首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Bio-electrochemical microelectrode arrays for glutamate and electrophysiology detection in hippocampus of temporal lobe epileptic rats
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Bio-electrochemical microelectrode arrays for glutamate and electrophysiology detection in hippocampus of temporal lobe epileptic rats

机译:生物电化学微电极阵列,用于颞叶癫痫大鼠海马的谷氨酸和电生理检测

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摘要

Temporal Lobe Epilepsy (TLE) is a chronic neurological disorder, characterized by sudden, repeated and transient central nervous system dysfunction. For better understanding of TLE, bio-nanomodified microelectrode arrays (MEA) are designed, for the achievement of high-quality simultaneous detection of glutamate signals (Glu) and multi-channel electrophysiological signals including action potentials (spikes) and local field potentials (LFPs). The MEA was fabricated by Micro-Electro-Mechanical System fabrication technology and all recording sites were modified with platinum black nano-particles, the average impedance decreased by nearly 90 times. Additionally, glutamate oxidase was also modified for the detection of Glu. The average sensitivity of the electrode in Glu solution was 1.999 +/- 0.032 x 10(-2)pA/mu M center dot mu m(2)(n = 3) and linearity was R = 0.9986, with a good selectivity of 97.82% for glutamate and effective blocking of other interferents. In the in-vivo experiments, the MEA was subjected in hippocampus to electrophysiology and Glu concentration detection. During seizures, the fire rate of spikes increases, and the interspike interval is concentrated within 30 ms. The amplitude of LFPs increases by 3 times and the power increases. The Glu level (4.22 mu M, n = 4) was obviously higher than normal rats (2.24 mu M, n = 4). The MEA probe provides an advanced tool for the detection of dual-mode signals in the research of neurological diseases.
机译:颞叶癫痫(TLE)是一种慢性神经障碍,其特征在于突然,重复和瞬时的中枢神经系统功能障碍。为了更好地理解TLE,设计了生物纳米倍化的微电极阵列(MEA),用于实现高质量的同时检测谷氨酸信号(GLU)和包括动作电位(尖峰)和局部场电位的多通道电生理信号(LFPS )。通过微机电系统制造技术制造MEA,并用铂黑纳米颗粒改性所有记录部位,平均阻抗降低了近90倍。另外,还修饰谷氨酸氧化酶以检测Glu。 Glu溶液中电极的平均敏感性为1.999 +/- 0.032×10(-2)pa / mu m中心点mu m(2)(n = 3),线性度为r = 0.9986,选择性良好为97.82谷氨酸的%和有效阻断其他干扰。在体内实验中,将MEA进行海马进行电生理和Glu浓度检测。在癫痫发作期间,尖峰的火力率增加,间隙间隔集中在30毫秒内。 LFP的幅度增加3次,功率增加。 glu水平(4.22 mu m,n = 4)明显高于正常大鼠(2.24 mu m,n = 4)。 MEA探针提供了一种用于检测神经疾病研究中的双模信号的先进工具。

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