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脉冲电场与温度对微生物灭活的协同效应

Synergistic effect of pulsed electric fields and temperature on the inactivation of microorganisms.

作者信息

Yan Zeyao, Yin Li, Hao Chunjing, Liu Kefu, Qiu Jian

机构信息

Department of Light Sources and Illuminating Engineering; Academy for Engineering & Technology, Fudan University, Shanghai, 200433, China.

出版信息

AMB Express. 2021 Mar 23;11(1):47. doi: 10.1186/s13568-021-01206-8.

Abstract

Pulsed electric fields (PEF) as a new pasteurization technology played an important role in the process of inactivating microorganisms. At the same time, temperature could promote the process of electroporation, and achieve better inactivation effect. This article studied the inactivation effect of PEF on Saccharomyces cerevisiae, Escherichia coli, and Bacillus velezensis under different initial temperatures (room temperature-24 [Formula: see text], 30 [Formula: see text], 40 [Formula: see text], 50 [Formula: see text]). From the inactivation results, it found temperature could reduce the critical electric field intensity for microbial inactivation. After the irreversible electroporation of microorganisms occurred, the nucleic acid content and protein content in the suspension increased with the inactivation rate because the cell membrane integrity was destroyed. We had proved that the electric field and temperature could promote molecular transport through the finite element simulation. Under the same initial temperature and electrical parameters (electric field intensity, pulse width, pulse number), the lethal effect on different microorganisms was Saccharomyces cerevisiae > Escherichia coli > Bacillus velezensis.

摘要

脉冲电场(PEF)作为一种新型巴氏杀菌技术,在微生物灭活过程中发挥着重要作用。同时,温度可促进电穿孔过程,并实现更好的灭活效果。本文研究了不同初始温度(室温 - 24℃、30℃、40℃、50℃)下脉冲电场对酿酒酵母、大肠杆菌和贝莱斯芽孢杆菌的灭活效果。从灭活结果来看,发现温度可降低微生物灭活的临界电场强度。微生物发生不可逆电穿孔后,由于细胞膜完整性被破坏,悬浮液中的核酸含量和蛋白质含量随灭活率增加。我们通过有限元模拟证明了电场和温度可促进分子传输。在相同初始温度和电参数(电场强度、脉冲宽度、脉冲数)下,对不同微生物的致死效果为酿酒酵母>大肠杆菌>贝莱斯芽孢杆菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6632/7988035/cc5968739bcc/13568_2021_1206_Fig1_HTML.jpg

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