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Carbohydrate Research|July 11, 1997
Chitosan N-sulfate. A water-soluble polyelectrolyteK R Holme, A S PerlinCarbohydrate Research|March 15, 1989
Nuclear magnetic resonance spectra of heparin in admixture with dermatan sulfate and other glycosaminoglycans. 2-D spectra of the chondroitin sulfatesK R Holme, A S PerlinCarbohydrate Research|October 25, 1990
Marked stereoselectivity in the binding of copper ions by heparin. Contrasts with the binding of gadolinium and calcium ionsR N Rej, K R Holme, A S PerlinJournal of Pharmaceutical Sciences|February 1, 1989
Monitoring the purity of pharmaceutical heparin preparations by high-field 1H-nuclear magnetic resonance spectroscopyG A Neville, F Mori, K R Holme, et al.Journal of Pharmaceutical Sciences|April 1, 1990
Chemical composition, particle size range, and biological activity of some low molecular weight heparin derivativesG A Neville, F Mori, T J Racey, et al.International Journal of Biological Macromolecules|December 1, 1989
Heparin in molluscs: chemical, enzymatic degradation and 13C and 1H n.m.r. spectroscopical evidence for the maintenance of the structure through evolutionC P Dietrich, H B Nader, J F de Paiva, et al.Carbohydrate Research|March 4, 1994
Evidence of a selective free radical degradation of heparin, mediated by cupric ionZ Liu, A S PerlinCarbohydrate Research|January 1, 1986
N.m.r. spectroscopic observations related to the function of sulfate groups in heparin. Calcium binding vs. biological activityL Ayotte, A S PerlinCarbohydrate Research|December 15, 1992
Regioselectivity in the sulfation of some chemically-modified heparins, and observations on their cation-binding characteristicsZ Liu, A S PerlinCarbohydrate Research|April 10, 1992
Adverse effects of alkali and acid on the anticoagulant potency of heparin, evaluated with methyl 2-deoxy-2-sulfamino-alpha-D-glucopyranoside 3-sulfate as a model compoundZ Liu, A S PerlinPageof 3