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Rich d-Fructose-Containing Polysaccharide Isolated from Myxopyrum smilacifolium Roots toward a Superior Antioxidant Biomaterial.


ABSTRACT: The presented study attempts to unveil and evaluate the antioxidant activity of a novel heteropolysaccharide separated from the roots of Myxopyrum smilacifolium (denoted as PS-MSR). The molecular weight of PS-MSR is found to be 1.88 × 104 Da and contains two principal sugars, which are d-glucose and d-fructose, in the backbone. Decoding the structure of the obtained PS-MSR sample has disclosed a novel polysaccharide for the first time. Indeed, the PS-MSR is composed of (1 → 3)-linked glucosyl units and (2 → 3)-linked fructosyl units. In addition, the 1D and 2D NMR spectra of the PS-MSR sample display the repeating unit of the isolated polysaccharide, [→3)-α-d-Glcp-(1 → 3)-β-d-Frucf-(2 → 3)-β-d-Frucf-2 → 3)-)-β-d-Frucf-β-(2→] n . Interestingly, the PS-MSR sample exhibits outstanding antioxidant activity, signifying the potential utilization of the explored polysaccharide for antioxidant-based material.

SUBMITTER: Le TH 

PROVIDER: S-EPMC9798761 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Rich d-Fructose-Containing Polysaccharide Isolated from <i>Myxopyrum smilacifolium</i> Roots toward a Superior Antioxidant Biomaterial.

Le Trung Hieu TH   Le Lam Son LS   Nguyen Dang Giang Chau DGC   Tran Thi Van Thi TVT   Vu Ho Xuan Anh XA   Tran Thanh Minh TM   Nguyen Minh Nhung MN   Nguyen Viet Thang VT   Le Thuy Trang TT   Nguyen Thi Hong Chuong THC   Nguyen Chinh Chien CC   Le Quyet Van QV  

ACS omega 20221213 51


The presented study attempts to unveil and evaluate the antioxidant activity of a novel heteropolysaccharide separated from the roots of <i>Myxopyrum smilacifolium</i> (denoted as PS-MSR). The molecular weight of PS-MSR is found to be 1.88 × 10<sup>4</sup> Da and contains two principal sugars, which are d-glucose and d-fructose, in the backbone. Decoding the structure of the obtained PS-MSR sample has disclosed a novel polysaccharide for the first time. Indeed, the PS-MSR is composed of (1 → 3)-  ...[more]

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2014-04-21 | GSE45641 | GEO
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