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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >A microdialysis and enzymatic reactor sensing procedure for the simultaneous registration of online glutamate measurements at high temporal resolution during epileptiform activity
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A microdialysis and enzymatic reactor sensing procedure for the simultaneous registration of online glutamate measurements at high temporal resolution during epileptiform activity

机译:一种微透析和酶促反应器传感程序,用于在癫痫样活动期间以高时间分辨率同时记录在线谷氨酸测量值

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摘要

Glutamate measurement in microdialysis samples has primarily been determined using HPLC methods, and several attempts have been made to establish a relationship between this neurotransmitter and EEG activity during altered brain function, such as epilepsy. However, classic microdialysis methods lack high temporal resolution. In this study, a new alternative is proposed to improve the time resolution and thus obtain a better understanding of the dynamics of Glu and its relationship with epileptiform activity. A new setup was designed to measure Glu online in microdialysates using enzymatic reactors and fluorescence detection. In this study, we performed EEG recordings and Glu measurements simultaneously in the hippocampus to establish their relationship with the epileptiform events that are induced by pentylenetetrazole in intact and epileptic rats. Basal Glu levels in intact and animals with spontaneous seizures were not significantly different. However, a significant increase in Glu levels was detected during the first pentylenetetrazole-induced seizure in both groups. EEG analysis showed that the amplitude of epileptiform activity was higher in rats with spontaneous seizures and that the frequency of this activity did not change. The results showed that this method can be used to determine Glu changes at high temporal resolution and that these changes can be related to seizure activity. In addition, this method can also be used to measure other neurotransmitters that generate fluorescent derivatives. Moreover, this new technique has the following advantages compared with classical neurochemical methods: easy setup, low training requirements, no need for separation, rapidity, and the experimental data can be obtained and analysis performed in a single session.
机译:微透析样品中的谷氨酸盐含量测定主要是使用HPLC方法进行的,并且已经进行了多种尝试来建立在神经功能改变(例如癫痫症)期间这种神经递质与EEG活性之间的关系。然而,经典的微透析方法缺乏高的时间分辨率。在这项研究中,提出了一种新的替代方法来改善时间分辨率,从而更好地了解Glu的动力学及其与癫痫样活动的关系。设计了一种新的设置,可以使用酶反应器和荧光检测在线测量微量透析液中的Glu。在这项研究中,我们在海马中同时进行了脑电图记录和Glu测量,以建立它们与戊四氮在完整和癫痫大鼠中诱发的癫痫样事件的关系。完好无损和自然发作的动物的基础谷氨酸水平无显着差异。但是,两组中第一次戊四氮诱导的癫痫发作期间均检测到Glu水平显着增加。脑电图分析表明,自发性癫痫大鼠的癫痫样活动幅度较高,并且活动频率没有变化。结果表明,该方法可用于确定高时间分辨率下的Glu变化,并且这些变化可能与癫痫发作活动有关。另外,该方法还可用于测量产生荧光衍生物的其他神经递质。此外,与传统的神经化学方法相比,该新技术具有以下优点:易于设置,培训要求低,无需分离,快速,并且可以在单个会话中获得实验数据并进行分析。

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