星形胶质细胞调控脑卒中后抑郁中谷氨酸稳态的神经药理学研究。

IF 5.3 2区 医学 Q1 NEUROSCIENCES
Na Zhang, Kaijun Han, Lixinbei Sheng, Fang Wang, Manlan He, Mengqian Wu, Zhen Han, Yichen Li, Lu Chen
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引用次数: 0

摘要

中风患者通常会出现多种功能障碍,包括吞咽、言语、认知和运动技能方面的困难,这可能导致情绪困扰和认知缺陷等症状。大约三分之一的中风后患者可能会出现中风后抑郁(PSD),这严重阻碍了康复,并增加了家庭和医疗保健系统的负担。本文综述了PSD的潜在机制,强调了谷氨酸能假说。作为主要的兴奋性神经递质,谷氨酸在神经信号传导中起着核心作用。而谷氨酸过度积累可引起神经元损伤,是PSD发生的重要机制。星形胶质细胞通过清除过量的谷氨酸并调节其合成和运输,从而防止兴奋性毒性,对维持谷氨酸稳态至关重要。中风后,星形细胞功能障碍(以过度激活和炎症反应为特征)可加重神经元损伤,并进一步导致抑郁症状的出现。本文还强调了针对谷氨酸能系统的潜在治疗方法,如NMDA受体拮抗剂,AMPA受体拮抗剂,谷氨酸转运体调节剂,以及其他类型(例如,中药,草药和作用于神经元的靶向途径)。这些策略为治疗ptsd提供了有希望的途径。未来的研究应深入探究星形胶质细胞调节谷氨酸稳态的分子机制,为卒中后抑郁的精准治疗提供坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuropharmacological Insights into Glutamate Homeostasis in Post-stroke Depression Regulated by Astrocytes.

Stroke patients often experience multiple functional impairments, including difficulties with swallowing, speech, cognition, and motor skills, which can lead to symptoms such as emotional distress and cognitive deficits. Approximately one-third of post-stroke patients may develop poststroke depression (PSD), significantly hindering recovery and increasing the burden on families and healthcare systems. This review focuses on the underlying mechanisms of PSD, emphasizing the glutamatergic hypothesis. As the primary excitatory neurotransmitter, glutamate plays a central role in neural-signaling. However, excessive glutamate accumulation can cause neuronal damage, making it a key mechanism in the development of PSD. Astrocytes are crucial for maintaining glutamate homeostasis by clearing excess glutamate and regulating its synthesis and transport, thereby preventing excitotoxicity. Following a stroke, astrocytic dysfunction-characterized by overactivation and inflammatory responses-can exacerbate neuronal injury and further contribute to the emergence of depressive symptoms. This article also highlights potential therapeutic approaches targeting the glutamatergic system, such as NMDA receptor antagonists, AMPA receptor antagonists, and modulators of glutamate transporters, as well as other types (e.g., Chinese medicine, herbal medicine, and targeted pathways acting on neurons). These strategies offer promising avenues for PSD treatment. Future studies should delve deeper into the molecular mechanisms by which astrocytes regulate glutamate homeostasis, providing a robust foundation for the precision treatment of post-stroke depression.

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来源期刊
Current Neuropharmacology
Current Neuropharmacology 医学-神经科学
CiteScore
8.70
自引率
1.90%
发文量
369
审稿时长
>12 weeks
期刊介绍: Current Neuropharmacology aims to provide current, comprehensive/mini reviews and guest edited issues of all areas of neuropharmacology and related matters of neuroscience. The reviews cover the fields of molecular, cellular, and systems/behavioural aspects of neuropharmacology and neuroscience. The journal serves as a comprehensive, multidisciplinary expert forum for neuropharmacologists and neuroscientists.
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