4.6 Article

Interleukin-1β Drives Cellular Senescence of Rat Astrocytes Induced by Oligomerized Amyloid β Peptide and Oxidative Stress

期刊

FRONTIERS IN NEUROLOGY
卷 11, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fneur.2020.00929

关键词

Alzheimer's disease; neuroinflammation; interleukin-1 beta; senescence; astrocyte; tau; amyloid beta

资金

  1. National Natural Science Foundation [81870821, 81471215, 81271211, 31771521]
  2. Beijing Youth Talent Team Support Program [2018000021223TD08]
  3. Science and Technology Projects of Jiangsu Province [BE2016718]
  4. Six Talent Peak Project from Government of Jiangsu Province [2016-SWYY-011]
  5. Top Talent of Innovative Research Team of Jiangsu Province
  6. Start-up Scientific Research Fund for the Returned Oversea Scholars from Chinese Ministry of Education

向作者/读者索取更多资源

Background:Alzheimer's disease (AD) is the leading cause of dementia. With no reliable treatment that delays or reverses the progress of AD, effective medical drugs, and interventions for AD treatment are in urgent need. Clinical success for patients thus relies on gaining a clearer understanding of AD pathogenesis to feed the development of novel and potent therapy strategies. It is well-established that inflammatory processes are involved in the pathology of AD, and recent studies implicated senescence of glial cells as an important player in the progression of AD. Methods:We did a preliminary screen in rat astrocytes for the five most abundant inflammatory factors in neuroinflammation, namely IL-1 beta, IL-6, IL-8, TGF-beta 1, and TNF-alpha, and found that IL-1 beta could efficiently induce cellular senescence. After that, SA-beta-gal staining, immunofluorescence, ELISA, qRT-PCR, and immunoblotting were used to explore the underlying mechanism through which IL-1 beta mediates cellular senescence of rat astrocytes. Results:IL-1 beta-induced cellular senescence of rat astrocytes was accompanied by increased total and phosphorylated tau. Further experiments showed that both oligomerized amyloid beta (A beta) and H2O2 treatment can induce cellular senescence in rat astrocytes and increase the production and secretion of IL-1 beta from these cells. Subsequent mechanistic study revealed that activation of NLRP3 mediates A beta and H2O2-induced maturation and secretion of IL-1 beta. Conclusion:Our results suggest that IL-1 beta mediates senescence in rat astrocytes induced by several common adverse stimuli in AD, implicating IL-1 beta and NLRP3 as valuable diagnostic biomarkers and therapeutic targets for AD.

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