ArticleFrontiers in molecular neuroscience2026
Bisphenol A induces ototoxic injury by ferroptosis pathway: integrated analysis of network toxicology, RNA-sequencing and experimental validation.
Article in Frontiers in molecular neuroscience, 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
Bisphenol A, a globally utilized plastic monomer, has extensively infiltrated aquatic and atmospheric environments, emerging as a high-priority environmental pollutant. However, its toxicological impact on ototoxic injury and the associated molecular mechanisms remain largely unexplored. In this study, we employed an integrative approach combining network toxicology, RNA sequencing, and cellular phenotyping to systematically elucidate the pathways of Bisphenol A-induced injury. Potential ototoxicity-related targets and Bisphenol A-binding proteins were sourced from databases such as BindingDB, CTD, SwissTargetPrediction, TargetNet, DisGeNET, and GeneCards, resulting in the identification of 55 candidate targets. Functional enrichment analysis revealed significant involvement in autophagy and HIF-1 signaling pathways, while multi-algorithm topology analysis identified CASP3, PTGS2, CYCS, BCL2, TNF, PPARG, NFE2L2, and MAPK3 as key hub proteins. Experimental validation demonstrated that Bisphenol A reduced cell viability and increased lactate dehydrogenase leakage in a concentration-dependent manner. RNA sequencing further revealed a marked activation of the ferroptosis pathway following Bisphenol A exposure. Ferroptotic cell death was further corroborated by increased levels of lipid reactive oxygen species, malondialdehyde, and intracellular Fe
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