Nanoencapsulation of Promising Bioactive Compounds to Improve Their Absorption, Stability, Functionality and the Appearance of the Final Food Products
Наноинкапсуляция перспективных биоактивных соединений для улучшения их абсорбции, стабильности, функциональности и внешнего вида конечных пищевых продуктов
2021-03-11
SCID: 54.1/nf6zvr4a
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bioactive compoundsbiopolymer nanoparticlescontrolled releasefunctional foodsnanoencapsulation
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Abstract (AI)
The design of functional foods has grown recently as an answer to rising consumers' concerns and demands for natural, nutritional and healthy food products. Nanoencapsulation is a technique based on enclosing a bioactive compound (BAC) in liquid, solid or gaseous states within a matrix or inert material for preserving the coated substance (food or flavor molecules/ingredients). Nanoencapsulation can improve stability of BACs, improving the regulation of their release at physiologically active sites. Regarding materials for food and nutraceutical applications, the most used are carbohydrate-, protein- or lipid-based alternatives such as chitosan, peptide-chitosan and β-lactoglobulin nanoparticles (NPs) or emulsion biopolymer complexes. On the other hand, the main BACs used in foods for health promoting, including antioxidants, antimicrobials, vitamins, probiotics and prebiotics and others (minerals, enzymes and flavoring compounds). Nanotechnology can also play notable role in the development of programmable food, an original futuristic concept promising the consumers to obtain high quality food of desired nutritive and sensory characteristics.
Key Findings
1
Encapsulated bioactive compounds include antioxidants, antimicrobials, vitamins, probiotics, prebiotics, minerals, enzymes, and flavoring compounds for health-promoting foods.
2
Food and nutraceutical nanoencapsulation commonly uses carbohydrate-, protein-, and lipid-based materials, including chitosan, peptide-chitosan, β-lactoglobulin nanoparticles, and emulsion biopolymer complexes.
3
Nanoencapsulation can improve bioactive compound stability and regulate release at physiologically active sites.
4
Nanoencapsulation encloses bioactive compounds within liquid, solid, or gaseous matrices to preserve food and flavor ingredients.
5
Nanotechnology may enable programmable foods with tailored nutritional and sensory characteristics, although this is presented as a futuristic concept.
Research Object
Nanoencapsulated bioactive compounds in functional foods and nutraceutical food products
Research Subject
The effects of nanoencapsulation on bioactive compound absorption, stability, release, functionality, and the sensory appearance of final food products
Publication Details
Publication Date
2021-03-11
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