过等温微量微量微量测定法和原理成分分析的抗葡萄球菌评估小酸

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The emergence of antibiotic-resistant Staphylococcus aureus requires new antibacterial drugs. In this study, using a thermal activity monitor air isothermal microcalorimeter, the heat flow power-time curves of S. aureus growth at 37 degrees C in the presence of different concentrations of gallic acid were determined. By analyzing the metabolic curves and some quantitative thermo-kinetic parameters obtained from these curves with the help of principle component analysis (PCA), the antibacterial effects of gallic acid on S. aureus were rapidly and accurately evaluated. Growth rate constant k(2) of the second exponential phase and the maximum heat flow output power P-2 for S. aureus growth were selected as the two main parameters for the antibacterial evaluation. Results showed that 10 mu g mL(-1) of gallic acid began to inhibit the growth of S. aureus, and high concentrations (more than 20 mu g mL(-1)) of this compound exhibited strong anti-S. aureus effects. 63.51 mu g mL(-1) of gallic acid resulted in a 50% inhibitory ratio on S. aureus. All these illustrated that the anti-S. aureus effects were enhanced with increasing the concentration of this compound. Gallic acid can be used as a new natural and safe antibacterial drug for treating multidrug-resistant S. aureus. This work provided a useful idea of the combination of microcalorimetry and PCA for highly sensitive evaluation of the antibacterial effects of various compounds, providing reliable references for screening out new antibacterial drugs.
机译:抗生素抗性金黄色葡萄球菌的出现需要新的抗菌药物。在本研究中,使用热活性监测空气等温微量微量仪,测定了在存在不同浓度的小酸存在下37摄氏度在37摄氏度下生长的热流动力时间曲线。通过在原理成分分析(PCA)的帮助下,通过分析从这些曲线获得的代谢曲线和一些定量热动力学参数,迅速准确地评估了金黄色葡萄球菌对金黄色葡萄球菌的抗菌作用。第二指数阶段的生长速率常数K(2)和S.UUSTUS生长的最大热流输出功率P-2作为抗菌评估的两个主要参数。结果表明,该化合物的高浓度(大于20μg(-1))的高浓度(大于20μg)的高浓度(大于20μg))具有强烈的抗-s的高浓度(大于20μg(-1))的高浓度表现出强烈的抗-c。金黄色葡萄球菌效应。 63.51μgml(-1)的gallic酸导致S. aureus的50%抑制比。所有这些都说明了反秒。随着该化合物的浓度增加,AUREUS效应得到了增强。 Gallic acid可用作新的天然和安全的抗菌药物,用于治疗多药抗性的金黄色葡萄球菌。这项工作提供了微量离核和PCA组合的有用思想,以获得各种化合物的抗菌作用的高敏感性评估,提供可靠的参考来筛选出新的抗菌药物。

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