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P2X7 嘌呤能受体参与躁狂症的病理生理学:一项临床前研究。

P2X7 Purinergic Receptor Is Involved in the Pathophysiology of Mania: a Preclinical Study.

机构信息

Programa de Pós-Graduação em Ciências Biológicas: Bioquímica, Departamento de Bioquímica, Instituto de Ciências Básicas da Saúde, Universidade Federal do Rio Grande do Sul, Ramiro Barcelos, 2600-anexo, Porto Alegre, RS, 90035-003, Brazil.

Florey Institute of Neuroscience and Mental Health, University of Melbourne, Melbourne, VIC, 3010, Australia.

出版信息

Mol Neurobiol. 2020 Mar;57(3):1347-1360. doi: 10.1007/s12035-019-01817-0. Epub 2019 Nov 15.

Abstract

The pathophysiology of bipolar disorder remains incompletely elucidated. The purinergic receptor, P2X7 (P2X7R), plays a central role in neuroinflammation, the establishment, and maintenance of microglial activation and neuronal damage/death, all characteristics of bipolar disorder pathology. The present study aims to explore the participation of the P2X7R in a preclinical pharmacological model of mania. We analyzed the modulatory effects of the P2X7R antagonist, brilliant blue, on behavior, monoamines, gene expression, serum purine levels, and cell typing in a pharmacological model of mania induced by D-amphetamine (AMPH) in mice. Our results corroborate an association between the P2X7 receptor and the preclinical animal model of mania, as demonstrated by the decreased responsiveness to AMPH in animals with pharmacologically blocked P2X7R. This study further suggests a possible dopaminergic mechanism for the action of P2X7 receptor antagonism. Additionally, we observed increased peripheral levels of adenosine, a neuroprotective molecule, and increased central expression of Entpd3 and Entpd1 leading to the hydrolysis of ATP, a danger signal, possibly as an attempt to compensate for the damage induced by AMPH. Lastly, P2X7R antagonism in the AMPH model was found to potentially modulate astrogliosis. Our results support the hypothesis that P2X7R plays a vital role in the pathophysiology of mania, possibly by modulating the dopaminergic pathway and astrogliosis, as reflected in the behavioral changes observed. Taken together, this study suggests that a purinergic system imbalance is associated with the AMPH-induced preclinical animal model of mania. P2X7R may represent a promising molecular therapeutic target for bipolar disorder.

摘要

双相情感障碍的病理生理学仍不完全清楚。嘌呤能受体 P2X7(P2X7R)在神经炎症、小胶质细胞激活和神经元损伤/死亡的建立和维持中发挥核心作用,这些都是双相情感障碍病理学的特征。本研究旨在探讨 P2X7R 在双相情感障碍的临床前药理学模型中的参与作用。我们分析了嘌呤能受体 P2X7 拮抗剂亮蓝(Brilliant Blue)对 D-安非他命(AMPH)诱导的小鼠躁狂症药理学模型中行为、单胺类物质、基因表达、血清嘌呤水平和细胞分型的调节作用。我们的结果证实了 P2X7 受体与躁狂症的临床前动物模型之间存在关联,这是通过药理学阻断 P2X7R 后动物对 AMPH 的反应性降低来证明的。这项研究进一步表明 P2X7 受体拮抗作用的作用可能存在多巴胺能机制。此外,我们观察到外周腺苷水平升高,这是一种神经保护分子,以及中央 Entpd3 和 Entpd1 表达增加,导致 ATP 水解,这是一种危险信号,可能是为了补偿 AMPH 引起的损伤。最后,在 AMPH 模型中发现 P2X7R 拮抗作用可能潜在地调节星形胶质细胞增生。我们的结果支持 P2X7R 在躁狂症病理生理学中发挥重要作用的假设,可能通过调节多巴胺能途径和星形胶质细胞增生,如观察到的行为变化所反映的那样。总之,这项研究表明,嘌呤能系统失衡与 AMPH 诱导的躁狂症临床前动物模型有关。P2X7R 可能成为双相情感障碍有希望的分子治疗靶点。

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