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γ-氨基丁酸(GABA)受体参与了白葡萄汁富含多酚提取物在啮齿动物中引发的癫痫发作阻断过程。

GABA Receptors Are Involved in the Seizure Blockage Prompted by a Polyphenol-Rich Extract of White Grape Juice in Rodents.

作者信息

Maugeri Alessandro, Citraro Rita, Leo Antonio, Russo Caterina, Navarra Michele, De Sarro Giovambattista

机构信息

Department of Veterinary Sciences, University of Messina, I-98168 Messina, Italy.

Department of Science of Health, School of Medicine and Surgery, University "Magna Græcia" of Catanzaro, I-88100 Catanzaro, Italy.

出版信息

Pharmaceuticals (Basel). 2025 Jan 30;18(2):186. doi: 10.3390/ph18020186.

Abstract

Polyphenols have been suggested to possess anticonvulsant properties, which can be exploited as tools in novel strategies against epilepsy. Along that line, the aim of this study was to investigate the effects of a polyphenol-rich extract of white grape juice (WGJe) in different rodent models of epilepsy, exploring its putative mechanism of action. : In this study, we employed pentylenetetrazole (PTZ)-injected ICR-CD1 mice, audiogenic seizure (AGS)-susceptible DBA/2 mice and WAG/Rij rats. Seizures were monitored and scored, while absence was assessed by electroencephalogram. The open-field test was employed to assess the anxiolytic effects of WGJe. In order to assess the involvement of the GABA receptor, we used the antagonist flumazenil in AGS-susceptible DBA/2 mice. Computational analyses were employed to evaluate the interaction of the main polyphenols of WGJe and GABA receptors. : Our results showed that the intraperitoneal injection of WGJe hindered tonic seizures in PTZ-injected ICR-CD1 mice. In WAG/Rij rats, WGJe did not elicit any significant effects on spike-wave discharges compared to untreated rats. In AGS-susceptible DBA/2 mice, WGJe significantly hampered both clonic and tonic seizures, as well as induced anxiolytic effects. Interestingly, when administering WGJe with flumazenil to DBA/2 mice, we noted that the observed effects were mediated by the GABA receptor. Moreover, docking simulations confirmed that the main polyphenols of WGJe are able to interact with the benzodiazepine sites located in both extracellular and transmembrane domains in the GABA receptor. This study outlines the mechanism underlying the anti-epileptic activity of WGJe, thus supporting its potential role in the management of epilepsy.

摘要

多酚类物质被认为具有抗惊厥特性,可作为对抗癫痫新策略的工具加以利用。据此,本研究旨在探讨白葡萄汁富含多酚的提取物(WGJe)在不同癫痫啮齿动物模型中的作用,探究其可能的作用机制。在本研究中,我们使用了注射戊四氮(PTZ)的ICR-CD1小鼠、对听源性惊厥(AGS)敏感的DBA/2小鼠和WAG/Rij大鼠。监测并记录惊厥情况并进行评分,同时通过脑电图评估失神发作。采用旷场试验评估WGJe的抗焦虑作用。为了评估GABA受体的参与情况,我们在对AGS敏感的DBA/2小鼠中使用了拮抗剂氟马西尼。采用计算分析评估WGJe主要多酚与GABA受体的相互作用。我们的结果表明,腹腔注射WGJe可抑制注射PTZ的ICR-CD1小鼠的强直发作。在WAG/Rij大鼠中,与未处理的大鼠相比,WGJe对棘波放电没有显著影响。在对AGS敏感的DBA/2小鼠中,WGJe显著抑制阵挛性和强直性发作,并具有抗焦虑作用。有趣的是,当给DBA/2小鼠同时注射WGJe和氟马西尼时,我们注意到观察到的作用是由GABA受体介导的。此外,对接模拟证实,WGJe的主要多酚能够与位于GABA受体细胞外和跨膜结构域的苯二氮䓬位点相互作用。本研究概述了WGJe抗癫痫活性的潜在机制,从而支持了其在癫痫治疗中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77b9/11859719/3a9ee617b697/pharmaceuticals-18-00186-g001.jpg

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