The stress encountered by probiotics in food during manufacturing, processing, and storage can reduce their survival, stability, and functionality, thus having a negative impact on the performance of related functional food. A clear knowledge of the stress factors threatening probiotic viability in food, understanding the microbial cell mechanisms underlying stress tolerance, and investigations on how stress resistance may be ameliorated, can contribute to the development of strategies to enhance the potential health benefits of probiotic food. The recent evidence suggesting a consistent influence of the food matrix on the probiotic properties sheds new light on the field of food-related probiotic stress response. In addition, the improvement of probiotic robustness might lead to reconsideration of the use of probiotic strains with interesting health properties but with poor technological characteristics.

Stressors and Food Environment: Toward Strategies to Improve Robustness and Stress Tolerance in Probiotics / Capozzi, V., Arena, M.P., Russo, P., Spano, G., Fiocco, D. - In: Probiotics, Prebiotics, and Synbiotics: Bioactive Foods in Health Promotion / [a cura di] RR WatsonVR Preedy. - 24-28 OVAL ROAD, LONDON NW1 7DX, ENGLAND : Elsevier Inc., 2016. - ISBN 9780128023716. - pp. 245-256 [10.1016/B978-0-12-802189-7.00016-2]

Stressors and Food Environment: Toward Strategies to Improve Robustness and Stress Tolerance in Probiotics

ARENA, MATTIA PIA;
2016

Abstract

The stress encountered by probiotics in food during manufacturing, processing, and storage can reduce their survival, stability, and functionality, thus having a negative impact on the performance of related functional food. A clear knowledge of the stress factors threatening probiotic viability in food, understanding the microbial cell mechanisms underlying stress tolerance, and investigations on how stress resistance may be ameliorated, can contribute to the development of strategies to enhance the potential health benefits of probiotic food. The recent evidence suggesting a consistent influence of the food matrix on the probiotic properties sheds new light on the field of food-related probiotic stress response. In addition, the improvement of probiotic robustness might lead to reconsideration of the use of probiotic strains with interesting health properties but with poor technological characteristics.
2016
25-set-2015
Inglese
http://www.sciencedirect.com/science/book/9780128021897
Probiotics, Prebiotics, and Synbiotics: Bioactive Foods in Health Promotion
RR WatsonVR Preedy
245
256
12
9780128023716
Elsevier Inc.
24-28 OVAL ROAD, LONDON NW1 7DX, ENGLAND
Bifidobacterium; Food; Lactic acid bacteria; Lactobacillus; Prebiotic; Probiotic; Probiotic robustness; Stress response; Stress tolerance; Stressor; Medicine (all)
Stressors and Food Environment: Toward Strategies to Improve Robustness and Stress Tolerance in Probiotics / Capozzi, V., Arena, M.P., Russo, P., Spano, G., Fiocco, D. - In: Probiotics, Prebiotics, and Synbiotics: Bioactive Foods in Health Promotion / [a cura di] RR WatsonVR Preedy. - 24-28 OVAL ROAD, LONDON NW1 7DX, ENGLAND : Elsevier Inc., 2016. - ISBN 9780128023716. - pp. 245-256 [10.1016/B978-0-12-802189-7.00016-2]
Capozzi, Vittorio; Arena, Mattia Pia; Russo, Pasquale; Spano, Giuseppe; Fiocco, Daniela
5
Contributo su VOLUME::Capitolo/Saggio
268
none
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1302490
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