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Published on: August 15, 2012
Paraquat induced neuro-immunotoxicity: Dysregulated microglial antigen processing and mitochondrial activated
Ge Shi1, Kaidong Wang1, Qi Liu1
1School of Public Health, Ningxia Medical University, Yinchuan City, Ningxia Hui Autonomous Region, China; Key Laboratory of Environmental Factors and Chronic Disease Control, No.1160, The Street of Shengli, Xingqing District, Yinchuan, Ningxia Hui Autonomous Region, China.
Abstract:
Paraquat (PQ) is characterized by neurotoxicity. In daily life, PQ exposure mainly occurs through chronic and trace pathways, which induce progressive neuronal damage or neuronal synaptic loss. Previously, mitochondrial dysfunction was a critical underlying mechanism. Emerging evidence suggests that neuroinflammation mediated by microglial activation and T-cell infiltration may trigger accelerated neuronal degeneration. While antigen presentation constitutes an essential prerequisite for T-cell infiltration and functional activation, the potential association between mitochondrial impairment and microglial antigen presentation dysregulation remains unexplored. In this study, we initially identified paraquat-associated target gene clusters from the CTD database. Following the enrichment analyses of GO and KEGG revealed Parkinson's disease pathways and mitochondrial processes. Further, we constructed a time-dependent model for C57BL/6J (♂) mice continuously treated with PQ (1.25 mg/kg) once/day to imitate early-stage neurotoxicity. For mice, neurobehavioral symptoms showed a decrease in learning and memory abilities. Pathologically, the neuroinflammatory response dominated by microglial activation and T-cell infiltration preceded observable synaptic loss. This correlated with microglial two distinct processes: 1) upregulated surface chemokine expression (CCL2, CCL3, CCL4, CCL5), and 2) enhanced antigen recognition, phagocytosis, and presentation machinery (TLR4, LAMP2, MHC II), facilitating CD4+/CD8+ T-cell recruitment. Notably, α-synuclein aggregates may act as antigens triggering microglial mitochondrial stress responses, as evidenced by altered expression of mitochondrial proteases (LONP1, CLPP, HTRA2). Remarkably, resveratrol effectively restored BV-2 microglial mitochondrial homeostasis and normalized antigen presentation. This study demonstrated that microglial mitochondrial dysregulation mediates aberrant antigen presentation, thereby driving neuroinflammatory cascades. And provides novel and potential mechanistic insights into chemical neurotoxicity.
Insights
Paraquat exposure causes neurotoxicity by impairing microglial mitochondria, leading to aberrant antigen presentation and neuroinflammation. Resveratrol treatment restored mitochondrial function and antigen presentation, offering potential therapeutic insights.
Area of Science:
- Neuroscience
- Toxicology
- Immunology
Background:
- Paraquat (PQ) exposure is linked to neurotoxicity, with mitochondrial dysfunction as a known mechanism.
- Emerging evidence implicates neuroinflammation, microglial activation, and T-cell infiltration in PQ-induced neuronal damage.
- The interplay between mitochondrial impairment and microglial antigen presentation in PQ neurotoxicity is unexplored.
Purpose of the Study:
- To investigate the role of microglial mitochondrial dysfunction in paraquat-induced neuroinflammation and antigen presentation.
- To explore the potential of resveratrol as a therapeutic agent for PQ-induced neurotoxicity.
Main Methods:
- Identification of PQ-associated genes and pathway enrichment analysis (GO, KEGG).
- Establishment of a time-dependent mouse model of PQ neurotoxicity.
- Assessment of neurobehavioral changes, neuroinflammation markers, microglial activation, T-cell infiltration, and mitochondrial function.
Main Results:
- PQ exposure impaired learning and memory in mice, preceding synaptic loss.
- PQ induced microglial activation, increased chemokine expression, and enhanced antigen presentation machinery, facilitating T-cell recruitment.
- Alpha-synuclein aggregates were identified as potential antigens triggering microglial mitochondrial stress.
- Resveratrol treatment ameliorated PQ-induced mitochondrial dysfunction and normalized antigen presentation in microglia.
Conclusions:
- Microglial mitochondrial dysregulation is a key mediator of aberrant antigen presentation in paraquat neurotoxicity.
- This process drives neuroinflammatory cascades, contributing to neuronal degeneration.
- The findings provide novel mechanistic insights into chemical neurotoxicity and suggest resveratrol as a potential therapeutic strategy.
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