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金刚烷胺改善幼年大鼠脑皮质谷氨酸诱导的锥体神经元毒性的潜力。

Potential of Amantadine to Ameliorate Glutamate-Induced Pyramidal Cells Toxicity in Juvenile Rat' Brain Cortex.

机构信息

Anatomy and Embryology Department, College of Medicine, Tanta University, Tanta, 31511, Egypt.

Imam Muhammad Bin Saud Islamic University, Riyadh, Saudi Arabia.

出版信息

Neurotox Res. 2021 Aug;39(4):1203-1210. doi: 10.1007/s12640-021-00365-7. Epub 2021 Apr 23.

Abstract

Glutamate (Gt) neurotoxicity contributes to a wide spectrum of neurological conditions. Loss of glutamate transporters leads to intracellular Gt accumulation. Amantadin (AMn) is a non-competitive N-methyl-D-aspartate (NMDA) antagonist that can partially inhibit Gt transporters and influence protein phosphatase 2A subunit B (PP-2A-B) activity. Herein, we investigate the potential of AMn administered in the early life stages to reverse the Gt-induced changes in the cerebral cortex in the rat model. We report that AMn can reverse Gt-induced structural changes in the brain cortex and increase PP-2A activity. Additionally, PP-2A-B activity in the AMn + Gt-treated group was comparable to controls. Moreover, administration of AMn leads to a decrease of apoptotic index in the Gt-treated individuals. We suggest that severe histopathological changes observed in Gt group could be attributed to the decreased PP-2A expression causing an imbalance between phosphatase and protein kinase activities and leading to a strong positive TUNEL reaction. We provide a short summary of the current state of knowledge regarding the role of PP-2A-B in the Gt-induced neurotoxicity and AMn treatment and discuss the potential of amantadine as a potential therapeutic agent.

摘要

谷氨酸(Gt)神经毒性导致广泛的神经疾病。谷氨酸转运体的丧失导致细胞内 Gt 积累。金刚烷胺(AMn)是一种非竞争性 N-甲基-D-天冬氨酸(NMDA)拮抗剂,可部分抑制 Gt 转运体并影响蛋白磷酸酶 2A 亚基 B(PP-2A-B)活性。在此,我们研究了 AMn 在生命早期给药以逆转谷氨酸诱导的大鼠模型大脑皮层变化的潜力。我们报告 AMn 可以逆转 Gt 诱导的大脑皮层结构变化并增加 PP-2A 活性。此外,AMn+Gt 处理组的 PP-2A-B 活性与对照组相当。此外,AMn 的给药导致 Gt 处理个体的细胞凋亡指数降低。我们认为,Gt 组观察到的严重组织病理学变化可能归因于 PP-2A 表达减少,导致磷酸酶和蛋白激酶活性之间失衡,并导致强烈的阳性 TUNEL 反应。我们提供了关于 PP-2A-B 在 Gt 诱导的神经毒性和 AMn 治疗中的作用的当前知识状态的简短总结,并讨论了金刚烷胺作为潜在治疗剂的潜力。

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