Related Experiment Video
Updated: Jun 27, 2025

Isolation of Region-specific Microglia from One Adult Mouse Brain Hemisphere for Deep Single-cell RNA Sequencing
Published on: December 3, 2019
[Microglia differential genes and their functions in paraquat-induced Parkinson's disease-like in mice's brains based
Abstract:
Objective: To analyze the differential genes and related signaling pathways of microglia subpopulations in Parkinson's disease (PD) -like mouse brains induced by paraquat (PQ) based on single-cell RNA sequencing, and provide clues to elucidate the mechanism of PQ-induced PD-like changes in the brain of animals. Methods: In September 2021, six male 6-week-old C57BL/6 mice were randomly divided into control group and experimental group (three mice in each group) . The mice were injected with saline, 10.0 mg/kg PQ intraperitoneally, once every three days, and 10 consecutive injections were used for modeling. After infection, the brains of mice were taken and 10×Genomics single-cell RNA sequencing was performed. Microglia subpopulations were screened based on gene expression characteristics, and Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses were performed. The differential genes of microglia subpopulations between the experimental group and control group were further screened, and functional enrichment analysis was performed using bioinformatics tools. Mouse microglia (BV2 cells) were treated with 0, 60, 90 μmol/L PQ solution, respectively. And real-time fluorescence quantitative PCR experiments were conducted to validate the expressions of differential genes hexokinase 2 (Hk2) , ATPase H+ Transporting V0 Subunit B (Atp6v0b) and Neuregulin 1 (Nrg1) . Results: Cluster 7 and Cluster 20 were identified as microglia subpopulations based on the signature genes inositol polyphosphate-5-phosphatase d, Inpp5d (Inpp5d) and transforming growth factor beta receptor 1 (Tgfbr1) , and they reflected the microglia-activated M2 phenotype. The bioinformatics analysis showed that the characteristic genes of identified microglia subpopulations were enriched in endocytosis. In terms of molecular function, it mainly enriched in transmembrane receptor protein kinase activity and cytokine binding. The up-regulated genes of Cluster 7 were mainly enriched in lysosomal pathway, endocytosis pathway, and down-regulated genes were mainly enriched in neurodegenerative disease and other signaling pathways. The up-regulated genes of Cluster 20 were mainly enriched in signaling pathways related to PD, and down-regulated genes were mainly enriched in cyclic adenosine 3', 5'-monophosphate (cAMP) signaling pathways, neurological development, synaptic function and other signaling pathways. The results of real-time fluorescence quantitative PCR showed that the expressions of Hk2 mRNA and Atp6v0b mRNA increased and the expression of Nrg1 mRNA decreased in the 90 μmol/L PQ-treated BV2 cells compared with the 0 μmol/L, and the differences were statistically significant (P<0.05) . Conclusion: Microglia are activated in the PQ-induced PD-like mouse model and polarized toward the M2 phenotype. And their functions are associated with lysosomal (endocytosis) , synaptic functions and the regulation of PD-related pathways.
Insights
Paraquat exposure activates microglia in a Parkinson's disease mouse model, shifting them to an M2 phenotype. This activation involves pathways related to endocytosis, synaptic function, and Parkinson's disease progression.
Area of Science:
- Neuroscience
- Immunology
- Toxicology
Background:
- Parkinson's disease (PD) is a neurodegenerative disorder.
- Microglia play a crucial role in neuroinflammation and PD pathogenesis.
- Paraquat (PQ) is a known neurotoxin that can induce PD-like symptoms in animal models.
Purpose of the Study:
- To investigate the differential gene expression and signaling pathways of microglia subpopulations in a paraquat-induced Parkinson's disease mouse model.
- To elucidate the mechanisms underlying paraquat-induced neurotoxicity and PD-like changes.
Main Methods:
- Single-cell RNA sequencing was performed on microglia from paraquat-treated and control mice.
- Bioinformatic analyses, including Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, were used to identify differential genes and enriched pathways.
- Real-time fluorescence quantitative PCR validated the expression of key genes (Hk2, Atp6v0b, Nrg1) in BV2 microglia cells treated with paraquat.
Main Results:
- Two microglia subpopulations (Cluster 7 and Cluster 20) were identified, exhibiting an M2-activated phenotype.
- Differential gene expression analysis revealed enrichment in endocytosis, lysosomal pathways, and pathways related to neurodegeneration and PD.
- Validation experiments confirmed increased expression of Hk2 and Atp6v0b mRNA and decreased expression of Nrg1 mRNA in paraquat-treated microglia.
Conclusions:
- Paraquat exposure induces microglia activation and M2 polarization in a PD-like mouse model.
- Microglial functions in this model are linked to lysosomal (endocytosis) and synaptic processes, as well as the regulation of PD-related pathways.

