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Int J Biol Macromol ; 272(Pt 2): 132907, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38862318

ABSTRACT

The aim of this study was to develop a star fruit extract (SFE) and incorporate it into aerogels based on native and phosphorylated potato starches. The phosphorylation of starch enhances its properties by incorporating phosphate groups that increase the spaces between starch molecules, resulting in a more resilient, intact aerogel with enhanced water absorption. The bioactive aerogels based on potato starch and 10, 15, and 20 % (w/w) of SFE were characterized by their morphological and thermogravimetric properties, infrared spectra, water absorption capacity, loading capacity, and antioxidant activity. Epicatechin was the major compound present in SFE. The thermal stability of SFE increased when incorporated into phosphorylated starch aerogels at a concentration of 20 %. The water absorption capacity was higher in phosphorylated starch aerogels (reaching 1577 %) than in their native counterparts (reaching 1100 %). Native starch aerogels with 15 and 20 % SFE exhibited higher antioxidant activity against hydroxyl free radicals compared to phosphorylated starch aerogels, achieving 79.9 % and 86.4 % inhibition for the hydroxyl and nitric oxide radicals, respectively. The ideal choice of freeze-dried aerogel depends on the desired effect, either to act as an antioxidant agent by releasing bioactive compounds from SFE or as a water-absorbent agent in food products.


Subject(s)
Antioxidants , Fruit , Gels , Plant Extracts , Solanum tuberosum , Starch , Solanum tuberosum/chemistry , Gels/chemistry , Plant Extracts/chemistry , Plant Extracts/pharmacology , Starch/chemistry , Phosphorylation , Antioxidants/chemistry , Antioxidants/pharmacology , Fruit/chemistry , Averrhoa/chemistry , Water/chemistry
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