Characterization, antioxidant, antineoplastic and immune activities of selenium modified Sagittaria sagittifolia L. polysaccharides

[Display omitted] •Seleno-S. sagittifolia L.polysaccharide (Se-PSSP) exhibits higher bioactivities.•Se-PSSP might be used as an alternative derivative of natural antioxidant agent.•The relationship between structure and bioactivity of Se-PSSP was discussed.•Selenization is an efficient modification...

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Veröffentlicht in:Food research international 2022-03, Vol.153, p.110913-110913, Article 110913
Hauptverfasser: Feng, Yuqin, Qiu, Yujie, Duan, Yuqing, He, Yuanqing, Xiang, Han, Sun, Wenxiang, Zhang, Haihui, Ma, Haile
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Sprache:eng
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Zusammenfassung:[Display omitted] •Seleno-S. sagittifolia L.polysaccharide (Se-PSSP) exhibits higher bioactivities.•Se-PSSP might be used as an alternative derivative of natural antioxidant agent.•The relationship between structure and bioactivity of Se-PSSP was discussed.•Selenization is an efficient modification method for polysaccharides. This study proposed an optimal way to supplement organic selenium, boost polysaccharides solubility, antioxidant, anticancer, immune responses. A purified polysaccharide fraction of Sagittaria sagittifolia L. (PSSP) was successfully modified with selenium (Se-PSSP), and its characteristics, antioxidant, antineoplastic and immune activities were studied. The structure and the monosaccharide composition were determined by means of UV–visible spectrometry, FT-IR spectra, NMR spectra, X-ray diffraction spectroscopy (XRD), scanning electron microscope (SEM) and atomic force microscope (AFM). The results showed that both PSSP and Se-PSSP contained a pyranoid polysaccharide linked by α-glycosidic bonds in the main chain. In addition, PSSP and Se-PSSP were amorphous morphology without three-helix conformation. PSSP (47.12 kDa) was mainly composed of glucose, mannose and xylose with molar percentages of 55.82%, 14.86% and 14.35%, respectively. Se-PSSP (16.82 kDa) is mainly composed of glucose, xylose and galactose with molar percentages of 26.49%, 18.76% and 18.14%, respectively. Compared with PSSP, Se-PSSP showed stronger water-solubility, antioxidant activity, cytotoxicity and immunomodulatory activity than that of PSSP. These results suggested that Se-PSSP is a promising novel Se-supplement and may be served as an excellent potential antioxidant, antineoplastic, and immunomodulatory agents in the field of functional foods and medicine industry.
ISSN:0963-9969
1873-7145
DOI:10.1016/j.foodres.2021.110913