Rui C S, Ogawa H I, Sonomoto K, Kato Y
Department of Applied Chemistry, Faculty of Engineering, Kyushu Institute of Technology, Kitakyushu, Japan.
Ann N Y Acad Sci. 1992 Nov 30;672:264-71. doi: 10.1111/j.1749-6632.1992.tb35633.x.
A flow-injection analysis biosensor system was developed for the amperometric assay of creatinine based on coupled reactions of three immobilized enzymes, using an oxygen electrode as the detection device. The ammonia produced by creatinine deiminase-catalyzed hydrolysis of creatinine was further converted into L-glutamate with two sequentially aligned enzyme reactors: glutamate dehydrogenase and glutamate oxidase. Endogenous ammonia was simultaneously compensated with a double peak recording system, where the flow was split after sample injection and rejoined before the glutamate dehydrogenase reactor. The system gave linear calibration in a range of 0.1-2.0 mM for creatinine and the first peak of ammonia, and 0.1-3.0 mM for the second peak of ammonia. One run was completed within two minutes. The system can be readily applied to the assay of creatinine in urine and showed good correlation with that from the currently used Jaffe method.
基于三种固定化酶的偶联反应,开发了一种流动注射分析生物传感器系统,用于肌酐的安培测定,该系统使用氧电极作为检测装置。肌酐脱亚氨酶催化肌酐水解产生的氨,通过两个依次排列的酶反应器进一步转化为L-谷氨酸:谷氨酸脱氢酶和谷氨酸氧化酶。内源性氨通过双峰记录系统同时得到补偿,在样品注入后将流动分流,并在谷氨酸脱氢酶反应器之前重新合并。该系统对肌酐和氨的第一个峰在0.1-2.0 mM范围内给出线性校准,对氨的第二个峰在0.1-3.0 mM范围内给出线性校准。一次运行在两分钟内完成。该系统可轻松应用于尿液中肌酐的测定,与目前使用的Jaffe方法测定结果具有良好的相关性。