Antioxidant polysaccharide-enriched fractions obtained from olive leaves by ultrasound-assisted extraction with α-amylase inhibition, and antiproliferative activities

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作者
Rania Elayeb
Alejandra Bermúdez-Oria
Houda Lazreg Aref
Hatem Majdoub
Christos Ritzoulis
Alberto Mannu
Didier Le Cerf
Massimo Carraro
Sami Achour
Juan Fernández-Bolaños
Maher Trigui
机构
[1] Higher Institute of Biotechnology of Monastir,Bioresources, Integrative Biology and Valorization Research Laboratory “BIOLIVAL” (UR03ES09)
[2] Fat Institute (Spanish National Research Council,Department of Food Phytochemistry
[3] CSIC),Laboratory of Genetics, Biodiversity and Bioresources Valuation LR11S41
[4] Higher Institute of Biotechnology of Monastir,Laboratory of Interfaces and Advanced Materials, Faculty of Sciences of Monastir
[5] University of Monastir,Department of Food Technology
[6] ATEI of Thessaloniki,Department of Chemistry and Pharmacy
[7] University of Sassari,UNIROUEN, INSA Rouen, CNRS, PBS
[8] Normandie University,undefined
来源
3 Biotech | 2024年 / 14卷
关键词
Caco-2 cell line; In vitro activities; Non-conventional method; Olive by-products; Polysaccharides–polyphenol–protein complex;
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摘要
Polysaccharide-rich materials were extracted from the alcohol-insoluble solids of Olea europaea l. **leaves. Structural characteristics were determined by colorimetric techniques, FT-IR, GC–MS, SEC/MALS/VD/DRI, and NMR (1H,13C). The extract and its main macromolecular components were characterized to assess their ability toward antioxidant, α-amylase inhibition, and antiproliferative activities. Results revealed that the ultrasound olive leave extract comprises polysaccharides with uronic acid, galactose, arabinose, and glucose in molar percentages of 11.7%, 11.3%, 7.5%, and 4.9% respectively, constituting 41% of the total mass. In addition, polyphenols (21%) and proteins (9%) are associated with these polysaccharides. Further, the extract showed noticeable ORAC and free radical scavenging abilities, in addition to high in vitro antiproliferative activity against Caco-2 colon carcinoma cell lines. Similarly, the extract exhibited a strong, uncompetitive inhibition of α-amylase by 75% in the presence of the extract with 0.75 µg/mL of concentration. This research concludes that ultrasound extraction method can be used for the extraction of polysaccharide–polyphenol–protein complexes. These conjugates exhibit the potential for combined biological activities resulting from a synergistic effect of its compounds, making them promising ingredients for the development of functional food.
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