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◆ Environmental science & technology2026-08-11

BHT and Its Metabolites Disrupt β2-Adrenergic Signaling: A Biotransformation-Dependent Cardiotoxicity Mechanism in Zebrafish.

Xuefang Liang, Huina Gao, Weiang Zhang, Jiachen Liu, Qiaoqiao Hao, Qingjian Meng, Alideertu Dong, Christopher J Martyniuk

原始摘要(英文原文)· Original abstract
Butylated hydroxytoluene (BHT) is a widely used synthetic phenolic antioxidant, ubiquitously detected in aquatic environments. While traditionally considered safe based on in vitro data, BHT adversely affects aquatic organisms at environmentally relevant concentrations. Here, we demonstrate that BHT-induced cardiotoxicity is primarily mediated by its metabolites through disruption of β2-adrenergic receptor (β2AR) signaling. In zebrafish larvae exposed to 0.01-1 μM BHT for 6 days, metabolites BHT-CHO, BHT-COOH, and BHT-Q accumulated prominently, inducing cardiac morphological and histological alterations. Transcriptomic analysis highlighted pronounced neuro-cardiovascular network disruption, with significant suppression of adrenergic signaling in cardiomyocytes at 1 μM. Molecular docking and biolayer interferometry identified β2AR as a critical target for BHT metabolites, and functional rescue with a β-adrenoceptor agonist confirmed pathway dependency. However, paradoxical activation of β2AR-cAMP/PKA with concomitant suppression of downstream PKA-mediated phosphorylation resulting from competitive BHT-Q binding to the PKA catalytic subunit, indicates a functional uncoupling effect. This disrupts intracellular Ca2+ homeostasis in cardiomyocytes and drives cardiomyocyte dysfunction. Our findings reveal an unconventional toxicological paradigm, wherein environmental pollutants exploit kinase ATP pockets to corrupt signaling fidelity rather than simply inhibit or activate receptors, highlighting the necessity of metabolic activation assessment in environmental risk evaluation.
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BHT and Its Metabolites Disrupt β2-Adrenergic Signaling: A Biotransformation-Dependent Cardiotoxicity Mechanism in Zebrafish. — 科研速览 Science Skim