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◆ Toxicology2026-09-14

Integrative AOP‑Based Mechanistic Profiling of Organic UV Filters Reveals Shared Endocrine‑Metabolic and Stress-Response Pathways.

Cristina Accardi, Zeyad Al-Abdulraheem, Alexandra Schaffert, Antonio Federico, Giusy Del Giudice, Angela Serra, Dario Greco

原始摘要(英文原文)· Original abstract
Organic UV filters are widely used in personal care products and are increasingly detected in humans and the environment. Although several compounds exhibit systemic absorption and biological activity, their mechanisms of action remain poorly understood because comprehensive toxicogenomic data remain limited. Here, we developed an integrative Adverse Outcome Pathway (AOP)-based framework to support the mechanistic profiling of organic UV filters with sparse experimental evidence. Molecular evidence was integrated from experimentally supported bioassay target genes, transcription factor downstream target genes derived from a curated regulatory network, and predicted protein targets obtained through molecular docking using GalaxySagittarius-AF. Docking-derived targets were prioritized using prediction scores and refined according to protein-protein interaction network proximity to bioassay-confirmed targets. Chemical-specific gene sets were tested for enrichment against curated human Key Event gene sets and mapped onto the AOP network. ADMET descriptors and GTEx tissue-expression data were incorporated to assess skin absorption relevance and tissue-specific biological plausibility. Ten organic UV filters met the skin absorption criteria and underwent mechanistic analysis. Integrated evidence revealed recurring molecular signatures involving nuclear receptor signalling, lipid metabolism, oxidative stress, inflammation, and DNA damage responses. AOP mapping highlighted convergence on endocrine-metabolic key events, including androgen and estrogen receptor signalling, PPAR-mediated lipid regulation, and hepatobiliary nuclear receptor pathways. Additional subnetworks linked oxidative and inflammatory processes with AOP regions associated with liver, breast, and neurotoxicity, representing mechanistic enrichment rather than evidence of causality. This framework enables mechanistic profiling despite limited toxicogenomic data, identifies biologically plausible pathways and shared molecular domains across structurally diverse UV filters, and provides a foundation for hypothesis generation and prioritization of future experimental studies.
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Integrative AOP‑Based Mechanistic Profiling of Organic UV Filters Reveals Shared Endocrine‑Metabolic and Stress-Response Pathways. — 科研速览 Science Skim