Journal
FOOD BIOSCIENCE
Volume 56, Issue -, Pages -Publisher
ELSEVIER
DOI: 10.1016/j.fbio.2023.103163
Keywords
Soluble dietary fiber; Physicochemical properties; In vitro prebiotic activities
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Ultrafine grinding treatment was used to process grapefruit peel, and the structural properties and adsorption capacities of extracted soluble dietary fibers (SDFs) were comparatively analyzed. The results showed that ultrafine grinding treatment reduced the crystallinity and thermal stability of SDFs, while increasing the pectin content. SDFs treated with ultrafine grinding were found to promote bacterial proliferation and stimulate the production of short-chain fatty acids by probiotic strains.
Ultrafine grinding treatment was used to treat grapefruit peel from Shatianyou, Majiayou, Dabumiyou and Jinggangmiyou, subsequently structural properties and adsorption capacities of extracted soluble dietary fibers (SDFs) were comparatively analyzed, moreover SDF from untreated Dabumiyou (D-SDF) and SDF from Dabu-miyou treated with ultrafine grinding (UD-SDF) were selected for in vitro prebiotic activity determination. The structural analysis exhibited that all SDFs manifested spectral characteristics of typical polysaccharides and showed a typical cellulose I-type structure, ultrafine grinding treatment broke chemical bonds between mole -cules, leading to a decrease in crystallinity, further reduced thermal stability of SDFs. The pectin content of SDFs were enhanced after modification, which may influence functional properties of SDFs. Moreover, SDFs from Dabumiyou showed better adsorption capacities for water molecule, oil molecule and cholesterol molecule. Compared to D-SDF, UD-SDF could effectively promote bacteria proliferation and stimulate probiotic strains to produce more short-chain fatty acids. This study was beneficial to better understanding physicochemical prop-erties of SDFs extracted from different grapefruit peel by ultrafine grinding treatment and encouraged the use of grapefruit peel SDF in products with prebiotic properties.
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