高压脉冲技术灭活小肠结肠炎耶尔森氏菌革兰氏阴性菌

P. Lubicki, J. D. Cross, Shesha H. Jayaram, B. Mazurek, Z. Staroniewicz
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引用次数: 6

摘要

以重复频率f=1 Hz施加峰值电压U=5 ~ 75 kV、上升次数t/sub p/=500 ~ 1300 ns的高压脉冲,使小肠结肠炎革兰氏阴性菌耶尔森菌(Y. enterocolitica)不可逆电穿孔。细菌悬浮在pH=7.2、电导率/spl γ /=0.8 ~ 1.3 S/m的NaCl溶液中。将悬浮液置于浸入圆柱形电极系统间隙的玻璃管中,其间填充蒸馏水。这种电极系统将保护细菌悬浮液免受由于导电和预击穿现象在电极-液界面的化学过程的影响。电流斩波电极系统与样品并联,以避免脉冲通过悬浮液直接放电产生热量。测定了大肠杆菌的存活率s=N/N/sub 0/(脉冲处理后每cm/sup 3/细菌数,N,除以处理前每cm/sup 3/细菌数,N/sub 0/)与脉冲峰值电压、脉冲次数和脉冲上升次数的关系。每cm/sup /,大肠杆菌活细胞减少6个数量级。结果表明,在不直接将细菌悬浮液暴露于电极的情况下,对细菌悬浮液施加短(t/sub p/<1000 ns)高压脉冲可以实现相当程度的微生物灭活。因此,可以使用所提出的电极系统作为液体食品灭菌的手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inactivation of Yersinia enterocolitica Gram-negative bacteria using high-voltage pulse technique
High voltage pulses of peak voltages U=5-75 kV and rise times t/sub p/=500-1300 ns were applied with repetition frequency f=1 Hz in order to cause the irreversible electroporation of Gram negative bacteria Yersinia enterocolitica (Y. enterocolitica). The bacteria were suspended in NaCl solution of pH=7.2 and conductivity /spl gamma/=0.8-1.3 S/m. The suspension was placed in glass tube immersed in the cylindrical electrode system gap filled with distilled water. Such an electrode system will protect the bacteria suspension from the chemical processes at the electrode-liquid interface due to conduction and prebreakdown phenomena. The current chopping electrode system was connected in parallel to the sample in order to avoid heat generation from direct discharge of the pulse through the suspension. The dependence of the survival ratio s=N/N/sub 0/ (the number of bacteria per cm/sup 3/ after pulse treatment, N, divided by the number of bacteria per cm/sup 3/ before treatment, N/sub 0/) of Y. enterocolitica on peak voltage of the pulse, number of pulses applied and on various rise times of pulses have been measured. The reduction by 6 orders of magnitude of Y. enterocolitica living cells per cm/sup 3/ was achieved. The results show that considerable inactivation of microbes can be achieved by the application of short (t/sub p/<1000 ns) high voltage pulses for bacteria suspension without directly exposing the bacteria suspension to the electrodes. It is therefore possible to use the electrode system proposed as a means for sterilization of liquid foods.
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