Zhang, J., Zhang, Q., Wang, J. et al. Analysis of the monosaccharide composition of fucoidan by precolumn derivation HPLC., Chin. J. Ocean. Limnol. 27, 578–582 (2009). https://doi.org/10.1007/s00343-009-9205-0
DOI:
Zhang, J., Zhang, Q., Wang, J. et al. Analysis of the monosaccharide composition of fucoidan by precolumn derivation HPLC., Chin. J. Ocean. Limnol. 27, 578–582 (2009). https://doi.org/10.1007/s00343-009-9205-0DOI:
Analysis of the monosaccharide composition of fucoidan by precolumn derivation HPLC
摘要
Abstract
We developed an HPLC method for analysis of the monosaccharide composition of fucoidans. The fucoidan was hydrolyzed into monosaccharides with 2 mol/L trifluoroacetic acid. Using ribose as the internal standard
the monosaccharide derivatives
obtained with 1-Phenyl-3-methyl-5-pyrazolone (PMP)
were separated by reverse-phase HPLC using a gradient elution process
and monitored by ultraviolet detection at 245 nm. In the concentration range of 0.1–2.0 mmol/L
the peak area of each monosaccharide had a good linear relationship with its concentration (r 2>0.998). The average recoveries of mannose
rhamnose
glucuronic acid
glucose
galactose
xylose
and fucose were 86.2%
95.1%
62.5%
102.0%
94.8%
66.6%
and 105.1%
respectively. This method was accurate and had good reproducibility and could be used to determine the monosaccharide contents of fucoidans.
关键词
Keywords
references
Gibbons N M. 1955. The determination of methylpetoses. J. Analyst., 80: 267–276.
Honda S, Akao E, Suzuki S. 1989. High-performance liquid chromatography of reducing carbohydrates as strongly ultraviolet-absorbing and electrochemically sensitive 1-phenyl-3-methyl-5-pyrazolone derivatives. J. Anal. Biochem., 180: 351–357.
Honda S, Yamamoto K, Suzuki S, Ueda M, Kakehi K. 1991. High-performance capillary zone electrophoresis of carbohydrates in the presence of alkaline earth metal ions Chromatogr. A., 588: 327–333.
Ma D Y, Chen J, Li P. 2002. Analysis of Monosaccharide Compositions in Polysaccharide by Precolumn Derivation HPLC. Chinese Journal of Analytical Chemistry, 30(6): 702–705. (in Chinese)
Percival E. 1979. The polysaccharides of green, red and brown seaweeds: their basic structure, biosythesis and fuction. Br. Phycol. J., 14(2): 103–117.
Rao J H, Liu W Y. 2007. Analysis of Monosaccharide Compositions in Epimedium Polysaccharide by Precolumn Derivation HPLC. Lishizhen Medicine and Materia Medica Research, 18(2): 366–367. (in Chinese)
Strydom D J J. 1994. Chromatographic separation of 1-phenyl-3-methyl-5-pyrazolone-derivatized neutral, acidic and basic aldoses. Chromatogr. A., 678: 17–23.
Zhang Q B, Li Z E, Xu Z H. 2003. Effects of fucoidan on chronic renal failure in rats. Planta. Med., 69(6): 537–541. (in Chinese)
Zhang Q B, Xu Z H. 1996. Advances in the chemistry of fucoidan. Chin. J. Mar. Drugs, 15(4): 38–41. (in Chinese)
Zhao Z Q, Liu X G, Niu X Z. 2004. Determination of L-fucose in polysaccharide from Laminaria japonica by gas chromatography. Mar. Sciences, 28(10): 10–12. (in Chinese)
The trial reading is over, you can activate your VIP account to continue reading.
A novel enzyme-assisted one-pot method for the extraction of fucoidan and alginate oligosaccharides from Lessoniatrabeculata and their bioactivities
Pharmacokinetics of fucoidan and low molecular weight fucoidan from Saccharinajaponica after oral administration to mice
Vertical variations of dissolved carbohydrates in the North Yap Trench
Contents of carbohydrates and lipids in the bodies of two planktonic crustaceans
Investigation on Interaction Mechanism Between Rim Sealing Flow and Mainstream Flow in High-Pressure Turbine
Related Author
Sujuan YE
Jing WANG
Yadong HU
Quanbin ZHANG
Lihua GENG
Mingxuan PAN
Changhui YAN
Ning WU
Related Institution
Jiangsu Innovation Center of Marine Bioresources, Jiangsu Coast Development Investment Co., Ltd., Jiangsu Coast Development Group Co., Ltd.
Laboratory for Marine Biology and Biotechnology, Qingdao Marine Science and Technology Center
CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Center for Ocean Mega-Science, Institute of Oceanology, Chinese Academy of Sciences
College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology