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Inactivation of Escherichia coli Using Nanosecond Electric Fields and Nisin Nanoparticles: A Kinetics Study

机译:使用纳秒电场和乳链菌肽纳米颗粒灭活大肠杆菌的动力学研究

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摘要

Nisin is a recognized bacteriocin widely used in food processing, however, being ineffective against gram-negative bacteria and in complex food systems. As a result, the research of methods that have cell wall–permeabilizing activity is required. In this study, electroporation to trigger sensitization of gram-negative bacteria to nisin-loaded pectin nanoparticles was used. As a model microorganism, bioluminescent strain of E. coli was introduced. Inactivation kinetics using nanosecond pulsed electric fields (PEFs) and nisin nanoparticles have been studied in a broad range (100–900 ns, 10–30 kV/cm) of pulse parameters. As a reference, the microsecond range protocols (100 μs × 8) have been applied. It was determined that the 20–30 kV/cm electric field with pulse duration ranging from 500 to 900 ns was sufficient to cause significant permeabilization of E. coli to trigger a synergistic response with the nisin treatment. The kinetics of the inactivation was studied with a time resolution of 2.5 min, which provided experimental evidence that the efficacy of nisin-based treatment can be effectively controlled in time using PEF. The results and the proposed methodology for rapid detection of bacteria inactivation rate based on bioluminescence may be useful in the development and optimization of protocols for PEF-based treatments.
机译:乳链菌肽是公认的细菌素,广泛用于食品加工中,但是对革兰氏阴性菌和复杂的食品系统无效。因此,需要研究具有细胞壁通透活性的方法。在这项研究中,使用电穿孔来引发革兰氏阴性细菌对乳链菌素负载的果胶纳米颗粒的致敏作用。作为模型微生物,引入了大肠杆菌的生物发光菌株。使用纳秒脉冲电场(PEFs)和乳链菌肽纳米颗粒的失活动力学已经在广泛的脉冲参数范围(100–900 ns,10–30 kV / cm)中进行了研究。作为参考,已应用了微秒范围协议(100μs×8)。已确定,脉冲持续时间为500到900 ns的20–30 kV / cm电场足以引起大肠杆菌的明显通透性,从而引发与乳链菌肽处理的协同反应。以2.5分钟的时间分辨率研究了灭活的动力学,这提供了实验证据,证明使用PEF可以及时有效地控制基于乳链菌肽的治疗的功效。结果和拟议的方法,用于基于生物发光的细菌灭活速率的快速检测可能在基于PEF的治疗方案的开发和优化中有用。

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