Countercurrent Chromatographic Purification of Polysaccharides from Achyranthes bidentata with an Aqueous Two-Phase System Using a Cross-Axis Coil Planet Centrifuge

Polysaccharides were purified from a high molecular weight complex of Achyranthes bidentata Bl. (Fam. Amaranthaceae) root by high speed countercurrent chromatography (HSCCC) using a cross-axis coil planet centrifuge (X-axis CPC). The purification was performed with an aqueous polymer two-phase syste...

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Published in:Journal of liquid chromatography & related technologies Vol. 26; no. 12; pp. 1895 - 1903
Main Authors: Chao, Zhimao, Shibusawa, Yoichi, Shindo, Heisaburo, Ito, Yoichiro
Format: Journal Article
Language:English
Published: Colchester Taylor & Francis Group 01-01-2003
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Abstract Polysaccharides were purified from a high molecular weight complex of Achyranthes bidentata Bl. (Fam. Amaranthaceae) root by high speed countercurrent chromatography (HSCCC) using a cross-axis coil planet centrifuge (X-axis CPC). The purification was performed with an aqueous polymer two-phase system composed of 12.5% (w/w) polyethylene glycol (PEG) 1000, 8% (w/w) potassium dihydrogen phosphate, and 8% (w/w) dipotassium hydrogen phosphate buffer at pH 6.8. The preparative separation of the crude sample (2 g) was successfully performed, yielding 1.1 g of polysaccharides at high purity.
AbstractList Polysaccharides were purified from a high molecular weight complex of Achyranthes bidentata Bl. (Fam. Amaranthaceae) root by high speed countercurrent chromatography (HSCCC) using a cross-axis coil planet centrifuge (X-axis CPC). The purification was performed with an aqueous polymer two-phase system composed of 12.5% (w/w) polyethylene glycol (PEG) 1000, 8% (w/w) potassium dihydrogen phosphate, and 8% (w/w) dipotassium hydrogen phosphate buffer at pH 6.8. The preparative separation of the crude sample (2 g) was successfully performed, yielding 1.1 g of polysaccharides at high purity.
Author Shindo, Heisaburo
Ito, Yoichiro
Chao, Zhimao
Shibusawa, Yoichi
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  givenname: Yoichi
  surname: Shibusawa
  fullname: Shibusawa, Yoichi
  organization: Department of Analytical Chemistry, School of Pharmacy , Tokyo University of Pharmacy and Life Science
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  surname: Shindo
  fullname: Shindo, Heisaburo
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  surname: Ito
  fullname: Ito, Yoichiro
  organization: Laboratory of Biophysical Chemistry, National Heart, Lung, and Blood Institute , National Institutes of Health
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Cites_doi 10.1016/S0021-9673(01)84486-1
10.1080/10826079208016348
10.1081/JLC-100104442
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Issue 12
Keywords Countercurrent chromatography
Purification
Root
Preparative chromatography
Amaranthaceae
Medicinal plant
Separation method
Folk medicine
Dicotyledones
Angiospermae
Plant origin
Isolation
Spermatophyta
Polysaccharide
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References CIT17580005
CIT17580007
Chao Z. (CIT17580006) 1999; 34
Xiang D. B. (CIT17580002) 1993; 14
CIT17580004
Zhang R. L. (CIT17580001) 1981; 3
Xiang D. B. (CIT17580003) 1993; 14
References_xml – volume: 14
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  issue: 4
  year: 1993
  ident: CIT17580002
  publication-title: Acta Pharmacol. Sin.
  contributor:
    fullname: Xiang D. B.
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  issue: 5
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  ident: CIT17580006
  publication-title: Chin. Pharm. J.
  contributor:
    fullname: Chao Z.
– ident: CIT17580004
  doi: 10.1016/S0021-9673(01)84486-1
– ident: CIT17580007
  doi: 10.1080/10826079208016348
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  publication-title: Chin. J. Oncol.
  contributor:
    fullname: Zhang R. L.
– ident: CIT17580005
  doi: 10.1081/JLC-100104442
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Snippet Polysaccharides were purified from a high molecular weight complex of Achyranthes bidentata Bl. (Fam. Amaranthaceae) root by high speed countercurrent...
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StartPage 1895
SubjectTerms Biological and medical sciences
Countercurrent chromatography
Cross-axis coil planet centrifuge
General pharmacology
Medical sciences
Partition coefficient
Pharmacognosy. Homeopathy. Health food
Pharmacology. Drug treatments
Polysaccharides
Title Countercurrent Chromatographic Purification of Polysaccharides from Achyranthes bidentata with an Aqueous Two-Phase System Using a Cross-Axis Coil Planet Centrifuge
URI https://www.tandfonline.com/doi/abs/10.1081/JLC-120021758
Volume 26
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