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Microelectrode arrays studies of glutamate excitatory pathway in hippocampus CA3 by offside KCl and glutamate stimulating

机译:微电极阵列在海马CA3中谷氨酸兴奋性途径通过越位KCl和谷氨酸刺激

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In our central nervous system (CNS), glutamate is an excitatory neurotransmitter that can be accumulated remarkably by brain tissue. As is noticeable from previous studies, glutamate is somehow closely related with most ways of normal and abnormal cerebral activities. It was significant to monitor glutamate concentration changes in vivo real time. Therefore, we developed an enzyme-based microelectrode array with high sensitivity (7.34pA/μM) and perfect linearity (R=0.999). Selectivity to normal neurotransmitters satisfied our in vivo demands. Ultimately, we applied the electrode into the brain specific tissue to study glutamate excitatory pathway in hippocampus CA3 by offside KCl and glutamate stimulating. The hippocampus CA3 glutamate was detected about 18.17μM and 13.19μM by twice KCl stimulating in the offside cortex, and 6.50μM, 4.55μM by twice glutamate stimulating. All peak current back to the base level later. The self-regulation ability reflects the glutamate excitatory pathway from hippocampus CA3 to cortex.
机译:在我们的中枢神经系统(CNS)中,谷氨酸是一种兴奋性神经递质,可以通过脑组织显着累积。从以前的研究中明显看出,谷氨酸含量与正常和异常的脑活动方式密切相关。监测体内实时谷氨酸浓度变化很重要。因此,我们开发了一种基于酶的微电极阵列,具有高灵敏度(7.34Pa /μm)和完美的线性度(r = 0.999)。对正常神经递质的选择性满足于我们的体内需求。最终,我们将电极施加到脑特异性组织中,以通过越位KCl和谷氨酸刺激研究海马CA3的谷氨酸兴奋性途径。在越位皮质中通过刺激的两次刺激,6.50μm,4.55μm,通过两次谷氨酸刺激,检测到海马CA3谷氨酸约18.17μm和13.19μm。稍后所有峰值电流返回基本级别。自我调节能力反映了从海马CA3到皮质的谷氨酸兴奋性途径。

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