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紫铆因可预防戊四氮诱导的成年斑马鱼急性癫痫发作,并对其认知功能有正向调节作用。

Embelin Protects Against Acute Pentylenetetrazole-Induced Seizures and Positively Modulates Cognitive Function in Adult Zebrafish.

作者信息

Kundap Uday Praful, Choo Brandon Kar Meng, Kumari Yatinesh, Ahmed Nafees, Othman Iekhsan Bin, Shaikh Mohd Farooq

机构信息

Department of Neurosciences, University of Montreal Hospital Centre (CRCHUM), Montreal, Canada.

Neuropharmacology Research Laboratory, Jeffrey Cheah School of Medicine and Health Sciences, Monash University, Kuala Lumpur, Malaysia.

出版信息

Front Pharmacol. 2019 Oct 25;10:1249. doi: 10.3389/fphar.2019.01249. eCollection 2019.

Abstract

Epilepsy is a continuous process of neurodegeneration categorized by an enduring tendency to generate uncontrolled electrical firing known as seizures causing involuntary movement all over the body. Cognitive impairment and behavioral disturbances are among the more alarming co-morbidities of epilepsy. Anti-epileptic drugs (AEDs) were found to be successful in controlling epilepsy but are reported to worsen cognitive status in patients. Embelin (EMB) is a benzoquinone derived from the plant and is reported to have central nervous system (CNS) activity. This study aims to evaluate the effectiveness of EMB against pentylenetetrazole (PTZ) induced acute seizures and its associated cognitive dysfunction. This was done docking studies as well as evaluating neurotransmitter and gene expression in the zebrafish brain. Behavioral observations showed that EMB reduced epileptic seizures and the T-maze study revealed that EMB improved the cognitive function of the fish. The docking study of EMB showed a higher affinity toward gamma-aminobutyric acid (GABA) receptor as compared to the standard diazepam, raising the possibility of EMB working the alpha subunit of the GABA receptor. EMB was found to modulate several genes, neurotransmitters, and also neuronal growth, all of which play an important role in improving cognitive status after epileptic seizures. Healthy zebrafish treated with EMB alone were found to have no behavioral and biochemical interference or side effects. The immunohistochemistry data suggested that EMB also promotes neuronal protection and neuronal migration in zebrafish brains. It was perceived that EMB suppresses seizure-like behavior GABA receptor pathway and has a positive impact on cognitive functions. The observed effect was supported by docking study, T-maze behavior, neurotransmitter and gene expression levels, and immunohistology study. The apparatus such as the T-maze and seizure scoring behavior tank were found to be a straightforward technique to score seizure and test learning ability after acute epileptic seizures. These research findings suggest that EMB could be a promising molecule for epilepsy induced learning and memory dysfunction.

摘要

癫痫是一种神经退行性变的持续过程,其特征是具有产生不受控制的电活动的持久倾向,这种电活动被称为癫痫发作,会导致全身不自主运动。认知障碍和行为紊乱是癫痫更令人担忧的合并症。抗癫痫药物(AEDs)被发现可成功控制癫痫,但据报道会使患者的认知状态恶化。恩贝林(EMB)是一种从植物中提取的苯醌,据报道具有中枢神经系统(CNS)活性。本研究旨在评估EMB对戊四氮(PTZ)诱导的急性癫痫发作及其相关认知功能障碍的有效性。这是通过对接研究以及评估斑马鱼大脑中的神经递质和基因表达来完成的。行为观察表明,EMB减少了癫痫发作,T迷宫研究表明,EMB改善了鱼的认知功能。EMB的对接研究表明,与标准地西泮相比,它对γ-氨基丁酸(GABA)受体具有更高亲和力,这增加了EMB作用于GABA受体α亚基的可能性。发现EMB可调节多个基因、神经递质以及神经元生长,所有这些在改善癫痫发作后的认知状态中都起着重要作用。单独用EMB处理的健康斑马鱼未发现有行为和生化干扰或副作用。免疫组织化学数据表明,EMB还促进斑马鱼大脑中的神经元保护和神经元迁移。据认为,EMB通过GABA受体途径抑制癫痫样行为,并对认知功能有积极影响。对接研究、T迷宫行为、神经递质和基因表达水平以及免疫组织学研究支持了观察到的效果。发现T迷宫和癫痫发作评分行为槽等仪器是一种简单的技术,可用于对急性癫痫发作后的癫痫发作进行评分并测试学习能力。这些研究结果表明,EMB可能是一种治疗癫痫所致学习和记忆功能障碍的有前景的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ee/6823247/c0d20a75ae0d/fphar-10-01249-g011.jpg

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