ArticleResearch square2026
Nasal Exposure to Environmental PM2.5 Drives Testicular Pyroptosis and Tissue Damage: Evidence from Inhibitor Intervention and Multi Source Data.
Article in Research square, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Objective: Focusing on the process by which PM2.5 induces NLRP3/Caspase-1 axis activation and drives GSDMD-mediated pyroptosis, this study aimed to construct an integrated framework combining evidence from a PM2.5 animal model, intervention with a pyroptosis inhibitor, and reproducible screening of public transcriptomic databases. Methods: A total of 24 male Sprague-Dawley rats were randomly divided into four groups (n=6 per group): control (normal saline), Caspase-1 inhibitor Z-YVAD-FMK (5 μg/mg), PM2.5 (10 mg/kg), and PM2.5 + Caspase-1 inhibitor (PM2.5 exposure + Z-YVAD-FMK). After 4 weeks of exposure, mating tests were conducted followed by euthanasia. Testicular and epididymal tissues were collected for hematoxylin-eosin (HE) staining and sperm quality analysis. Key proteins associated with the pyroptotic response in testicular tissue were detected by Western Blot (WB). Concurrently, the public GEO dataset GSE189187 (GC-2spd cells, PM2.5-treated vs. control, 3 vs. 3) was analyzed for differential expression, followed by enrichment and Protein-Protein Interaction (PPI) network analyses. Hub genes were identified using the MCODE and CytoHubba plugins in Cytoscape software, and these network hubs were cross-validated with the evidence chain from the animal study. Results: Exposure to PM2.5 led to decreased sperm count and motility, along with a significant increase in sperm abnormality rate and a reduction in spermatogenic cell number. Western Blot analysis showed significantly elevated expression of the apoptosis-associated speck-like protein containing a CARD (ASC), Caspase-1, and Gasdermin D protein in the PM2.5 group. These changes were reversed by intervention with the Caspase-1 pyroptosis inhibitor. Transcriptomic differential analysis identified 217 significant differentially expressed genes (DEGs: 91 up-regulated, 126 down-regulated). Separate GO and KEGG enrichment analyses (Over-Representation Analysis, ORA) for up- and down-regulated genes revealed that DEGs were primarily enriched in antiviral/interferon-related immune processes. Pathways associated with tissue injury were also significantly enriched. Two pyroptosis-related DEGs were identified (Hmox1 up-regulated, Stat1 down-regulated). A PPI network constructed from these candidate genes was subjected to topological analysis in Cytoscape, and further screening with CytoHubba yielded 10 hub genes, suggesting that the PM2.5-related transcriptional response involves an interferon-STAT axis-driven inflammatory interaction network. Conclusion: PM2.5 from vehicle exhaust impairs male reproductive function. The pyroptosis inhibitor protects reproductive function by suppressing the NLRP3/Caspase-1 signaling pathway. Furthermore, PM2.5 can activate the differential expression of pyroptosis-related genes at the transcriptional level, thereby promoting an inflammatory interaction network that contributes to systemic inflammation.
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