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Interleukin33 deficiency causes tau abnormality and neurodegeneration withAlzheimer-like symptoms in aged mice

机译:白细胞介素33缺乏会引起tau异常和神经变性老年小鼠的阿尔茨海默氏样症状

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摘要

Late-onset Alzheimer’s disease (AD) remains a medical mystery. Recent studies have linked it to impaired repair of aged neurons. Potential involvement of interleukin33 (IL33) in AD has been reported. Here we show that IL33, which was expressed by up to 75% astrocytes in the aged brains, was critical for repair of aged neurons. Mice lacking Il33 gene (Il33−/−) developed AD-like disease after 60–80 weeks, which was characterized by tau abnormality and a heavy loss of neuronseurites in the cerebral cortex and hippocampus accompanied with cognition/memory impairment. We detected an abrupt aging surge in the cortical and hippocampal neurons at middle age (40 weeks). To counter the aging surge, wild-type mice rapidly upregulated repair of DNA double-strand breaks (DSBs) and autophagic clearance of cellular wastes in these neurons. Il33−/− mice failed to do so, but instead went on to develop rapid accumulation of abnormal tau, massive DSBs and abnormal autophagic vacuoles in these neurons. Thus, uncontrolled neuronal aging surge at middle age due to lack of IL33 resulted in neurodegeneration and late-onset AD-like symptome in Il33−/− mice. Ourstudy also suggests that the aging surge is a time to search for biomarkers for earlydiagnosis of AD before massive neuron loss.
机译:晚期阿尔茨海默氏病(AD)仍然是医学之谜。最近的研究将其与衰老的神经元修复受损联系在一起。已经报道了白介素33(IL33)可能参与AD。在这里,我们显示了由老年大脑中高达75%的星形胶质细胞表达的IL33对于修复老年神经元至关重要。缺少Il33基因(Il33 -/-)的小鼠在60-80周后发展为AD样疾病,其特征是tau异常,大脑皮层和海马神经元/神经突大量丢失,并伴有认知/记忆障碍。我们在中年(40周)发现皮质和海马神经元突然老化。为了应对衰老,野生型小鼠迅速上调了DNA双链断裂(DSB)的修复和这些神经元中细胞废物的自噬清除。 Il33 -/-小鼠未能做到这一点,而是继续在这些神经元中迅速积累了异常tau,大量DSB和异常自噬泡。因此,由于缺乏IL33而导致的中年人神经元衰老激增导致了Il33 -/-小鼠的神经变性和迟发性AD样症状。我们的研究还表明,老化浪潮是寻找早期生物标志物的时候大量神经元丢失之前的AD诊断。

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