首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Effects of lidocaine on adult zebrafish behavior and brain acetylcholinesterase following peripheral and systemic administration
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Effects of lidocaine on adult zebrafish behavior and brain acetylcholinesterase following peripheral and systemic administration

机译:利多卡因对外周和系统施用后成年斑马鱼行为和脑乙酰胆碱酯酶的影响

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摘要

Lidocaine is a voltage-gated Na+ channel blocker, commonly used as a fast-acting local and general anesthetic. Lidocaine also has central action, affecting behavior both clinically and in animal models. Adult zebrafish are rapidly becoming a critical novel model organism in translational neuroscience research. Here, we examine the effects of acute peripheral (lateral line application, 4%) and systemic (water immersion, 1, 5 and 10 mg/L) administration of lidocaine on adult zebrafish behavior tested in the novel tank test. Overall, the drug evoked hypolocomotor effect when applied systemically (at 10 mg/L) and peripherally. Peripheral lidocaine also reduced top exploration in the novel tank test (vs. sham), suggesting anxiogenic-like effect of the lateral line blockage, Our findings show the importance of the lateral line system in driving adult zebrafish locomotion, and suggest sedative-like effects of systemic lidocaine in aduld zebrafish. In addition, reflecting the role of central cholinergic contribution in lidocaine action, brain acetylcholinesterase (AChE) activity was lower following peripheral and systemic administration of lidocaine at behaviorally active doses. Collectively, our data support the effects of lidocaine on behavioral responses in zebrafish, and reinforce the growing utility of this aquatic model to screen various CNS drugs.
机译:Lidocaine是一种电压门控Na +通道阻滞剂,通常用作快速作用的局部和一般麻醉剂。利多卡因还具有中央行动,影响临床和动物模型的行为。成年斑马鱼在翻译神经科学研究中迅速成为一种重要的新型模型生物。在这里,我们检查利多卡因对在新型罐试验中测试的成年斑马鱼行为的Lidocaine施用Lidocaine的急性外围(侧向施用,4%)和全身(水浸,1,5和10mg / L)的影响。总体而言,当系统(10mg / L)和外围施用时,药物诱发多发激热效果。外围利多卡因还减少了小型罐试验(Vs. sham)的顶部探索,暗示横向线堵塞的焦虑效果,我们的研究结果表明横向线系统在驾驶成人斑马鱼机时的重要性,并提出镇静效果Aduld Zebrafish的Systemic Lidocaine。此外,反映中央胆碱能贡献在立椰作用中的作用,脑乙酰胆碱酯酶(ACHE)活性在行为活性剂量下的立陶宛Layocaine外周和全身施用后较低。集体,我们的数据支持利多卡因在斑马鱼中的行为反应的影响,加强了这种水生模型的越来越多的效用,以筛选各种CNS药物。

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