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可插入式快速响应安培型一氧化氮/一氧化碳双微传感器:急性诱导大鼠大脑皮质癫痫发作期间神经血管耦合的研究。

Insertable Fast-Response Amperometric NO/CO Dual Microsensor: Study of Neurovascular Coupling During Acutely Induced Seizures of Rat Brain Cortex.

机构信息

Department of Chemistry and Nano Science, Ewha Womans University , Seoul, 03760, Republic of Korea.

Center for Neuroscience Imaging Research (CNIR), Institute for Basic Science (IBS), Suwon, 16419, Republic of Korea.

出版信息

Anal Chem. 2016 Mar 1;88(5):2563-9. doi: 10.1021/acs.analchem.5b04288. Epub 2016 Feb 16.

Abstract

This paper reports the fabrication of an insertable amperometric dual microsensor and its application for the simultaneous and fast sensing of NO and CO during acutely induced seizures of living rat brain cortex. NO and CO are important signaling mediators, controlling cerebrovascular tone. The dual NO/CO sensor is prepared based on a dual microelectrode having Au-deposited Pt microdisk (WE1, 76 μm diameter) and Pt black-deposited Pt disk (WE2, 50 μm diameter). The different deposited metals for WE1 and WE2 allow the selective anodic detection of CO at WE1 (+0.2 V vs Ag/AgCl) and that of NO at WE2 (+0.75 V vs Ag/AgCl) with sufficient sensitivity. Fluorinated xerogel coating on this dual electrode provides exclusive selectivity over common biological interferents, along with fast response time. The miniaturized size (end plane diameter < 300 μm) and tapered needle-like sensor geometry make the sensor become insertable into biological tissues. The sensor is applied to simultaneously monitor dynamic changes of NO and CO levels in a living rat brain under acute seizure condition induced by 4-aminopyridine in cortical tissue near the area of seizure induction. In-tissue measurement shows clearly defined patterns of NO/CO changes, directly correlated with observed LFP signal. Current study verifies the feasibility of a newly developed NO/CO dual sensor for real-time fast monitoring of intimately connected NO and CO dynamics.

摘要

本文报道了一种可插入式电流型双微传感器的制作及其在急性诱导的活鼠大脑皮层癫痫发作过程中对同时快速检测 NO 和 CO 的应用。NO 和 CO 是重要的信号介质,控制脑血管张力。双 NO/CO 传感器基于具有镀 Au 的 Pt 微盘(WE1,76 μm 直径)和 Pt 黑沉积的 Pt 盘(WE2,50 μm 直径)的双电极制备。WE1 和 WE2 中沉积的不同金属允许在 WE1 处对 CO 进行选择性阳极检测(相对于 Ag/AgCl 为+0.2 V),在 WE2 处对 NO 进行选择性阳极检测(相对于 Ag/AgCl 为+0.75 V),具有足够的灵敏度。该双电极上的氟代气凝胶涂层提供了对常见生物干扰物的专属选择性,以及快速的响应时间。这种微型化尺寸(端面直径 < 300 μm)和锥形针状传感器几何形状使传感器能够插入生物组织。该传感器应用于在皮质组织中由 4-氨基吡啶诱导急性癫痫发作期间,同时监测活鼠大脑中 NO 和 CO 水平的动态变化。组织内测量清楚地显示了与观察到的 LFP 信号直接相关的 NO/CO 变化的明确模式。本研究验证了新开发的 NO/CO 双传感器用于实时快速监测紧密相关的 NO 和 CO 动力学的可行性。

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