Application and potential of multifrequency ultrasound in juice industry: Comprehensive analysis of inactivation and germination of spores.

Hafida Wahia, Olugbenga Abiola Fakayode, Abdullateef Taiye Mustapha, Cunshan Zhou, Mokhtar Dabbour

Journal: Critical reviews in food science and nutrition 2024;64(14):4561-4586

PMID: 36412233

Abstract

The majority of acidic fruits are perishable owing to their high-water activity, which promotes microbial activity, thus exhibiting metabolic functions that cause spoilage. Along with sanitary practices, several treatments are used during processing and/or storage to inhibit the development of undesirable bacteria. To overcome the challenges caused by mild heat treatment, juice manufacturers have recently increased their involvement in developing novel non-thermal processing procedures. Ultrasonication alone or in combination with other hurdle technologies may be used to pasteurize processed fruit juices. Multifrequency ultrasound has gained popularity due to the fact that mono-frequency ultrasound has less impact on bacterial inactivation and bioactive compound enhancement of fruit juice. Here, we present and discuss the fundamental information and technological knowledge of how spoilage bacteria, specifically , assemble resistant spores and inactivate and germinate dormant spores in response to nutrient germinants and physical treatments such as heat and ultrasound. To the authors' knowledge, no prior review of ultrasonic inactivation and germination of in fruit juice exists. Therefore, this article aims to provide a review of previously published research on the inactivation and germination of in fruit juice by ultrasound and heat.

Address: School of Food and Biological Engineering, Jiangsu University, Zhenjiang, PR China.; School of Biological and Food Engineering, Chuzhou University, Chuzhou, PR China.; Department of Agricultural and Biosystems Engineering, Faculty of Agriculture, Benha University, Moshtohor, Qaluobia, Egypt.

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