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Development of a novel analytical method for determination of chondroitin sulfate using an in-capillary enzyme reaction
Authors:Okamoto Hitoshi  Nakajima Toshiaki  Ito Yuji  Shimada Kenji  Yamato Susumu
Institution:Analytical Laboratory, Taisho Pharmaceutical Co. Ltd., 403 Yoshino-cho 1-chome, Kita-ku, Saitama 331-9530, Japan. h.okamoto@po.rd.taisho.co.jp
Abstract:A novel analytical method for determination of total amount of chondroitin sulfate (CS) based on its conversion to desulfated chondro-disaccharide via an enzyme-catalyzed reaction, was developed. Using the in-capillary enzyme reaction, the method was also applied to the successful construction of an on-line analytical system. Within this system, electrophoretic migration was used to mix zones containing the enzyme mixture (chondroitinase ABC, chondro-4-sulfatase, chondro-6-sulfatase and 2-o-sulfatase) and the substrate (CS). The reaction was then allowed to proceed in the presence of a weak electric field and, finally, the product (desulfated chondro-disaccharide) of enzyme reaction migrated to the detector under the influence of an applied electric field. A polyvinyl alcohol-coated capillary was used to reduce protein adsorption. Desulfated chondro-disaccharide was successfully migrated toward the anode in 10 mM Tris-acetate buffer (pH 7.0) under reversed polarity and detected at 232 nm. The established method was validated and demonstrated to be applicable in the determination of total amount of CS in a commercial ophthalmic solution. No interference from the formulation excipients was observed. Good linearity was obtained, with correlation coefficients above 0.999. Recoveries and precisions ranged from 100.0 to 100.5%, and from 0.2 to 0.6% of the relative standard deviation, respectively. Good agreement was obtained between the established method and traditional photometric method based on carbazole reaction. In this study, application of the method to disaccharide compositional analysis was also performed.
Keywords:In-capillary enzyme reaction  Pharmaceutical analysis  Chondroitin sulfate  Glycosaminoglycans  Polysaccharides
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