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高压处理与选择障碍相结合:增强对营养体微生物的灭活效果。

High pressure processing combined with selected hurdles: Enhancement in the inactivation of vegetative microorganisms.

机构信息

College of Food Science and Nutritional Engineering, National Engineering Research Center for Fruit and Vegetable Processing, Key Laboratory of Fruit and Vegetable Processing of Ministry of Agriculture and Rural Affairs, Beijing Key Laboratory for Food Non-Thermal Processing, China Agricultural University, Beijing, 100083, China.

出版信息

Compr Rev Food Sci Food Saf. 2021 Mar;20(2):1800-1828. doi: 10.1111/1541-4337.12724. Epub 2021 Feb 16.

Abstract

High pressure processing (HPP) as a nonthermal processing (NTP) technology can ensure microbial safety to some extent without compromising food quality. However, for vegetative microorganisms, the existence of pressure-resistant subpopulations, the revival of sublethal injury (SLI) state cells, and the resuscitation of viable but nonculturable (VBNC) state cells may constitute potential food safety risks and pose challenges for the further development of HPP application. HPP combined with selected hurdles, such as moderately elevated or low temperature, low pH, natural antimicrobials (bacteriocin, lactate, reuterin, endolysin, lactoferrin, lactoperoxidase system, chitosan, essential oils), or other NTP (CO , UV-TiO photocatalysis, ultrasound, pulsed electric field, ultrafiltration), have been highlighted as feasible alternatives to enhance microbial inactivation (synergistic or additive effect). These combinations can effectively eliminate the pressure-resistant subpopulation, reduce the population of SLI or VBNC state cells and inhibit their revival or resuscitation. This review provides an updated overview of the microbial inactivation by the combination of HPP and selected hurdles and restructures the possible inactivation mechanisms.

摘要

高压处理(HPP)作为一种非热加工(NTP)技术,在不影响食品质量的情况下,在一定程度上可以确保微生物的安全性。然而,对于营养细胞,压力抗性亚群的存在、亚致死损伤(SLI)状态细胞的复苏以及可培养但不可培养(VBNC)状态细胞的复苏可能构成潜在的食品安全风险,并对 HPP 应用的进一步发展构成挑战。HPP 与选择的障碍相结合,如适度升高或降低温度、低 pH 值、天然抗菌剂(细菌素、乳酸、雷菌素、内切酶、乳铁蛋白、乳过氧化物酶系统、壳聚糖、精油)或其他 NTP(CO2、UV-TiO 光催化、超声波、脉冲电场、超滤),已被突出为增强微生物失活(协同或加性效应)的可行替代品。这些组合可以有效地消除压力抗性亚群,减少 SLI 或 VBNC 状态细胞的数量,并抑制其复苏或复活。本综述提供了 HPP 和选定障碍组合对微生物失活的最新概述,并重新构建了可能的失活机制。

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