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基于全固态接触铵选择性膜电极的新型肌酸生物传感器。

Novel creatine biosensors based on all solid-state contact ammonium-selective membrane electrodes.

机构信息

Yildiz Technical University, Faculty of Arts and Sciences, Department of Chemistry, Davutpasa Campus, Esenler, 34210 Istanbul, Turkey.

出版信息

Artif Cells Nanomed Biotechnol. 2013 Apr;41(2):131-6. doi: 10.3109/10731199.2012.696066. Epub 2012 Jul 10.

Abstract

Novel creatine bienzymatic potentiometric biosensors were prepared by immobilizing urease and creatinase on all solid-state contact PVC-containing palmitic acid and carboxylated PVC matrix membrane ammonium-selective electrodes without inner reference solution. Potentiometric characteristics of biosensors were examined in physiological model solutions at different creatine concentrations. The linear working range and long-term sensitivity of the biosensors were also determined. The creatine biosensors prepared by using the carboxylated PVC membrane electrodes showed more effective performance than those of the PVC containing palmitic acid membrane electrodes. Creatine assay in serum samples was successfully carried out by using the standard addition method.

摘要

新型creatine 双酶电化学生物传感器通过将脲酶和creatinase 固定在不含内参溶液的全固态接触含棕榈酸的 PVC 和羧化 PVC 基质膜铵选择性电极上制备而成。在不同的 creatine 浓度的生理模型溶液中检查了生物传感器的电势特性。还确定了生物传感器的线性工作范围和长期灵敏度。与含有棕榈酸的 PVC 膜电极相比,使用羧化 PVC 膜电极制备的 creatine 生物传感器表现出更有效的性能。通过使用标准添加法成功地对血清样品中的 creatine 进行了测定。

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