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Massive gliosis induced by interleukin-6 suppresses Aβ deposition in vivo: evidence against inflammation as a driving force for amyloid deposition

机译:白细胞介素6诱导的大规模神经胶质增生抑制体内Aβ沉积:证据表明炎症是淀粉样蛋白沉积的驱动力

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摘要

Proinflammatory stimuli, after amyloid β (Aβ) deposition, have been hypothesized to create a self-reinforcing positive feedback loop that increases amyloidogenic processing of the Aβ precursor protein (APP), promoting further Aβ accumulation and neuroinflammation in Alzheimer’s disease (AD). Interleukin-6 (IL-6), a proinflammatory cytokine, has been shown to be increased in AD patients implying a pathological interaction. To assess the effects of IL-6 on Aβ deposition and APP processing in vivo, we overexpressed murine IL-6 (mIL-6) in the brains of APP transgenic TgCRND8 and TG2576 mice. mIL-6 expression resulted in extensive gliosis and concurrently attenuated Aβ deposition in TgCRND8 mouse brains. This was accompanied by up-regulation of glial phagocytic markers in vivo and resulted in enhanced microglia-mediated phagocytosis of Aβ aggregates in vitro. Further, mIL-6-induced neuroinflammation had no effect on APP processing in TgCRND8 and had no effect on APP processing or steady-state levels of Aβ in young Tg2576 mice. These results indicate that mIL-6-mediated reactive gliosis may be beneficial early in the disease process by potentially enhancing Aβ plaque clearance rather than mediating a neurotoxic feedback loop that exacerbates amyloid pathology. This is the first study that methodically dissects the contribution of mIL-6 with regard to its potential role in modulating Aβ deposition in vivo.—Chakrabarty, P., Jansen-West, K., Beccard, A., Ceballos-Diaz, C., Levites, Y., Verbeeck, C., Zubair, A. C., Dickson, D., Golde, T. E., Das, P. Massive gliosis induced by interleukin-6 suppresses Aβ deposition in vivo: evidence against inflammation as a driving force for amyloid deposition.
机译:据推测,淀粉样蛋白β(Aβ)沉积后的促炎性刺激会形成自我增强的正反馈回路,该回路会增加Aβ前体蛋白(APP)的淀粉样蛋白生成过程,从而促进阿尔茨海默氏病(AD)中进一步的Aβ积累和神经炎症。已经证明白细胞介素6(IL-6)是一种促炎性细胞因子,在AD患者中增加,这暗示着病理相互作用。为了评估IL-6对体内Aβ沉积和APP加工的影响,我们在APP转基因TgCRND8和TG2576小鼠的大脑中过表达了鼠IL-6(mIL-6)。在TgCRND8小鼠大脑中,mIL-6表达导致广泛的神经胶质增生,并同时减弱Aβ沉积。这伴随着体内胶质细胞吞噬标记的上调,并导致小胶质细胞介导的Aβ聚集体的体外吞噬作用增强。此外,mIL-6诱导的神经炎症对TgCRND8中的APP处理没有影响,并且对年轻Tg2576小鼠的APP处理或Aβ稳态水平也没有影响。这些结果表明,mIL-6介导的反应性神经胶质增生可能通过增强Aβ斑块清除而不是介导加剧淀粉样蛋白病理的神经毒性反馈回路,在疾病过程的早期是有益的。这是第一个有系统地剖析mIL-6在调节体内Aβ沉积方面的潜在作用的研究。-Chakrabarty,P.,Jansen-West,K.,Beccard,A.,Ceballos-Diaz,C 。,Levites,Y.,Verbeeck,C.,Zubair,AC,Dickson,D.,Golde,TE,Das,P.白介素6诱导的大规模神经胶质细胞沉着抑制了体内Aβ的沉积:抗炎的证据是炎症的驱动力淀粉样蛋白沉积。

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