首页> 美国卫生研究院文献>The Journal of Neuroscience >TRPM2 Channel Aggravates CNS Inflammation and Cognitive Impairment via Activation of Microglia in Chronic Cerebral Hypoperfusion
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TRPM2 Channel Aggravates CNS Inflammation and Cognitive Impairment via Activation of Microglia in Chronic Cerebral Hypoperfusion

机译:TRPM2通道通过激活慢性脑灌注不足中的小胶质细胞而加剧中枢神经系统炎症和认知障碍。

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摘要

Chronic cerebral hypoperfusion is a characteristic seen in widespread CNS diseases, including neurodegenerative and mental disorders, and is commonly accompanied by cognitive impairment. Recently, several studies demonstrated that chronic cerebral hypoperfusion can induce the excessive inflammatory responses that precede neuronal dysfunction; however, the precise mechanism of cognitive impairment due to chronic cerebral hypoperfusion remains unknown. Transient receptor potential melastatin 2 (TRPM2) is a Ca2+-permeable channel that is abundantly expressed in immune cells and is involved in aggravation of inflammatory responses. Therefore, we investigated the pathophysiological role of TRPM2 in a mouse chronic cerebral hypoperfusion model with bilateral common carotid artery stenosis (BCAS). When male mice were subjected to BCAS, cognitive dysfunction and white matter injury at day 28 were significantly improved in TRPM2 knock-out (TRPM2-KO) mice compared with wild-type (WT) mice, whereas hippocampal damage was not observed. There were no differences in blood–brain barrier breakdown and H2O2 production between the two genotypes at 14 and 28 d after BCAS. Cytokine production was significantly suppressed in BCAS-operated TRPM2-KO mice compared with WT mice at day 28. In addition, the number of Iba1-positive cells gradually decreased from day 14. Moreover, daily treatment with minocycline significantly improved cognitive perturbation. Surgical techniques using bone marrow chimeric mice revealed that activated Iba1-positive cells in white matter could be brain-resident microglia, not peripheral macrophages. Together, these findings suggest that microglia contribute to the aggravation of cognitive impairment by chronic cerebral hypoperfusion, and that TRPM2 may be a potential target for chronic cerebral hypoperfusion-related disorders.>SIGNIFICANCE STATEMENT Chronic cerebral hypoperfusion is manifested in a wide variety of CNS diseases, including neurodegenerative and mental disorders that are accompanied by cognitive impairment; however, the underlying mechanisms require clarification. Here, we used a chronic cerebral hypoperfusion mouse model to investigate whether TRPM2, a Ca2+-permeable cation channel highly expressed in immune cells, plays a destructive role in the development of chronic cerebral hypoperfusion-induced cognitive impairment, and propose a new hypothesis in which TRPM2-mediated activation of microglia, not macrophages, specifically contributes to the pathology through the aggravation of inflammatory responses. These findings shed light on the understanding of the mechanisms of chronic cerebral hypoperfusion-related inflammation, and are expected to provide a novel therapeutic molecule for cognitive impairment in CNS diseases.
机译:慢性脑灌注不足是在广泛的中枢神经系统疾病(包括神经退行性疾病和精神障碍)中看到的特征,并且通常伴有认知障碍。最近,一些研究表明,慢性脑灌注不足会诱发神经元功能异常之前的过度炎症反应。然而,由于慢性脑灌注不足引起的认知障碍的确切机制仍然未知。瞬时受体电位褪黑素2(TRPM2)是Ca 2 + 渗透通道,在免疫细胞中大量表达,并参与炎症反应的加剧。因此,我们调查了TRPM2在具有双侧颈总动脉狭窄(BCAS)的小鼠慢性脑灌注不足模型中的病理生理作用。当雄性小鼠遭受BCAS时,与野生型(WT)小鼠相比,TRPM2基因敲除(TRPM2-KO)小鼠在第28天的认知功能障碍和白质损伤显着改善,而未观察到海马体损伤。 BCAS后14和28天,两种基因型之间的血脑屏障破坏和过氧化氢生成没有差异。与第28天的WT小鼠相比,在BCAS操作的TRPM2-KO小鼠中细胞因子的产生被显着抑制。此外,从第14天开始,Iba1阳性细胞的数量逐渐减少。此外,每天用美满霉素治疗可显着改善认知障碍。使用骨髓嵌合体小鼠的外科手术技术揭示,白质中活化的Iba1阳性细胞可能是脑部驻留的小胶质细胞,而不是外周巨噬细胞。在一起,这些发现表明小胶质细胞有助于慢性脑灌注不足加重认知障碍,TRPM2可能是慢性脑灌注不足相关疾病的潜在靶标。>意义声明多种中枢神经系统疾病,包括伴随认知障碍的神经退行性和精神疾病;但是,底层机制需要澄清。在这里,我们使用慢性脑灌注不足小鼠模型研究TRPM2(一种在免疫细胞中高度表达的Ca 2 + 渗透性阳离子通道)是否在慢性脑灌注不足诱导的认知发育中起破坏作用损害,并提出一个新的假设,其中TRPM2介导的小胶质细胞而不是巨噬细胞的激活通过加剧炎症反应而特别有助于病理。这些发现揭示了对慢性脑灌注不足相关炎症机制的理解,并有望为中枢神经系统疾病的认知障碍提供一种新型治疗分子。

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