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On the potential role of glutamate transport in mental fatigue

机译:谷氨酸转运在精神疲劳中的潜在作用

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Mental fatigue, with decreased concentration capacity, is common in neuroinflammatory and neurodegenerative diseases, often appearing prior to other major mental or physical neurological symptoms. Mental fatigue also makes rehabilitation more difficult after a stroke, brain trauma, meningitis or encephalitis. As increased levels of proinflammatory cytokines are reported in these disorders, we wanted to explore whether or not proinflammatory cytokines could induce mental fatigue, and if so, by what mechanisms. It is well known that proinflammatory cytokines are increased in major depression, "sickness behavior" and sleep deprivation, which are all disorders associated with mental fatigue. Furthermore, an influence by specific proinflammatory cytokines, such as interleukin (IL)-1, on learning and memory capacities has been observed in several experimental systems. As glutamate signaling is crucial for information intake and processing within the brain, and due to the pivotal role for glutamate in brain metabolism, dynamic alterations in glutamate transmission could be of pathophysiological importance in mental fatigue. Based on this literature and observations from our own laboratory and others on the role of astroglial cells in the fine-tuning of glutamate neurotransmission we present the hypothesis that the proinflammatory cytokines tumor necrosis factor-α, IL-1β and IL-6 could be involved in the pathophysiology of mental fatigue through their ability to attenuate the astroglial clearance of extracellular glutamate, their disintegration of the blood brain barrier, and effects on astroglial metabolism and metabolic supply for the neurons, thereby attenuating glutamate transmission. To test whether our hypothesis is valid or not, brain imaging techniques should be applied with the ability to register, over time and with increasing cognitive loading, the extracellular concentrations of glutamate and potassium (K+) in humans suffering from mental fatigue. At present, this is not possible for technical reasons. Therefore, more knowledge of neuronal-glial signaling in in vitro systems and animal experiments is important. In summary, we provide a hypothetic explanation for a general neurobiological mechanism, at the cellular level, behind one of our most common symptoms during neuroinflammation and other long-term disorders of brain function. Understanding pathophysiological mechanisms of mental fatigue could result in better treatment.
机译:在神经炎症和神经退行性疾病中,精神疲劳具有集中能力降低的现象,常见于其他主要精神或身体神经系统症状之前。精神疲劳还会使中风,脑外伤,脑膜炎或脑炎后的康复更加困难。随着这些疾病中促炎细胞因子水平升高的报道,我们希望探讨促炎细胞因子是否可以引起精神疲劳,如果可以,则通过什么机制引起。众所周知,在严重抑郁,“疾病行为”和睡眠不足中,促炎细胞因子增加,这些都是与精神疲劳有关的疾病。此外,在一些实验系统中已经观察到特定促炎细胞因子(如白介素(IL)-1)对学习和记忆能力的影响。由于谷氨酸信号对于大脑内信息的摄取和处理至关重要,并且由于谷氨酸在脑代谢中的关键作用,因此谷氨酸传递的动态变化在精神疲劳中可能具有重要的病理生理意义。基于这些文献和我们自己实验室以及其他实验室对星形胶质细胞在谷氨酸神经传递微调中的作用的观察,我们提出了一种假设,即促炎细胞因子肿瘤坏死因子-α,IL-1β和IL-6可能参与其中。在精神疲劳的病理生理学中,它们具有减弱细胞外谷氨酸的星形胶质清除能力,分解血脑屏障的能力,以及对星形胶质代谢和神经元代谢供应的影响,从而减弱了谷氨酸的传递。为了检验我们的假设是否有效,应该应用脑成像技术,以随着时间的推移并随着认知负荷的增加而记录患有精神疲劳的人的细胞外谷氨酸和钾(K +)浓度。目前,由于技术原因,这是不可能的。因此,在体外系统和动物实验中对神经胶质信号传导的更多了解非常重要。总而言之,我们在细胞水平上,在神经炎症和其他长期脑功能紊乱期间最常见的症状之一之后,提供了一种一般的神经生物学机制的假说解释。了解精神疲劳的病理生理机制可能会导致更好的治疗。

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