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过氧化物酶体增殖物激活受体 γ 参与 α-细辛脑对斑马鱼戊四氮致惊厥的抗惊厥作用。

Involvement of peroxisome proliferator-activated receptor γ in anticonvulsant activity of α-asaronol against pentylenetetrazole-induced seizures in zebrafish.

机构信息

Biology Institute, Qilu University of Technology (Shandong Academy of Sciences), 28789, East Jingshi Road, Ji'nan, Shandong Province, PR China; Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province, 28789 East Jingshi Road, Ji'nan, 250103, Shandong Province, PR China; Key Laboratory for Biosensor of Shandong Province, 28789 East Jingshi Road, Ji'nan, 250103, Shandong Province, PR China.

Biology Institute, Qilu University of Technology (Shandong Academy of Sciences), 28789, East Jingshi Road, Ji'nan, Shandong Province, PR China; Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province, 28789 East Jingshi Road, Ji'nan, 250103, Shandong Province, PR China; Key Laboratory for Biosensor of Shandong Province, 28789 East Jingshi Road, Ji'nan, 250103, Shandong Province, PR China.

出版信息

Neuropharmacology. 2020 Jan 1;162:107760. doi: 10.1016/j.neuropharm.2019.107760. Epub 2019 Sep 4.

Abstract

In mammals, peroxisome proliferators activated receptors (PPARs), the nuclear hormone receptors, have been reported to be involved in seizure control. Selective agonists and antagonists of PPARs raise seizure thresholds and suppress seizures, respectively. In this study, we evaluated the anticonvulsant effects of α-asaronol, a metabolic product of α-asarone, on pentylenetetrazole (PTZ)-induced seizures in zebrafish and investigated the underlying mechanisms. As a result, α-asaronol ameliorated seizures with increase of seizure latency, as well as decrease of seizure-like behavior, c-fos expression, and abnormal neuronal discharge in a concentration dependent manner. By comparing gene expression profiles of zebrafish undergoing seizures and α-asaronol pretreated zebrafish, we found that α-asaronol attenuate seizures through increase of PPAR γ expression, while PPAR γ antagonist GW9662 inhibit the anti-seizures actions of α-asaronol. Moreover, molecular docking simulation implied the physical interaction between α-asaronol and PPAR γ. The overall results indicated that the anticonvulsant effects of α-asaronol are regulated through PPAR γ-mediated pathway, which shed light on development of α-asaronol as a potential antiepileptic drug. In addition, it is for first time to report that PPAR γ is associated with seizures in zebrafish, supporting previous evidence that zebrafish is a suitable alternative for studying seizures.

摘要

在哺乳动物中,过氧化物酶体增殖物激活受体(PPARs)作为核激素受体,已被报道参与癫痫发作的控制。PPARs 的选择性激动剂和拮抗剂分别提高癫痫发作阈值和抑制癫痫发作。在这项研究中,我们评估了 α-细辛脑,α-细辛醚的代谢产物,对斑马鱼戊四氮(PTZ)诱导的癫痫发作的抗惊厥作用,并研究了其潜在机制。结果表明,α-细辛脑以浓度依赖的方式改善癫痫发作,增加癫痫潜伏期,减少癫痫样行为、c-fos 表达和异常神经元放电。通过比较经历癫痫发作和 α-细辛脑预处理的斑马鱼的基因表达谱,我们发现 α-细辛脑通过增加 PPARγ 表达来减轻癫痫发作,而 PPARγ 拮抗剂 GW9662 抑制 α-细辛脑的抗癫痫作用。此外,分子对接模拟表明 α-细辛醇与 PPARγ 之间存在物理相互作用。总的来说,这些结果表明 α-细辛醇的抗惊厥作用是通过 PPARγ 介导的途径调节的,这为开发 α-细辛醇作为一种潜在的抗癫痫药物提供了依据。此外,这是首次报道 PPARγ 与斑马鱼癫痫发作有关,支持了先前的证据,即斑马鱼是研究癫痫发作的合适替代动物。

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