Characterisation, Chain Conformation and Antifatigue Effect of Steamed Ginseng Polysaccharides With Different Molecular Weight

Two polysaccharides were obtained from steamed ginseng via ultrafiltration, and their physical–chemical properties, solution properties and antifatigue activities were studied. WSGP-S3 and WSGP-G3 were acid heteropolysaccharides with the molecular weights of 2.03 × 10 4 and 4.86 × 10 4 , respectivel...

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Published inFrontiers in pharmacology Vol. 12; p. 712836
Main Authors Jiao, Lili, Li, Junming, Liu, Furao, Wang, Jing, Jiang, Peng, Li, Bo, Li, Hui, Chen, Changbao, Wu, Wei
Format Journal Article
LanguageEnglish
Published Frontiers Media S.A 27.07.2021
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Summary:Two polysaccharides were obtained from steamed ginseng via ultrafiltration, and their physical–chemical properties, solution properties and antifatigue activities were studied. WSGP-S3 and WSGP-G3 were acid heteropolysaccharides with the molecular weights of 2.03 × 10 4 and 4.86 × 10 4 , respectively. They were composed of different molar ratios of the monosaccharides Rha, GlcA, GalA, Glc, Gal, and Ara. The results of size-exclusion chromatography–multiangle laser light scattering analysis, Conge red staining and Circular dichroism spectroscopy revealed that WSGP-S3 exhibited a random conformation of branched clusters in solution. By contrast, WSGP-G3 exhibited an ordered conformation, including helix-like conformations in aqueous solution. Antifatigue activity tests proved that WSGP-S3 markedly prolonged the exhaustive swimming time of fatigued mice; increased liver and muscle glycogen levels and superoxide dismutase, catalase, glutathione peroxidase activities and decreased blood lactic acid, nitrogen and malondialdehyde levels compared with the control treatment. Moreover, it enhanced spleen cell proliferation in fatigued mice. By contrast, WSGP-G3 had no significant effect on fatigued mice. The results showed that WSGP-S3 might have a major contribution to the antifatigue effects of steamed ginseng polysaccharides and could be a potential anti-fatigue polysaccharide.
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This article was submitted to Ethnopharmacology, a section of the journal Frontiers in Pharmacology
Bang xing Han, West Anhui University, China
Edited by:Haibin Tong, Wenzhou University, China
Reviewed by:Zhanyong Wang, Shenyang Agricultural University, China
These authors contributed equally to this paper.
Weihua Jin, Zhejiang University of Technology, China
ISSN:1663-9812
1663-9812
DOI:10.3389/fphar.2021.712836