The Infrared Spectrum Analysis and Antioxidation of Glycosaminoglycan from Patinopecten yessoensis Waste

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Abstract:

Purification and antioxidation of glycosaminoglycan from Patinopecten yessoensis waste were studied. The results showed that the glycosaminoglycan contained characteristic functional groups like-OH(3424cm-1), -COO-(1653cm-1) and-NH(1567cm-1), -SO2(1414 cm-1), C-O-C(sugar ring,1044cm-1),, and it had good ability of scavenging DPPH free radicals and reducibility as well as metal chelating.

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Advanced Materials Research (Volumes 756-759)

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97-100

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jiahe Li, Yingshi Wang, Weiguo Wang, et al. Extraction of 6-chondroitin sulfate from whaleshark. Journal of Marine Drugs 5 (2)(1986), pp.7-9.

Google Scholar

[2] Wenmei Shen, Chuanhuan Luo, Yi Luo, et al. Physical and chemical properties of acid mucopolysaccharide from Asterias Amurensis. Journal of Marine Drugs 5 (2)(1986), pp.1-6.

Google Scholar

[3] Huizeng, Fan, Judi Chen, Kezhong. Lin. An acidic mucopolysaccharide isolated from Stichopus Japonicas Selenka and its physical and chemical properties. Acta Pharmaceutica Sinica 5(1980), pp.263-269.

Google Scholar

[4] Qianqun Gu, Yuchun Fang, Changyun Wang, et al. The chemical composition of chondrusocellatus and the antitumor activities of glycoprotein from Scallop Skirt. Chinese Journal of Marine Drugs 6 (3)(1998), pp.23-25.

Google Scholar

[5] Chunying Yuan, Qingman Cui, Xiaopeng Sun, et al. Study on purification and functional activity of glycosaminoglycan from Mactra quadrangularis. Journal of Anhui Agricultural Sciences 10(2011), pp.5882-5884.

Google Scholar

[6] Chunying Yuan, Qingman Cui, Xiaopeng Sun, et al. Optimization of extraction conditions for glycosaminoglycan from Mactra veneriformis by response surface methodology 11(2011), pp.18-21.

Google Scholar

[7] Jianglu Xu, Qingman Cui, Chunying Yuan, et al. Study on optimization of extraction technology for glycosaminoglycan from Bullacta exarata by response surface method. Journalof Anhui Agricultural Sciences 6(2012), pp.3559-3561.

Google Scholar

[8] Chunying Yuan, Jianglu Xu, Qingman Cui. Purification and analysis of chemical compositions on glycosaminoglycan from Bullacta exarata. The 3rd international conference of bioinformatics, natural products and traditional medicine (2011), pp.87-89.

Google Scholar

[9] Yunhai Yu, Dayong Zhou, Liming Sun, et al. Study on Preparation and Physicochemical Analysis of Sulphated Scallop (Patinopecten yessoensis). Food Science 30 (6)(2009), pp.68-71.

Google Scholar

[10] Hongling Yin, Yuan Ma, Lu Wang, et al. The extraction of and scavenging hydroxyl free radicals by scallop viscus polysaccharide. Fisheries Science 26 (5)(2007), pp.255-258.

Google Scholar

[11] GLODE W A. simple spectrophotometic method of estimating glycosaminoglycan concentrations. Anlytical Biochem 99(1979), pp.183-188.

Google Scholar

[12] Oyaizu M. Studies on product of browning reaction prepared from glucose amine. Japanese Journal of Nutrition 44(1986), pp.307-315.

Google Scholar

[13] Decker E A, Welch, B. Role of ferritin as a lipid oxidation catalyst in muscle food. Journal of Agricultural and Food Chemistry 38(1990), pp.674-677.

DOI: 10.1021/jf00093a019

Google Scholar

[14] Xin X L, Liu C H. Progress in the study of antioxidant effects of Chinese herbal polysaccharides. J Beijing Univ Tradit Chin Med 23 (5)(2000), pp.54-55.

Google Scholar

[15] Quanbin Zhang, Pengzhan Yu, Gefei Zhou, et al. Studies on antioxidant activities of fucoidan from Laminaria japonica. Chinese Traditional and Herbal Drugs 34(9)(2003), pp.824-826.

Google Scholar