Literature DB >> 33412197

Structural elucidation and osteogenic activity of a novel heteropolysaccharide from Alhagi pseudalhagi.

Zhenquan Ye1, Tianyu Li2, Degang Qing3, Yu Sun3, Haiyun Chen4, Qian Yu1, Chunyan Yan5.   

Abstract

Alhagi pseudalhagi, commonly known as camel thorn, is used as an indigenous medicinal plant in China. The present study was designed to elucidate the structure of a novel polysaccharide, APP90-2, isolated from Alhagi pseudalhagi and evaluate its osteogenic activity. A homogeneous polysaccharide (APP90-2) was obtained from A. pseudalhagi via DEAE-52 and Sephacryl S-100 columns, with a molecular weight of 5.9 kDa. Monosaccharide, GC-MS, and NMR analyses showed that APP90-2 consisted of α-l-Rhap-(1→, →3)-α-l-Araf-(1→, →5)-α-l-Araf-(1→, →4)-β-d-Xylp-(1→, α-d-Glcp-(1→, →3,5)-α-l-Araf-(1→, →4)-β-d-GlcAp-(1→, →4)-3-OAc-α-d-Glcp-(1→, →3)-α-d-Galp-(1→, →3)-β-d-GalAp-(1→, →4)-α-d-Galp-(1→, →6)-α-d-Manp-(1→, →4,6)-β-d-Galp-(1→, and →3,6)-β-d-Glcp-(1→ with relative molar ratios of 4.1:1.8:6.1:6.7:1.7:1.0:1.5:2.7:2.4:1.1:2.3:2.6:1.4:2.0. Morphological analyses revealed that APP90-2 interacted with Congo-red and had an obvious honeycomb structure. Additionally, APP90-2 significantly promoted proliferation, differentiation, and mineralization of MC3T3-E1 cells, indicating that APP90-2 exhibited pronounced osteogenic activity. Therefore, our findings suggest that A. pseudalhagi may be used as an alternative medicine or health supplement for the prevention and treatment of osteoporosis.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Alhagi pseudalhagi; Polysaccharides; Structural characterization

Mesh:

Substances:

Year:  2021        PMID: 33412197     DOI: 10.1016/j.ijbiomac.2020.12.189

Source DB:  PubMed          Journal:  Int J Biol Macromol        ISSN: 0141-8130            Impact factor:   6.953


  2 in total

1.  Isolation, Structural Characterization and Macrophage Activation Activity of an Acidic Polysaccharide from Raspberry Pulp.

Authors:  Yongjing Yang; Xingxing Yin; Dejun Zhang; Jie Lu; Xuehong Wang
Journal:  Molecules       Date:  2022-03-03       Impact factor: 4.411

2.  Anti-Osteoporotic Effects of Commiphora Myrrha and Its Poly-Saccharide via Osteoclastogenesis Inhibition.

Authors:  Youn-Hwan Hwang; Ami Lee; Taesoo Kim; Seon-A Jang; Hyunil Ha
Journal:  Plants (Basel)       Date:  2021-05-10
  2 in total

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