Maitake, Hen of the Woods · 2017 · Journal Article
High relevanceStructural elucidation and antioxidant activity a novel Se-polysaccharide from Se-enriched Grifola frondosa.
Grifola frondosa
Key points
- Se-GFP-22, a heteropolysaccharide, with a weight-average M w of 4.13×10 6 Da, was purified from the crude Se-polysaccharide (Se-GFP) isolated from fruit bodies of Se-enriched Grifola frondosa
- Selenium was accumulated efficiently in Grifola frondosa during cultivation with Na 2 SeO 3
- The structure was investigated through FT-IR, GC, GC-MS, NMR, HPSEC-MALL-RI, particle size, Conge-red test, CD, AFM and SEM. Se-GFP-22 was deduced as a backbone chain of 1,4-α-d-Glcp units with a branched point at C6 of both 1,3,6-β-d-Manp and 1,4,6-α-d-Galp units
- A typical absorption for selenium ester was existed in Se-GFP-22
- Se-GFP-22 adopted as a spherical conformation with random coils
- The antioxidant effect of Se-GFP-22 was more potent than that of G. frondosa polysaccharide (GFP-22), which may be influenced by the co-effect of polysaccharide and Se, molecular weight, degree of branching and configuration
Metadata-grounded summary
Citation abstract
Se-GFP-22, a heteropolysaccharide, with a weight-average M w of 4.13×10 6 Da, was purified from the crude Se-polysaccharide (Se-GFP) isolated from fruit bodies of Se-enriched Grifola frondosa. Selenium was accumulated efficiently in Grifola frondosa during cultivation with Na 2 SeO 3. The structure was investigated through FT-IR, GC, GC-MS, NMR, HPSEC-MALL-RI, particle size, Conge-red test, CD, AFM and SEM. Se-GFP-22 was deduced as a backbone chain of 1,4-α-d-Glcp units with a branched point at C6 of both 1,3,6-β-d-Manp and 1,4,6-α-d-Galp units. A typical absorption for selenium ester was existed in Se-GFP-22. Se-GFP-22 adopted as a spherical conformation with random coils. A novel Se-polysaccharide of different monosaccharide constituents, molecular weight, linkage types and high content of selenium has been isolated from G. frondosa. The antioxidant effect of Se-GFP-22 was more potent than that of G. frondosa polysaccharide (GFP-22), which may be influenced by the co-effect of polysaccharide and Se, molecular weight, degree of branching and configuration.
Citation
Li Q, Wang W, Zhu Y, Chen Y, Zhang W, Yu P, et al. (2017). Structural elucidation and antioxidant activity a novel Se-polysaccharide from Se-enriched Grifola frondosa. Carbohydrate polymers https://doi.org/10.1016/j.carbpol.2016.12.041 PMID: 28189245
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