首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >CHARACTERIZATION OF A D-AMINO ACID OXIDASE MICROBIOSENSOR FOR D-SERINE DETECTION IN THE CENTRAL NERVOUS SYSTEM
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CHARACTERIZATION OF A D-AMINO ACID OXIDASE MICROBIOSENSOR FOR D-SERINE DETECTION IN THE CENTRAL NERVOUS SYSTEM

机译:中枢神经系统中D-丝氨酸检测D-氨基酸氧化酶微生物传感器的表征

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D-serine is a glial neuromodulator that is linked to several brain disorders such as schizophrenia, epilepsy, or stroke. We have developed an in situ D-serine microbiosensor that consists in a cylindrical platinum microelectrode covered with a layer of D-amino acid oxidase from the yeast R. gracilis. This enzyme converts D-serine into hydroxypyruvate, while producing hydrogen peroxide that, in turn, is oxidized by the electrode. Interferences by biogenic amines or ascorbic acid are greatly reduced by an additional membrane of poly-m-phenylene diamine. Our microbiosensor can monitor D-serine levels in vivo with a high temporal and spatial resolution. This method will make it possible to study D-serine dynamics in the central nervous system.
机译:D-丝氨酸是一种胶质神经调节剂,与诸如精神分裂症,癫痫或中风等几种脑疾病相关联。我们开发了一种原位D-丝氨酸微生物传感器,其包括从酵母R. Gracilis的一层D-氨基酸氧化酶覆盖的圆柱形铂微电极。该酶将D-丝氨酸转化为羟基吡合他分,同时产生过氧化氢,其又通过电极氧化。通过聚-M-亚苯基二胺的另外的膜大大减少了生物胺或抗坏血酸的干扰。我们的微生物激发镜可以通过高时和空间分辨率监测Vivo的D-SeriNe水平。该方法可以在中枢神经系统中研究D-SERINE动态。

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