Activated microglia contribute to paraquat neurotoxicity through neuroinflammation and regulation of phenotypic polarization of astrocytes
- Ecotoxicol Environ Saf. 2026 May:316:120120. doi: 10.1016/j.ecoenv.2026.120120.
- 1. Department of Toxicology, Public Health School, Harbin Medical University, No 157, Baojian Road, Nangang District, Harbin City, Heilongjiang Province 150081, China.
- 2. Department of Toxicology, Public Health School, Harbin Medical University, No 157, Baojian Road, Nangang District, Harbin City, Heilongjiang Province 150081, China. Electronic address: [email protected].
- 3. Department of Toxicology, Public Health School, Harbin Medical University, No 157, Baojian Road, Nangang District, Harbin City, Heilongjiang Province 150081, China. Electronic address: [email protected].
Paraquat (PQ), a widely used bipyridyl Herbicide, exerts neurotoxic effects on dopaminergic neurons and can lead to Parkinson's Disease (PD)-like syndrome. Although immune dysfunction has been implicated in PD progression, the role of neuroimmune interactions in PQ-induced neurotoxicity remains poorly understood. This study aimed to investigate the mechanism by which microglia, the innate immune cells of the central nervous system, regulate the neurotoxic effects of PQ exposure. Network toxicology analysis revealed a link between microglia-mediated neuroinflammation and PQ-induced neurodegeneration, as well as astrocyte differentiation. Single-cell RNA Sequencing (scRNA-seq) analysis identified the PI3K/Akt pathway as a potential regulatory mechanism underlying astrocyte phenotypic transformation. Our experimental evidence showed that PQ exposure induced neuroinflammation, dopaminergic neuron degeneration, and a pro-inflammatory astrocytes phenotype, all of which were reversed by microglial depletion. In vitro experiments using primary astrocytes cultured in conditioned medium from PQ-activated microglia demonstrated that activated microglia promoted a pro-inflammatory astrocyte phenotype, which was associated with inhibition of the PI3K/Akt pathway. This effect was alleviated by pretreatment with a PI3K Activator. Taken together, our results suggest that PQ exposure disrupts microglia-astrocytes homeostasis, leading to aberrant neuroimmune crosstalk and inflammatory cascades that may underlie dopaminergic neurodegeneration. Therefore, this work provides crucial insights into the neuroimmune mechanisms of PQ-induced pathology, thereby informing both future research and environmental health policy.
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Cat. No.Product NameDescriptionTargetResearch Area
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target: c-FmsResearch Areas: Neurological Disease