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Delivery systems designed to enhance stability and suitability of lipophilic bioactive compounds in food processing: A review

Journal

FOOD CHEMISTRY
Volume 437, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2023.137910

Keywords

Delivery system; Lipophilic bioactive compounds; Encapsulation; Biopolymers; Processing suitability; Thermal stability; pH stability; Ionic strength

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This review explores delivery systems designed to optimize the stability and suitability of lipophilic bioactive compounds in food processing. The use of various biopolymers can protect bioactives and improve their processing suitability and chemical stability under diverse environmental conditions.
Lipophilic compounds, such as flavors, fat-soluble vitamins, and hydrophobic nutrients possess vital properties including antioxidant effects, functional attributes, and nutritional value that can improve human health. However, their susceptibility to environmental factors including heat, pH changes, and ionic strength encountered during food processing poses significant challenges. To address these issues, diverse bioactive delivery systems have been developed. This review explores delivery systems designed to optimize the stability and suitability of lipophilic bioactive compounds in food processing. Extensive literature analysis reveals that tailoring delivery systems with various biopolymers can protect bioactives through steric hindrance and formation of thick interfacial layers on the emulsion surfaces. Thus, the access of oxygen, prooxidants, and free radicals at the emulsion interface could be inhibited, resulting in enhanced processing suitability of bioactives as well as chemical stability under diverse environmental conditions. The insights presented in this review hold immense value for the food and beverage industries.

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