Bioscience, Biotechnology, and Biochemistry
Online ISSN : 1347-6947
Print ISSN : 0916-8451
Analytical Chemistry Regular Papers
Immobilization of an Esterase Inhibitor on a Porous Hollow-Fiber Membrane by Radiation-Induced Graft Polymerization for Developing a Diagnostic Tool for Feline Kidney Diseases
Shinya MATSUNODaisuke UMENOMasao MIYAZAKIYasuyuki SUZUTAKyoichi SAITOTetsuro YAMASHITA
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ジャーナル フリー

2013 年 77 巻 10 号 p. 2061-2064

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Removal of the major urinary protein, cauxin, a carboxylesterase, from cat urine is essential for distinguishing between physiological and abnormal proteinuria by a urine dipstick. We have previously developed a material for removing cauxin by using lens culinaris agglutinin (LCA) lectin which targets the N-linked oligosaccharides present in cauxin. To improve the affinity and specificity toward cauxin, we immobilized 1,1,1-trifluoro-3-(2-sulfanylethylsulfanyl) propane-2-one, an inhibitor of esterases, to a polymer chain grafted on to a porous hollow-fiber membrane by applying radiation-induced graft polymerization. Normal male urine was forced to permeate through the pores rimmed by the ligand-immobilized polymer chain. Cauxin could not be detected in the effluent from the membrane. The residence time of the urine across a membrane thickness of 1 mm was set at 7 s. The respective dynamic and equilibrium binding capacities of the membrane for cauxin were 2 and 3 mg/g. The developed cauxin-affinity membrane material was more effective for diagnosing cat kidney diseases than the LCA lectin tip.
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© 2013 by Japan Society for Bioscience, Biotechnology, and Agrochemistry
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