School of Pharmacy, Lanzhou University, Lanzhou 730000, PR China.
The Second Hospital of Lanzhou University, Lanzhou 730030, PR China.
Int J Biol Macromol. 2021 Oct 31;189:503-515. doi: 10.1016/j.ijbiomac.2021.08.151. Epub 2021 Aug 23.
The gastroprotective effects of polysaccharides had become a hot topic in the field of functional polysaccharides research. Three polysaccharides, namely HPS-80-1, HPS-80-2, and HPS-80-3 were purified by DEAE-52 column chromatography. The thermodynamic characteristics, scanning electron microscopy, and Congo red experimental results of the above polysaccharides were greatly distinctive. Then a mature GES-1 oxidative stress cell model induced by HO was established to screen out subsequent research subjects. It turned out that HPS-80-1 had a desirable protective effect, which was confirmed by analyses of cell cycle & apoptosis, and oxidative stress-related factors in the cell culture media, and so on. Furthermore, Structural features demonstrated that the backbone of HPS-80-1 appeared to mainly consist of →4)-α-D-Glcp-(1→, →4,6)-β-L-Glcp-(1→, and →6)-α-D-Galp-(1→, with branches at O-1, O-4, and O-6 position consisting of →2,4)-β-D-Rhap-(1→, →1)-α-D-Galp-(4→, and →3,4)-α-D-Manp-(1→. It was speculated that the excellent gastric mucosal protective activity of HPS-80-1 may be due to the high amount of glucose in the backbone. In addition, it was also related to the anti-inflammatory activity and antioxidant bases such as (1 → 4)-Glcp and (1 → 6)-Galp in the structure of HPS-80-1. These findings provide a scientific basis for further utilization of polysaccharides from Radix Hedysari.
多糖的胃黏膜保护作用已成为功能多糖研究领域的热点。通过 DEAE-52 柱层析法对三种多糖 HPS-80-1、HPS-80-2 和 HPS-80-3 进行了分离纯化。上述多糖的热力学特性、扫描电镜和刚果红实验结果均有很大差异。然后,建立了一个成熟的 GES-1 氧化应激细胞模型,由 HO 诱导,筛选出后续的研究对象。结果表明 HPS-80-1 具有良好的保护作用,这通过细胞周期和凋亡分析、细胞培养介质中的氧化应激相关因子等得到了证实。此外,结构特征表明 HPS-80-1 的骨架主要由 →4)-α-D-Glcp-(1→、→4,6)-β-L-Glcp-(1→和→6)-α-D-Galp-(1→组成,在 O-1、O-4 和 O-6 位置的支链由→2,4)-β-D-Rhap-(1→、→1)-α-D-Galp-(4→和→3,4)-α-D-Manp-(1→组成。推测 HPS-80-1 具有优异的胃黏膜保护活性可能是由于其骨架中含有大量的葡萄糖。此外,它与 HPS-80-1 结构中的抗炎活性和抗氧化基础(如(1→4)-Glcp 和(1→6)-Galp)也有关。这些发现为进一步利用黄药子多糖提供了科学依据。