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一种用于同时测定氨、肌酐和尿素的多功能流动注射生物传感器。

A multifunctional flow-injection biosensor for the simultaneous determination of ammonia, creatinine, and urea.

作者信息

Rui C S, I-Ogawa H, Sonomoto K, Kato Y

机构信息

Department of Applied Chemistry, Faculty of Engineering, Kyushu Institute of Technology, Kitakyushu, Japan.

出版信息

Ann N Y Acad Sci. 1995 Mar 31;750:30-8. doi: 10.1111/j.1749-6632.1995.tb19921.x.

Abstract

A strategy for the multifunctionalization of the FIA biosensor was developed. The described multifunctional FIA system offers a fast and simple method for the simultaneous determination of ammonia, creatinine, and urea. The hydrolysis of creatinine by creatinine deiminase (CRDI) or of urea by urease forms ammonia, which is amperometrically detected by an oxygen electrode, based on an enzyme conversion system, glutamate dehydrogenase (GLDH)/glutamate oxidase (GLOD). The split of the stream into three after sample injection and confluence before the GLDH reactor resulted in a three-channel system, into which were set three parallel columns, respectively, filled with immobilized CRDI, urease, and CPG. A triple-peak recording was obtained by putting two delay coils at the channels involving CRDI and urease. Thus the interfering of the endogenous ammonia on the creatinine and urea assay is simultaneously compensated. Furthermore, the problem of great difference in concentration between urea and the other two components is resolved by taking advantage of the differentiated dilution effect for each channel caused from the split-stream, flow-injection system. Linear calibration ranges for ammonia, creatinine, and urea were 0.1-5, 0.2-10, and 2-40 mM, respectively. One run was finished within 5 minutes, and the system was reproducibility good (3 to 5%). The results of the urine assay obtained by the present method will be described in the near future.

摘要

开发了一种用于流动注射分析(FIA)生物传感器多功能化的策略。所描述的多功能FIA系统提供了一种快速简便的方法,可同时测定氨、肌酐和尿素。肌酐通过肌酐脱亚氨酶(CRDI)水解或尿素通过脲酶水解生成氨,基于酶转换系统谷氨酸脱氢酶(GLDH)/谷氨酸氧化酶(GLOD),由氧电极进行安培检测。进样后将流路分成三路,并在GLDH反应器之前汇合,形成了一个三通道系统,在该系统中分别设置了三根平行柱,柱中填充有固定化的CRDI、脲酶和CPG。通过在涉及CRDI和脲酶的通道处放置两个延迟线圈,获得了三峰记录。从而同时补偿了内源性氨对肌酐和尿素测定的干扰。此外,利用分流流动注射系统对每个通道造成的不同稀释效应,解决了尿素与其他两种成分浓度差异很大的问题。氨、肌酐和尿素的线性校准范围分别为0.1 - 5、0.2 - 10和2 - 40 mM。一次运行在5分钟内完成,系统重现性良好(3%至5%)。用本方法获得的尿液分析结果将在不久的将来进行描述。

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