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Effects of electron‐beam irradiation on inoculated Listeria innocua, microbiological and physicochemical quality of fresh noodles during refrigerated storage.

Authors :
Shi, Feifei
Zhao, Hongwei
Song, Hongbo
Guo, Weiling
Wang, Li
Cui, Xiaorui
Zhang, Weidong
Li, Shurong
Source :
Food Science & Nutrition. Jan2020, Vol. 8 Issue 1, p114-123. 10p.
Publication Year :
2020

Abstract

As a nonthermal sterilization technology, electron‐beam irradiation (EBI) has attracted great interests for microbial inactivation in food preservation. In this study, the inactivation of inoculated Listeria innocua, natural microbiota, and quality of fresh noodles treated by EBI during refrigerated storage were evaluated. Results showed that the initial L. innocua population (6.38 log CFU/g) was significantly reduced to an undetectable level by treatment with 3.0 kGy EBI. Moreover, treatment with 3 kGy EBI significantly reduced the initial total bacteria counts and fungal counts (mold and yeast) from 5.66 and 3.15 log CFU/g to 2.90 and 2.11 log CFU/g, respectively. However, along with the storage process, the inoculated L. innocua and natural microbiota were recovered resulting in the increased populations of the spoilage microorganisms. Increasing the dose of EBI to 4.0 kGy or 5.0 kGy, the L. innocua population was inhibited to the undetectable level and the microbiological quality of the fresh noodles was kept in the acceptable level during the 28 day storage. In addition, changes of the physicochemical indicators including pH value, color, cooking characteristics, texture, and sensory of fresh noodles treated with EBI were delayed during storage. These results reveal that EBI treatment can improve the microbiological safety and shelf life of fresh noodles without impairing quality. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20487177
Volume :
8
Issue :
1
Database :
Academic Search Index
Journal :
Food Science & Nutrition
Publication Type :
Academic Journal
Accession number :
141356920
Full Text :
https://doi.org/10.1002/fsn3.1277