Current Perspectives on Viable but Non-culturable State in Foodborne Pathogens

Современные представления о жизнеспособном, но некультивируемом состоянии у патогенов пищевого происхождения
Xihong Zhao, Junliang Zhong, Caijiao Wei, Chii‐Wann Lin, Tian Ding
2017-04-04

detection methodsfood processing stressesfoodborne pathogensresuscitation mechanismsviable but non-culturable state
The viable but non-culturable (VBNC) state, a unique state in which a number of bacteria respond to adverse circumstances, was first discovered in 1982. Unfortunately, it has been reported that many foodborne pathogens can be induced to enter the VBNC state by the limiting environmental conditions during food processing and preservation, such as extreme temperatures, drying, irradiation, pulsed electric field, and high pressure stress, as well as the addition of preservatives and disinfectants. After entering the VBNC state, foodborne pathogens will introduce a serious crisis to food safety and public health because they cannot be detected using conventional plate counting techniques. This review provides an overview of the various features of the VBNC state, including the biological characteristics, induction and resuscitation factors, formation and resuscitation mechanisms, detection methods, and relationship to food safety.
1
Foodborne pathogens can enter the viable but non-culturable state under food-processing and preservation stresses, including extreme temperatures, drying, irradiation, pulsed electric fields, and high pressure.
2
Preservatives and disinfectants can also induce foodborne pathogens into the VBNC state.
3
The review synthesizes VBNC biological characteristics, induction and resuscitation factors, formation and resuscitation mechanisms, detection methods, and food-safety implications.
4
VBNC pathogens remain viable but cannot be detected by conventional plate-counting methods, creating a significant food-safety and public-health concern.

The viable but non-culturable (VBNC) state in foodborne pathogens

Biological characteristics, induction and resuscitation factors, formation and resuscitation mechanisms, detection methods, and food-safety implications of the VBNC state

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2017-04-04
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Xihong Zhao
Junliang Zhong
Caijiao Wei
Chii‐Wann Lin
Tian Ding
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