A Comprehensive Review of Food Hydrogels: Principles, Formation Mechanisms, Microstructure, and Its Applications
Всесторонний обзор пищевых гидрогелей: принципы, механизмы формирования, микроструктура и применение
2022-12-20
SCID: 54.1/ugr2gzbf
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bioactive compound encapsulationfood hydrogelsfood packagingprotein and polysaccharide gelsthree-dimensional crosslinked networks
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Abstract (AI)
Food hydrogels are effective materials of great interest to scientists because they are safe and beneficial to the environment. Hydrogels are widely used in the food industry due to their three-dimensional crosslinked networks. They have also attracted a considerable amount of attention because they can be used in many different ways in the food industry, for example, as fat replacers, target delivery vehicles, encapsulating agents, etc. Gels-particularly proteins and polysaccharides-have attracted the attention of food scientists due to their excellent biocompatibility, biodegradability, nutritional properties, and edibility. Thus, this review is focused on the nutritional importance, microstructure, mechanical characteristics, and food hydrogel applications of gels. This review also focuses on the structural configuration of hydrogels, which implies future potential applications in the food industry. The findings of this review confirm the application of different plant- and animal-based polysaccharide and protein sources as gelling agents. Gel network structure is improved by incorporating polysaccharides for encapsulation of bioactive compounds. Different hydrogel-based formulations are widely used for the encapsulation of bioactive compounds, food texture perception, risk monitoring, and food packaging applications.
Key Findings
1
Food hydrogels are environmentally favorable, edible materials formed by three-dimensional crosslinked networks for diverse food applications.
2
Hydrogel formulations are applied as fat replacers, targeted delivery vehicles, encapsulating agents, texture-modifying systems, risk-monitoring tools, and food-packaging materials.
3
Incorporating polysaccharides improves gel network structure and supports encapsulation of bioactive compounds.
4
Plant- and animal-derived proteins and polysaccharides can serve as effective gelling agents in food hydrogel formulations.
5
Protein- and polysaccharide-based gels provide biocompatibility, biodegradability, nutritional value, and edibility, supporting their use as food materials.
Research Object
food hydrogels, particularly protein- and polysaccharide-based gels
Research Subject
their nutritional importance, structural configuration and microstructure, mechanical characteristics, formation mechanisms, and applications in food systems
Publication Details
Publication Date
2022-12-20
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