Separation and Analysis of Nanomole Quantities of Heparin Oligosaccharides Using On-Line Capillary Isotachophoresis Coupled with NMR Detection

Glycosaminoglycans (GAGs) are important in a number of biological processes and are structurally altered in many pathological conditions. The complete determination of GAG primary structures has been hampered by the lack of sensitive and specific analytical techniques. Nuclear magnetic resonance spe...

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Bibliographic Details
Published in:Analytical chemistry (Washington) Vol. 77; no. 18; pp. 5998 - 6003
Main Authors: Korir, Albert K, Almeida, Valentino K, Malkin, Douglas S, Larive, Cynthia K
Format: Journal Article
Language:English
Published: Washington, DC American Chemical Society 15-09-2005
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Summary:Glycosaminoglycans (GAGs) are important in a number of biological processes and are structurally altered in many pathological conditions. The complete determination of GAG primary structures has been hampered by the lack of sensitive and specific analytical techniques. Nuclear magnetic resonance spectroscopy (NMR) is a powerful tool for GAG structure elucidation despite its relatively poor limits of detection. Solenoidal microcoils have greatly enhanced the mass limits of detection of NMR, enabling the on-line coupling of microseparation and concentration techniques such as capillary isotachophoresis (cITP), which can separate and concentrate analytes by 2−3 orders of magnitude. We have successfully used cITP coupled with on-line NMR detection to separate and concentrate nanomole quantities of heparin oligosaccharides. This sensitive on-line measurement approach has the potential to provide new insights into the relationships between biological function and GAG microstructures.
Bibliography:istex:8DEF1B1847B0673B29E00A7B8E62C9690E805B42
ark:/67375/TPS-JDL0PM7C-R
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ISSN:0003-2700
1520-6882
DOI:10.1021/ac050669u