Isolation, purification and structural characterization of a water-soluble polysaccharide HM41 from Halenia elliptica D. Don

Chun-Lan Liu Yang Li Gui-Yun Xu Ya-Shuang Li

引用本文: Chun-Lan Liu,  Yang Li,  Gui-Yun Xu,  Ya-Shuang Li. Isolation, purification and structural characterization of a water-soluble polysaccharide HM41 from Halenia elliptica D. Don[J]. Chinese Chemical Letters, 2016, 27(6): 979-983. doi: 10.1016/j.cclet.2016.01.061 shu
Citation:  Chun-Lan Liu,  Yang Li,  Gui-Yun Xu,  Ya-Shuang Li. Isolation, purification and structural characterization of a water-soluble polysaccharide HM41 from Halenia elliptica D. Don[J]. Chinese Chemical Letters, 2016, 27(6): 979-983. doi: 10.1016/j.cclet.2016.01.061 shu

Isolation, purification and structural characterization of a water-soluble polysaccharide HM41 from Halenia elliptica D. Don

  • 基金项目:

    This work was financially supported by the First-Class Discipline Construction Project for First-Class University of Minzu University of China (No. YLDX01013), 111 Project (No. B08044) and The ecological conservation technology integration and demonstration in north of Dzungaria (No. 2014BAC15B04).

摘要: A water-soluble polysaccharide, HM41, was obtained from Halenia elliptica D. Don by acidic ethanol fractionation and gel filtration. Its homogeneity was confirmed by chromatography using multiple systems. HM41 was composed of rhamnose (Rha), arabinose (Ara), xylose (Xyl), mannose (Man), galactose (Gal), glucose (Glc) with a molar ratio of 1.0:5.5:1.8:3.0:9.4:21. The average molecular weight of HM41 was approximately 1.17 × 104 . Periodate oxidation, Smith degradation, methylation and GC, IR, NMR, XRD, GC-MS analysis were used for the structural analysis of HM41. Its main chain was composed mainly of β-(1→4)Gal, β-(1→4)Glc and β-(1→6)Glc. β-(1→4)Gal were substituted at 6-O and on average there were 14 branches among 23 main chain residues; (1→4)Glc had no branch; (1→6)Glc were substituted at 3-O and on average there were 9 branches among 14 main chain residues. The side chain was composed of (1→3,6)-Rha, (1→4)/(1→5)-Ara, (1→4)/(1→5)-Xyl, (1→4,6)-Man and (1→2)-Glc. The terminal residue was composed of Ara, Xyl, Man, Gal, and Glc. Then, we demonstrated that HM and HM41 had strong scavenging activities in vitro hydroxyl. Overall, HM and HM41 may have potential applications in the antioxidants for medical and food industry.

English

    1. [1] H.L. Yang, J.Q. Liu, Seven constituents in nine species used as Tibetan medicine "Zangyinchen", China Tradit. Herb Drugs 36 (2005) 1233-1237.

    2. [2] D. Zhang, Y.F. Zhu, S.K. Lin, Identification of new chemical constituents of Tibetan medicinal herb Halenia elliptica, China Tradit. Herb Drugs 34 (2003) 9-11.

    3. [3] X.Y. Qin, L. Yang, L.M. Shao, S.L. Liu, Inducement of the Callus of Halenia elliptica D. Don in Sichuan Province, Li Shi Zhen Med. Materia Med. Res. 19 (2008) 35-39.

    4. [4] Y. Liu, J. Zhao, Preliminary study on the physicochemical properties of the polysaccharide from Portobello Mushroom, Hubei Agric. Sci. 51 (2012) 981-983.

    5. [5] Y.J. Liu, H.Y. Zhu, Optimization of de-protein process for polysaccharide of Hippophae rhamnoides, J. Henan Agric. Sci. 3 (2008) 84-87.

    6. [6] N.S. Li, C.Y. Yan, D.H. Hua, et al., Isolation, purification, and structural characterization of a novel polysaccharide from Ganoderma capense, Int. J. Biol. Macromol. 57 (2013) 285-290.

