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Preceding treatment of non-thermal plasma (NTP) assisted the bactericidal effect of ultrasound on Staphylococcus aureus

机译:非热血浆(NTP)的前面治疗辅助超声对金黄色葡萄球菌的杀菌作用

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Ultrasound is a promising non-thermal inactivation technique. However, ultrasound treatment alone is not very effective. In this study, combined applications of ultrasound and non-thermal plasma (NTP) were assessed for their inactivation efficacy and the physiological change on Staphylococcus aureus cells. The lethal and sublethal injury induced by individual ultrasound, NTP, ultrasound-NTP (UP) and NTP-ultrasound treatments was determined by plate count method. Then, we applied fluorescent technology to demonstrate the physiological variations of S. aureus during various treatments. NTP exposure followed by ultrasound treatment exhibited the highest inactivation rate of S. aureus, Prior NTP helped to provide enough reactive oxygen species (ROS) dissolved in the medium, and the subsequent ultrasound assisted in the injection of ROS into S. aureus cells. This accelerated the reaction between ROS and intracellular biomolecules, which led to the rapid death of the microbes. On the contrary, S. aureus cells treated with ultrasound first were more likely to develop and enhance oxidative response, allowing S. aureus to resist toward the following NTP stressor. Therefore, the findings of this study may be used to the optimization of hurdle technologies of ultrasound and NTP in practice. (C) 2018 Elsevier Ltd. All rights reserved.
机译:超声波是一个有前途的非热灭活技术。然而,单独的超声处理不是很有效。在该研究中,评估超声和非热血浆(NTP)的组合应用,用于其灭活功效和金黄色葡萄球菌细胞的生理变化。通过板数法测定单个超声,NTP,超声-NTP(UP)和NTP超声处理诱导的致死和致死损伤。然后,我们应用荧光技术,以证明在各种治疗过程中S.UUREUS的生理变化。 NTP曝光之后的超声处理表现出S.UUREUS的最高灭活率,先前的NTP有助于提供溶解在培养基中的足够的活性氧物质(ROS),随后的超声波辅助将RO注射到金黄色葡萄球菌细胞中。这加速了ROS和细胞内生物分子之间的反应,这导致了微生物的快速死亡。相反,用超声处理的S.UUREUS细胞更容易发育和增强氧化反应,使S.UUREUS抗蚀于以下NTP压力源。因此,本研究的结果可用于在实践中优化超声波和NTP的障碍技术。 (c)2018年elestvier有限公司保留所有权利。

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