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LC-HCL和Mor-HCL对海马神经元网络中Vth和神经突长度影响的联合分析

Conjoint analysis of influence of LC-HCL and Mor-HCL on Vth and neurite length in hippocampal neuronal network.

作者信息

Lü Xiao-Ying, Hou Kun, Zhao Yong-Fang, An Shuai, Wang Zhi-Gong

机构信息

State Key Laboratory of Bioelectronics, Southeast University, Nanjing, 210096, Jiangsu Province, China; Co-innovation Center of Neuroregeneration, Nantong University, Nantong, 226019, Jiangsu Province, China.

State Key Laboratory of Bioelectronics, Southeast University, Nanjing, 210096, Jiangsu Province, China.

出版信息

Neurosci Lett. 2021 Apr 23;751:135801. doi: 10.1016/j.neulet.2021.135801. Epub 2021 Mar 8.

Abstract

Lidocaine hydrochloride (LC-HCl) and morphine hydrochloride (Mor-HCl) are two kinds of most prevalently used anesthetics. However, their influences on electrical excitability of hippocampal neuronal networks and hippocampal brain slices were rarely studied. Previously, our group have assessed the influence of acetylcholine, alcohol and temperature change on the excitability of neural networks with the so-called Voltage Threshold Measurement Method (VTMM) based on microelectrode array (MEA). In this paper, we will study the influence of LC-HCl and Mor-HCl on the electrical excitability of neural networks and the morphological features of neurons, and discuss the relations between the changes of electrical excitability of neural networks and the morphological changes of neurons. The results of VTMM showed: The voltage threshold (V) of hippocampal neuronal networks and hippocampal brain slices first increased and then decreased as the LC-HCl concentration increased. The V of hippocampal neuronal networks and hippocampal brain slices increased as the Mor-HCl concentration increased. The results of HCS experiments showed: The neurite length change of cultured hippocampal neuronal networks increased first and then decreased with increased LC-HCl concentration, but decreased as the Mor-HCl concentration increased. The combined analysis of VTMM and HCS experiments showed that under effects of the two drugs, the V and the hippocampal neurite length were strongly negatively correlated.

摘要

盐酸利多卡因(LC-HCl)和盐酸吗啡(Mor-HCl)是两种最常用的麻醉剂。然而,它们对海马神经元网络和海马脑片电兴奋性的影响鲜有研究。此前,我们团队已使用基于微电极阵列(MEA)的所谓电压阈值测量方法(VTMM)评估了乙酰胆碱、酒精和温度变化对神经网络兴奋性的影响。在本文中,我们将研究LC-HCl和Mor-HCl对神经网络电兴奋性及神经元形态特征的影响,并探讨神经网络电兴奋性变化与神经元形态变化之间的关系。VTMM结果显示:随着LC-HCl浓度增加,海马神经元网络和海马脑片的电压阈值(V)先升高后降低。随着Mor-HCl浓度增加,海马神经元网络和海马脑片的V升高。HCS实验结果显示:培养的海马神经元网络的神经突长度变化随LC-HCl浓度增加先升高后降低,但随Mor-HCl浓度增加而降低。VTMM和HCS实验的综合分析表明,在两种药物作用下,V与海马神经突长度呈强烈负相关。

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