    7. [7] M. Dubois, K.A. Gilles, J.K. Hamilton, et al., Colorimetric method for determination of sugars and related substances, Anal. Chem. 28 (1956) 350-360.

    8. [8] T. Li, Q.H. Zhang, W.B. Zhang, High Performance Liquid Chromatography (HPLC) Instrument System, Chemical Industry Press, Beijing, 2009, pp. 204-215.

    9. [9] G.Y. Xu, R.X. Cheng, L.W. Chang, Component analysis of monosaccharides in polysaccharides by capillary gas chromatography, J. Instrumental Anal. 19 (2000) 71-73.

    10. [10] Q. Dong, X. Liu, J. Yao, Structural characterization of a pectic polysaccharide from Nerium indicum flowers, Phytochemistry 71 (2010) 1430-1437.

    11. [11] Q. Li, Y. Xie, J.W. Su, et al., Isolation and structural characterization of a neutral polysaccharide from the stems of Dendrobium densiflorum, Int. J. Biol. Macromol. 50 (2012) 1207-1211.

    12. [12] R.A. Kalyan, B.T. Paul, A comprehensive procedure for preparation of partially methylated alditol acetates from glycoprotein carbohydrates, Anal. Biochem. 203 (1992) 101-108.

    13. [13] A. Linker, L.R. Evans, G. Impallomeni, The structure of a polysaccharide from infectious strains of Burkholderia cepacia, Carbohydr. Res. 335 (2001) 45-54.

    14. [14] G.L. Sassaki, P.A.J. Gorin, L.M. Souza, et al., Rapid synthesis of partially O-methylated alditol acetate standards for GC-MS: some relative activities of hydroxyl groups of methyl glycopyranosides on Purdie methylation, Carbohydr. Res. 340 (2005) 731-739.

    15. [15] M.T. Duenas-Chasco, M.A. Rodriguez-Carvajal, P.T. Mateo, et al., Structural analysis of the exopolysaccharides produced by Lactobacillus spp. G-77, Carbohydr. Res. 307 (1998) 125-133.

    16. [16] S.L. Wu, S.C. Xie, L. Yang, et al., An experimental study on the production efficiency of hydroxyl radicals by several photocatalysis reaction systems, Photogr. Sci. Photochem. 2 (2006) 75-78.

    17. [17] D.R. Grymonpre, A.K. Sharma, W.C. Finney, The role of Fenton's reaction in aqueous phase pulsed streamer corona reactors, Chem. Eng. J. 82 (2001) 189-207.

    18. [18] F.X. Liu, Z.D. Li, N. Li, et al., Determination techniques introduction on hydroxyl radical in Fenton method, Guangdong Chem. Ind. 23 (2007) 35-38.

    19. [19] Y.L. Wu, Y.J. Pan, C.R. Sun, Structural analysis of an alkali-extractable polysaccharide from the seeds of Retama raetamssp, Gussonei. Nat. Prod. 69 (2006) 1109-1112.

    20. [20] B. La, K. Xie, C.X. Hu, Studies on X-ray Fourier spectrum of Halenia elliptica D. Don, Qinghai Med. J. 34 (2004) 53-54.

    21. [21] Y.L. Sun, F. Shan, W.W. Cui, et al., NMR analysis of polysaccharide ASP3 from Angelica sinensis (Oliv.) Diels and it's hydrolysis products, Chem. J Chin. Univ. 30 (2009) 1739-1743.

    22. [22] Z. Wu, H. Li, D.W. Tu, et al., Extraction optimization, preliminary characterization, and in vitro antioxidant, Ind. Crop. Prod. 44 (2013) 145-151.

    23. [23] H. Zdenka, S.P. Berit, P. Martin, et al., Structural features of two heteroxylan polysaccharide fractions from wheat bran with anti-complementary and antioxidant activities, Carbohydr. Polym. 93 (2013) 22-30.

  • 加载中
计量
  • PDF下载量:  0
  • 文章访问数:  1420
  • HTML全文浏览量:  29
文章相关
  • 收稿日期:  2015-11-19
  • 修回日期:  2016-01-20
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

/

返回文章