Involvement of the Gut–Lung Axis in LMW-PAHs-Induced Pulmonary Inflammation
作者:Jiali Qin, Shiyao Jiang, Z Zhang, Jianding Wang, Jianding Wang, Yuanjie Li, Yunting Li, Haojun Zhang, Chengyun Li, Haitao Ma, Junling Wang, Junling Wang · 发表于:Toxics · 年份:2025 · DOI:10.3390/toxics13121017 · 被引用次数:1 · 研究领域:Toxic Organic Pollutants Impact、Microbial bioremediation and biosurfactants、Epigenetics and DNA Methylation
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental pollutants recognized for their toxicological significance. Increasing evidence suggests that chronic exposure to low-molecular-weight PAHs (LMW-PAHs) contributes to heightened disease vulnerability and immune dysregulation, particularly among rural female populations. Recent studies have further linked a significant association between PAH exposure and gut microbiome (GM) modifications. Considering the common embryonic origin of the intestinal and respiratory systems, cross-organ communication under conditions of PAH exposure warrants deeper exploration. Although current gut-lung axis research largely emphasizes microbial metabolites such as short-chain fatty acids and bile acids, the contribution of arachidonic acid (AA) metabolites in LMW-PAH-induced pulmonary inflammation via this axis remains poorly defined. To address this knowledge gap, we developed an animal model employing integrated 16S rRNA sequencing and metabolomics approaches to systematically examine phenanthrene (Phe) and fluorene (Flu) induced GM compositional shifts and associated metabolic reprogramming. Through comprehensive profiling, we identified candidate microorganisms and metabolites potentially involved in dysbiosis-mediated pulmonary inflammation, thereby elucidating the mechanistic basis of Phe and Flu-associated health risks.