Fractionation and characterization of polysaccharides from cyanobacterium Spirulina (Arthrospira) maxima in nitrogen-limited batch culture

Zhen-yuan Nie , Jin-lan Xia , J. M. Levert

Journal of Central South University ›› 2002, Vol. 9 ›› Issue (2) : 81 -86.

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Journal of Central South University ›› 2002, Vol. 9 ›› Issue (2) : 81 -86. DOI: 10.1007/s11771-002-0047-6
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Fractionation and characterization of polysaccharides from cyanobacterium Spirulina (Arthrospira) maxima in nitrogen-limited batch culture

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Abstract

By a sequentially selective extraction procedure, polysaccharides (PS) from cyanobacterium Spirulina (Arthrospira) maxima that can be bio-functionally healthy components were fractionated in four parts including the culture medium (PSCM), the external layers of the cell (PSEL), the cell wall (PSCW) and storage granules (PSSG). The four fractionated parts of polysaccharides were characterized by gas-liquid chromatography (GLC) equipped with FID and fused-silica capillary column (15 m×0.53 mm i. d.). The contents of PSCM, PSEL, PSCW and PSSG were about 2.0%, 2.6%, 10.0% and 52.0% to cell dry matter, respectively. Glucose was almost the only monosaccharide in PSSG and PSCW and most predominant in PSEL, while in PSCM, xylose, rhamnose and glucose were the main ones. Two uronic acids represented by glucuronic acid and galacturoic acid, six neutral monosaccharides including fucose, rhamnose, xylose, mannose, galactose and glucose, and two possible unidentified sugars were found in PSEL and PSCM. These data are valuable for the selective productions of high-added value sugars from Spirulina.

Keywords

characterization / cyanobacterium / extraction / fractionation / gas-liquid chromatography / polysaccharides / Spirulina (Arthrospira) maxima

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Zhen-yuan Nie, Jin-lan Xia, J. M. Levert. Fractionation and characterization of polysaccharides from cyanobacterium Spirulina (Arthrospira) maxima in nitrogen-limited batch culture. Journal of Central South University, 2002, 9(2): 81-86 DOI:10.1007/s11771-002-0047-6

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References

[1]

BelayA, OtaY, MiyakawaK, et al.. Current knowledge on potential health benefits of spirulina [J]. J Appl Physcol, 1993, 5(3): 235-241

[2]

PangQi-shen, GuoBao-jiang, RuanJi-hong. Enhancement of endonuclease activity and repair DNA synthesis by polysaccharide of spirulina platensis[J]. Acta Genetica Sinica, 1988, 15(5): 374-381(in Chinese)

[3]

HayashiT, HayashiK, KojimaI, et al.. Calcium spirulan, an inhibitor of enveloped virus replication, from a blue-green alga spirulina platensis[J]. J Natural Products, 1996, 59(1): 83-87

[4]

LevertJ M, XiaJin-lan. Modeling the growth curve for Spirulina (Arthrospira) maxima, a versatile microalga for producing uniformly labeled compounds with stable isotopes[J]. J Appl Phycol, 2001, 13(4): 359-367

[5]

XiaJin-lan, NieZhen-yuan, LevertJ MChenF, JiangY. Changes in content, composition and distribution of constitutive and excreted sugars of spirulina maxima in nutrient-limited batch cultures. Algae and their Biotechnological Potential[M], 2001, Amsterdam, Kluwer Academic Publishers: 135-146

[6]

ZarroukCContribution à l’étude d’une cyanobactérie: Influence de divers facteurs physiques et chimiques sur du croissance et la photosynthèce de Spirulina maxima (Setch et Gardner) (in French) [D], 1966, France, Thèse Uni Paris

[7]

HerbertD, PhippsP J, StrangeR ENorrisJ R, RibbonsD W. Chemical analysis of microbial cells. Methods in Microbiology (Vol. 5b) [M], 1971, New York, Academic Press: 210-336

[8]

XiaJin-lan. Preparation of methods required. Contribution to the study of photosynthesis of sugars by Spirulina maxima[D], 1999, Mons, Faculté Polytechnique de Mons, Belgique: 71-75

[9]

SutherlandI W, WilkinsonJ FNorrisJ R, RibbonsD W. Chemical extraction methods of microbial cells. Methods in Microbiology (Vol. 5b)[M], 1971, New York, Academic Press: 346-381

[10]

MeltaV B, VaidyaB S. Cellular and extracellular polysaccharides of the blue-green alga nostoc[J]. J Exp Bot, 1978, 29: 1423-1430

[11]

FilalimouhimR, cornetJ F, FontaneT, et al.. Production, isolation and preliminary characterization of the exopolysaccharide of the cyanobacterium Spirulina platensis[J]. Biotechn Letters, 1993, 15(6): 567-572

[12]

KnappD RHandbook of analytical derivatization reactions[M], 1979, New York, John Willey & Sons, Inc: 539-597

[13]

BiermannC J, McGinnisG DAnalysis of carbohydrates by GLC and MS[M], 1989, Boca Raton Florida, CRC Press

[14]

BlackG E, FoxA. Recent progress in the analysis of sugar monomers from complex matrices using chromatography in conjunction with mass spectrometry or stand-alone tandem mass spectrometry. In: Chromatographic and electrophoretic analyses of carbohydrates[J]. J Chromatogr A, 1996, 720(1 + 2): 52-59

[15]

HaY W, ThomasR L. Simultaneous determination of neutral sugars and uronic acids in hydrocolloids[J]. J Food Sci, 1988, 53: 574-577

[16]

DurayAEtude d’une méthode d’analyse de carbohydrates et son application sur l’antigene gD de l’herpes[D], 1997, Mons, Faculté Polytechnique de Mons, Belgique

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