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用于分析大鼠颈动脉体化学敏感性的安培型ATP微生物传感器。

Amperometric ATP microbiosensors for the analysis of chemosensitivity at rat carotid bodies.

作者信息

Masson Jean-Francois, Kranz Christine, Mizaikoff Boris, Gauda Estelle B

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, 901 Atlantic Drive, Atlanta, Georgia 30332-0400, USA.

出版信息

Anal Chem. 2008 Jun 1;80(11):3991-8. doi: 10.1021/ac7018969. Epub 2008 May 6.

Abstract

The physiological application of amperometric adenosine triphosphate (ATP) microbiosensors for characterizing the stimulus-response at rat carotid bodies superfused with high potassium concentrations, during normoxic hypercapnia, and during hypoxia is demonstrated using the peripheral arterial chemoreceptors in the carotid body of rats as a model system. Amperometric microbiosensors based on glucose oxidase (GOD) and hexokinase (HEX) immobilized within a polymer matrix at the surface of Pt disk microelectrodes (diameter: 25 microm) are positioned at a distance of approximately 100 microm above the carotid body surface for detecting extracellular ATP. A linear calibration function of ATP microbiosensors in the physiologically relevant concentration range of 0-40 microM ATP enables quantitative detection of ATP released at the carotid body surface in response to physiological stimuli. It is shown that these stimuli induce extracellular ATP release from the carotid body at levels of 4-10 microM. Other electroactive neurotransmitters such as, e.g., catecholamines are coreleased by the carotid body at hypercapnic, hypoxic and high-potassium stimulus, are simultaneously detected utilizing a dual-electrode assembly with an ATP microbiosensor and a second bare channel providing a colocalized reference measurement for ATP quantification.

摘要

以大鼠颈动脉体中的外周动脉化学感受器作为模型系统,展示了安培型三磷酸腺苷(ATP)微生物传感器在生理方面的应用,用于表征在高钾浓度灌流、常氧高碳酸血症期间以及低氧期间大鼠颈动脉体的刺激-反应。基于葡萄糖氧化酶(GOD)和己糖激酶(HEX)固定在铂盘微电极(直径:25微米)表面的聚合物基质内的安培型微生物传感器,位于颈动脉体表面上方约100微米处,用于检测细胞外ATP。ATP微生物传感器在0 - 40微摩尔ATP的生理相关浓度范围内具有线性校准功能,能够定量检测颈动脉体表面响应生理刺激而释放的ATP。结果表明,这些刺激可诱导颈动脉体释放4 - 10微摩尔水平的细胞外ATP。其他电活性神经递质,如儿茶酚胺,在高碳酸血症、低氧和高钾刺激下由颈动脉体共同释放,利用带有ATP微生物传感器的双电极组件和第二个裸通道同时进行检测,该裸通道为ATP定量提供共定位参考测量。

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