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Prenatal PM2.5 exposure drives epigenetic reprogramming of fetal macrophages linked to atopic dermatitis
Dae Yeol Yang1, Song-I Yang2, Yong Joo Park3
1Department of Biology, Kyung Hee University, Seoul, Republic of Korea.
Abstract:
Prenatal environmental exposures are increasingly recognized as contributors to atopic dermatitis (AD), yet the underlying mechanisms remain unclear. Fine particulate matter (PM2.5), a complex mixture of airborne pollutants, has been associated with elevated risk of allergic diseases, particularly during early development. Here we show that first-trimester PM2.5 exposure is associated with an increased risk of AD in early childhood and induces epigenetic alteration in the placenta. Integrative multi-omics analyses, including single-cell approaches, reveal hypomethylation of FCER1G in fetal macrophages, leading to its sustained overexpression. This transcriptional program persists across developmental stages and re-emerges in M2 macrophages in AD skin and peripheral blood. Functional analyses demonstrate that FCER1G-associated networks promote NADPH oxidase-mediated reactive oxygen species signaling and Th2-related inflammatory pathways. These findings suggest that prenatal PM2.5 exposure induces durable epigenetic changes in immune cells, predisposing individuals to inflammatory responses that contribute to AD pathogenesis, and highlight early-life environmental exposure as a potential target for prevention and intervention.
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