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超声处理在开发共生饮料中的作用:综述。

The role of sonication in developing synbiotic Beverages: A review.

机构信息

Department of Food Engineering and Technology, Institute of Chemical Technology, Matunga, Mumbai 400019, India; PIHM, Unit UMET, INRAE, 369 Rue Jules Guesde 59650, Villeneuve d'Ascq -59650, France.

Department of Food Technology, CBL Government Polytechnic, Bhiwani, Haryana, India.

出版信息

Ultrason Sonochem. 2024 Jul;107:106941. doi: 10.1016/j.ultsonch.2024.106941. Epub 2024 Jun 8.

Abstract

Synbiotics are a combination of probiotic cells and prebiotic components and this harmonious association has numerous health benefits. Conventional processing technologies use high temperatures for processing which reduces the viability and the final quality of synbiotic beverages. Sonication is a rapidly growing technology in the food processing sector and can be employed for the formulation of synbiotic beverages with improved functionalities. The cavitation events generated during the sonication result in beneficial effects like increased viability of probiotic cells, enhanced bifidogenic characteristics of prebiotic components, less processing time, and high-quality products. The sonication process does not affect the sensory attributes of synbiotic beverages however, it alters the structure of prebiotics thus increasing the access by the probiotics. These positive effects are solely dependent on the type of ultrasound process and the ultrasound operating parameters. The review aims to provide information on the technological aspects of ultrasound, a brief about synbiotics, details on the ultrasound process used for the formulation of synbiotics, the influence of ultrasound operating parameters, and a focus on the research gap.

摘要

合生菌是益生菌细胞和益生元成分的组合,这种和谐的结合有许多健康益处。传统的加工技术使用高温进行加工,这降低了合生菌饮料的存活率和最终质量。超声处理是食品加工领域中一项快速发展的技术,可用于制备具有改善功能的合生菌饮料。在超声处理过程中产生的空化现象会产生一些有益的效果,如提高益生菌细胞的存活率、增强益生元成分的双歧杆菌特性、减少加工时间和生产高质量的产品。然而,超声处理过程不会影响合生菌饮料的感官属性,它会改变益生元的结构,从而增加益生菌的可及性。这些积极的影响仅取决于超声处理的类型和超声操作参数。本综述旨在提供有关超声技术的技术方面的信息,简要介绍合生菌,详细介绍用于合生菌配方的超声处理过程,超声操作参数的影响,并重点关注研究空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1998/11209632/1dba7b474392/gr1.jpg

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