首页> 外文期刊>Neuroimmunomodulation >Deletion of the Inflammasome Sensor Aim2 Mitigates A beta Deposition and Microglial Activation but Increases Inflammatory Cytokine Expression in an Alzheimer Disease Mouse Model
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Deletion of the Inflammasome Sensor Aim2 Mitigates A beta Deposition and Microglial Activation but Increases Inflammatory Cytokine Expression in an Alzheimer Disease Mouse Model

机译:炎症体传感器AIM2减轻了β沉积和微胶质激活,但增加了阿尔茨海默病小鼠模型中的炎症细胞因子表达

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Objective: Inflammation is clearly associated with Alzheimer disease (AD). Knockout of Nlrp3, a gene encoding an inflammasome sensor, has been shown to ameliorate AD pathology in a mouse model. Because AIM2 is the most dominant inflammasome sensor expressed in mouse brains, here we investigate whether Aim2 deletion also influences the phenotype of a 5XFAD AD mouse model. Methods: Quantitative RT-PCR, immunostaining, immunoblotting, and behavioral analyses were applied to compare wild-type, Aim2-/-, 5XFAD, and Aim2-/-; 5XFAD mice. Results: We found that Aim2 knockout mitigates A beta deposition in the cerebral cortex and hippocampus of 5XFAD mice. The activation of microglial cells is also reduced in Aim2-/-; 5XFAD brains compared with 5XFAD brains. However, Aim2 knockout does not improve memory and anxiety phenotypes of 5XFAD mice in an open field, cued Y-maze, or Barnes maze. Compared with 5XFAD mice, II-1 expression levels are not reduced in Aim2-/-; 5XFAD mice. Unexpectedly, II-6 and II-18 expression levels in 5XFAD brains were further increased when Aim2 was deleted. Thus, inflammatory cytokine expression in 5XFAD brains is upregulated by Aim2 deletion through an unknown mechanism. Conclusion: Although Aim2 knockout mitigates A beta deposition and microglial activation, Aim2 deletion does not have a beneficial effect on the spatial memory or cytokine expression of 5XFAD mice. Our findings suggest that A beta aggregation and microglial activation may not always be correlated with the expression of inflammatory cytokines or cognitive function of 5XFAD mice. Our study also implies that different inflammasomes likely perform distinct roles in different physiological and/or pathological events. (C) 2017 S. Karger AG, Basel
机译:目的:炎症明显与阿尔茨海默病(AD)有关。已经显示出在小鼠模型中的可改善AD病理学,NLRP3的NLRP3的敲除。由于AIM2是鼠标大脑中最多的炎症性传感器,因此我们研究了AIM2缺失是否也影响了5xFAD AD小鼠模型的表型。方法:采用定量RT-PCR,免疫抑制,免疫印迹和行为分析来比较野生型,AIM2 - / - / - ,5xFAD和AIM2 - / - ; 5xFAD小鼠。结果:我们发现Aim2敲除减轻了5xFAD小鼠的脑皮质和海马中的β沉积。 Aim2 - / - 的显微胶质细胞的激活也降低; 5xFAD大脑与5xFAD大脑相比。然而,AIM2淘汰局不会改善开放场中5xFAD小鼠的记忆和焦虑表型,提高Y-MAZE,或Barnes迷宫。与5xFAD小鼠相比,AIM2 - / - 的II-1表达水平不会降低。 5xFAD小鼠。当缺失Aim2时,在5xFAD大脑中出乎意料地,II-6和II-18表达水平进一步增加。因此,通过未知机制通过AIM2缺失来上调5xFAD大脑中的炎症细胞因子表达。结论:虽然AIM2敲除减轻了β沉积和微胶质激活,但AIM2缺失对5xFAD小鼠的空间记忆或细胞因子表达没有有益的影响。我们的研究结果表明,β聚集和小胶质激活可能并不总是与5xFAD小鼠的炎性细胞因子或认知功能的表达相关。我们的研究还意味着不同的炎性炎症可能在不同的生理和/或病理事件中进行不同的作用。 (c)2017年S. Karger AG,巴塞尔

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