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EAAT2 as a Research Target in Bipolar Disorder and Unipolar Depression: A Systematic Review

机译:在双相情感障碍和EAAT2作为研究目标单相抑郁症:系统回顾

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摘要

Glutamate is implicated in the neuropathology of both major depressive disorder and bipolar disorder. Excitatory amino acid transporter 2 (EAAT2) is the major glutamate transporter in the mammalian brain, removing glutamate from the synaptic cleft and transporting it into glia for recycling. It is thereby the principal regulator of extracellular glutamate levels and prevents neuronal excitotoxicity. EAAT2 is a promising target for elucidating the mechanisms by which the glutamate-glutamine cycle interacts with neuronal systems in mood disorders. Forty EAAT2 studies (published January 1992-January 2018) were identified via a systematic literature search. The studies demonstrated that chronic stress/steroids were most commonly associated with decreased EAAT2. In rodents, EAAT2 inhibition worsened depressive behaviors. Human EAAT2 expression usually decreased in depression, with some regional brain differences. Fewer data have been collected regarding the roles and regulation of EAAT2 in bipolar disorder. Future directions for research include correlating EAAT2 and glutamate levels in vivo, elucidating genetic variability and epigenetic regulation, clarifying intracellular protein and pharmacologic interactions, and examining EAAT2 in different bipolar mood states. As part of a macromolecular complex within glia, EAAT2 may contribute significantly to intracellular signaling, energy regulation, and cellular homeostasis. An enhanced understanding of this system is needed.
机译:谷氨酸的神经病理学有牵连重度抑郁症和躁郁症障碍。(EAAT2)是主要的谷氨酸转运体哺乳动物的大脑,消除的谷氨酸突触间隙和运输成神经胶质回收利用。细胞外谷氨酸水平和防止神经会引起。阐明目标的机制glutamate-glutamine周期与神经系统在情绪障碍。发表的研究(1992年1月- 2018年1月)被确定通过系统的文献搜索。压力/类固醇是最常见的与降低EAAT2。抑制抑郁行为恶化。EAAT2表达式通常减少抑郁,一些大脑区域差异。已经收集了关于角色和监管EAAT2在双相情感障碍。研究方向包括关联EAAT2和体内谷氨酸水平,阐明基因可变性和表观遗传调控,澄清细胞内蛋白质和药物交互,并检查EAAT2不同双相情绪状态。复杂的神经胶细胞内,EAAT2可能的贡献胞内信号明显,能源规定,和细胞内稳态。这个系统的理解是必要的。

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