The Center for Drug Research and Development, Guangdong Pharmaceutical University, Guangzhou, Guangdong 510006, PR China.
Department of Immunology, School of Life Sciences and Biopharmaceuticals Engineering, Guangdong Pharmaceutical University, Guangzhou 510006, PR China; Key Laboratory of Digital Quality Evaluation of Chinese Materia Medica of State Administration of TCM, Guangzhou, Guangdong 510006, PR China; Guangdong Engineering & Technology Research Center of Topical Precise Drug Delivery System, Guangdong Pharmaceutical University, Guangzhou 510006, PR China; Guangdong Cosmetics Engineering & Technology Research Center, Guangzhou 510006, PR China.
Int J Biol Macromol. 2021 Jul 1;182:815-824. doi: 10.1016/j.ijbiomac.2021.04.055. Epub 2021 Apr 17.
Honey-processed Astragalus is a dosage form of Radix Astragali processed with honey, which exhibits better efficacy of tonifying Qi than the raw product. Polysaccharides are its main water-soluble active components. This work was designed to study the structural differences of homogeneous honey-processed Astragalus polysaccharides (HAPS3a) and Astragalus polysaccharides (APS3a) and their effects on colitis mice. The results showed that HAPS3a (Mw = 2463.5 kDa) and APS3a (Mw = 3373.2 kDa) differed in molecular weight, monosaccharide compositions, glycosidic bonds and degree of branching (DB). Notably, the molar ratios of galactose and galacturonic acid in HAPS3a were 22.66% and 33.24%, while those in APS3a were 11.87% and 49.55%, respectively. The uronic acid residues 1,4-β-GalpA and 1,6-α-GlcpA of the backbone in APS3a were converted into the corresponding neutral residues in HAPS3a after honey processing. The different DB of HAPS3a (15.35%) and APS3a (25.13%) suggested that the chain conformation became smoother. The anti-inflammatory effects on colitis mice revealed that HAPS3a exhibited better effects than APS3a by protecting intestinal mucosa, regulating the expression of cytokines and influencing microbiota diversity. Taken together, the differences in anti-inflammatory activity might be related to structural differences caused by honey processing. Our findings have laid a foundation for the processing mechanism of Astragalus.
蜜炙黄芪是一种经蜂蜜炮制的黄芪制剂,其补气功效优于生品。多糖是其主要的水溶性活性成分。本研究旨在研究均一的蜜炙黄芪多糖(HAPS3a)和黄芪多糖(APS3a)的结构差异及其对结肠炎小鼠的影响。结果表明,HAPS3a(Mw=2463.5 kDa)和 APS3a(Mw=3373.2 kDa)在分子量、单糖组成、糖苷键和支化度(DB)方面存在差异。值得注意的是,HAPS3a 中半乳糖和半乳糖醛酸的摩尔比分别为 22.66%和 33.24%,而 APS3a 中半乳糖和半乳糖醛酸的摩尔比分别为 11.87%和 49.55%。APS3a 主链上的糖醛酸残基 1,4-β-GalpA 和 1,6-α-GlcpA 在蜜炙后转化为 HAPS3a 中的相应中性残基。HAPS3a(15.35%)和 APS3a(25.13%)的不同 DB 表明链构象变得更加平滑。对结肠炎小鼠的抗炎作用研究表明,HAPS3a 通过保护肠黏膜、调节细胞因子表达和影响微生物多样性,表现出比 APS3a 更好的效果。综上所述,抗炎活性的差异可能与蜜炙引起的结构差异有关。本研究为黄芪的炮制机制奠定了基础。