Dixon Blanaid M, Lowry John P, O'Neill Robert D
Department of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland.
J Neurosci Methods. 2002 Sep 30;119(2):135-42. doi: 10.1016/s0165-0270(02)00170-x.
The oxygen dependence of a first generation amperometric biosensor was investigated in vitro and in vivo by monitoring its glucose response as a function of solution pO(2). The biosensor was a glucose oxidase (GOx) modified poly(o-phenylenediamine) coated Pt cylinder electrode (Pt/PPD/GOx) that has been designed for neurochemical analysis in vivo. Two types of oxygen probes were used: a self-calibrating commercial macroelectrode in vitro; and a carbon paste microelectrode in vivo. Calibrations in vitro showed that oxygen interference in the operation of Pt/PPD/GOx electrodes was minimal for concentrations of glucose (approximately 0.5 mM) and oxygen (approximately 50 microM) found in brain ECF. This observation was confirmed by simultaneous monitoring in vivo of brain glucose and oxygen in the awake rat. However, at levels of glucose normally found in peripheral tissues (approximately 5 mM), the oxygen dependence was severe. We conclude that the oxygen sensitivity of Pt/PPD/GOx biosensors does not preclude their reliable use in media containing low glucose levels, such as brain ECF.
通过监测第一代电流型生物传感器的葡萄糖响应作为溶液pO₂的函数,在体外和体内研究了其对氧气的依赖性。该生物传感器是一种葡萄糖氧化酶(GOx)修饰的聚邻苯二胺涂层铂圆柱电极(Pt/PPD/GOx),专为体内神经化学分析而设计。使用了两种类型的氧探针:体外使用的自校准商业宏观电极;体内使用的碳糊微电极。体外校准表明,对于在脑细胞外液(ECF)中发现的葡萄糖浓度(约0.5 mM)和氧气浓度(约50 μM),Pt/PPD/GOx电极操作中的氧干扰最小。在清醒大鼠体内同时监测脑葡萄糖和氧气证实了这一观察结果。然而,在外周组织中通常发现的葡萄糖水平(约5 mM)下,对氧气的依赖性很严重。我们得出结论,Pt/PPD/GOx生物传感器的氧敏感性并不妨碍它们在含有低葡萄糖水平的介质(如脑ECF)中可靠使用。