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钠钾-ATP 酶激活抗体在匹罗卡品癫痫模型中具有体外和体内的有益作用。

Na, K-ATPase Activating Antibody Displays in vitro and in vivo Beneficial Effects in the Pilocarpine Model of Epilepsy.

机构信息

Graduate Program in Pharmacology, Federal University of Santa Maria, Santa Maria, Brazil.

Panorama Research Institute, 1230 Bordeaux Dr, Sunnyvale, CA 94089, United States.

出版信息

Neuroscience. 2018 May 1;377:98-104. doi: 10.1016/j.neuroscience.2018.02.044. Epub 2018 Mar 6.

DOI:10.1016/j.neuroscience.2018.02.044
PMID:29522855
Abstract

Na, K-ATPase is an important regulator of brain excitability. Accordingly, compelling evidence indicates that impairment of Na, K-ATPase activity contributes to seizure activity in epileptic mice and human with epilepsy. In addition, this enzyme is crucial for plasma membrane transport of water, glucose and several chemical mediators, including glutamate, the major excitatory transmitter in the mammalian brain. Since glucose hypometabolism and increased glutamate levels occur in clinical and experimental epilepsy, we aimed the present study to investigate whether activation of Na, K-ATPase activity with specific antibody (DRRSAb) would improve glucose uptake and glutamate release in pilocarpine-treated mice. We found decreased uptake of the glucose fluorescent analog 2-[N-(7-nitrobenz-2-oxa-1,3-diazol-4-il)amino]-2-desoxi-d-glucose (2-NBDG) in cerebral slices from pilocarpine-treated animals. Interestingly, decreased 2-NBDG uptake was not detected in DRRSAb-treated slices, suggesting a protective effect of the Na, K-ATPase activator. Moreover, DRRSAb prevented the increase in glutamate levels in the incubation media of slices from pilocarpine-treated mice. In addition, in vivo intrahippocampal injection of DRRSAb restored crossing activity of pilocarpine-treated mice in the open-field test. Overall, the present data further support the hypothesis that activation of the Na, K-ATPase is a promising therapeutic strategy for epilepsy.

摘要

钠钾-ATP 酶是大脑兴奋性的重要调节因子。因此,有充分证据表明,钠钾-ATP 酶活性的损害导致癫痫小鼠和癫痫患者的癫痫发作。此外,这种酶对于水、葡萄糖和几种化学介质(包括谷氨酸)的质膜转运至关重要,谷氨酸是哺乳动物大脑中的主要兴奋性递质。由于葡萄糖代谢不足和谷氨酸水平升高在临床和实验性癫痫中发生,我们旨在研究用特异性抗体(DRRSAb)激活钠钾-ATP 酶活性是否会改善匹罗卡品处理的小鼠中的葡萄糖摄取和谷氨酸释放。我们发现,匹罗卡品处理动物的脑片中葡萄糖荧光类似物 2-[N-(7-硝基苯并-2-氧代-1,3-二唑-4-基)氨基]-2-去氧-d-葡萄糖(2-NBDG)的摄取减少。有趣的是,在 DRRSAb 处理的切片中未检测到 2-NBDG 摄取减少,表明 Na,K-ATP 酶激活剂具有保护作用。此外,DRRSAb 可防止匹罗卡品处理的小鼠脑片孵育介质中谷氨酸水平的升高。此外,DRRSAb 可恢复体内海马内注射对匹罗卡品处理的小鼠在旷场试验中的穿越活动。总体而言,这些数据进一步支持了激活钠钾-ATP 酶是治疗癫痫的有前途的治疗策略的假说。

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