LPS Triggers Acute Neuroinflammation and Parkinsonism Involving NLRP3 Inflammasome Pathway and Mitochondrial CI Dysfunction in the Rat

神经炎症 黑质 神经退行性变 多巴胺能 小胶质细胞 帕金森病 纹状体 黑质纹状体通路 帕金森病 内科学 医学 内分泌学 神经科学 生物 多巴胺 炎症 疾病
作者
Irais E. Valenzuela-Arzeta,Luis O Soto-Rojas,Yazmin M. Flores-Martinez,Karen M. Delgado-Minjares,Bismark Gatica-Garcia,Juan U. Mascotte-Cruz,Porfirio Nava,Omar Emiliano Aparicio-Trejo,David Reyes-Corona,Irma A. Martínez-Dávila,M. E. Gutierrez-Castillo,Armando J. Espadas-Alvarez,Carlos E. Orozco-Barrios,Daniel Martinez-Fong
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:24 (5): 4628-4628
标识
DOI:10.3390/ijms24054628
摘要

Whether neuroinflammation leads to dopaminergic nigrostriatal system neurodegeneration is controversial. We addressed this issue by inducing acute neuroinflammation in the substantia nigra (SN) with a single local administration (5 µg/2 µL saline solution) of lipopolysaccharide (LPS). Neuroinflammatory variables were assessed from 48 h to 30 days after the injury by immunostaining for activated microglia (Iba-1 +), neurotoxic A1 astrocytes (C3 + and GFAP +), and active caspase-1. We also evaluated NLRP3 activation and Il-1β levels by western blot and mitochondrial complex I (CI) activity. Fever and sickness behavior was assessed for 24 h, and motor behavior deficits were followed up until day 30. On this day, we evaluated the cellular senescence marker β-galactosidase (β-Gal) in the SN and tyrosine hydroxylase (TH) in the SN and striatum. After LPS injection, Iba-1 (+), C3 (+), and S100A10 (+) cells were maximally present at 48 h and reached basal levels on day 30. NLRP3 activation occurred at 24 h and was followed by a rise of active caspase-1 (+), Il-1β, and decreased mitochondrial CI activity until 48 h. A significant loss of nigral TH (+) cells and striatal terminals was associated with motor deficits on day 30. The remaining TH (+) cells were β-Gal (+), suggesting senescent dopaminergic neurons. All the histopathological changes also appeared on the contralateral side. Our results show that unilaterally LPS-induced neuroinflammation can cause bilateral neurodegeneration of the nigrostriatal dopaminergic system and are relevant for understanding Parkinson’s disease (PD) neuropathology.
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