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咖啡因通过调节神经递质诱导神经行为效应。

Caffeine induces neurobehavioral effects through modulating neurotransmitters.

作者信息

Alasmari Fawaz

机构信息

Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Saudi Pharm J. 2020 Apr;28(4):445-451. doi: 10.1016/j.jsps.2020.02.005. Epub 2020 Feb 17.

Abstract

Evidence demonstrates that chronic caffeine exposure, primarily through consumption of coffee or tea, leads to increased alertness and anxiety. Preclinical and clinical studies showed that caffeine induced beneficial effects on mood and cognition. Other studies using molecular techniques have reported that caffeine exhibited neuroprotective effects in animal models by protecting dopaminergic neurons. Moreover, caffeine interacts with dopaminergic system, which leads to improvements in neurobehavioral measures in animal models of depression or attention deficit hyperactivity disorder (ADHD). Glutamatergic receptors have been found to be involved on the neurobiological effects of caffeine. Additionally, caffeine has been found to suppress the inhibitory (GABAergic) activity and modulate GABA receptors. Studies have also found that modulating these neurotransmitters leads to neurobehavioral effects. The linkage between the modulatory role of caffeine on neurotransmitters and neurobehavioral effects has not been fully discussed. The purpose of this review is to discuss in detail the role of neurotransmitters in the effects of caffeine on neurobehavioral disorders.

摘要

有证据表明,长期接触咖啡因,主要是通过饮用咖啡或茶,会导致警觉性提高和焦虑增加。临床前和临床研究表明,咖啡因对情绪和认知有有益影响。其他使用分子技术的研究报告称,咖啡因通过保护多巴胺能神经元在动物模型中表现出神经保护作用。此外,咖啡因与多巴胺能系统相互作用,这导致在抑郁症或注意力缺陷多动障碍(ADHD)动物模型中的神经行为指标得到改善。已发现谷氨酸能受体参与咖啡因的神经生物学效应。此外,还发现咖啡因可抑制抑制性(γ-氨基丁酸能)活性并调节γ-氨基丁酸受体。研究还发现,调节这些神经递质会产生神经行为效应。咖啡因对神经递质的调节作用与神经行为效应之间的联系尚未得到充分讨论。本综述的目的是详细讨论神经递质在咖啡因对神经行为障碍影响中的作用。

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