Division of Environmental Medicine, Department of Medicine, Grossman School of Medicine, New York University, 341 East 25(th) Street, New York, NY 10010, United States of America.
Division of Environmental Medicine, Department of Medicine, Grossman School of Medicine, New York University, 341 East 25(th) Street, New York, NY 10010, United States of America.
Toxicol Appl Pharmacol. 2024 Jan;482:116769. doi: 10.1016/j.taap.2023.116769. Epub 2023 Nov 23.
The Aryl Hydrocarbon Receptor (AhR) is a ligand-activated transcriptional factor pivotal in responding to environmental stress and maintaining cellular homeostasis. Exposure to specific xenobiotics or industrial compounds in the environment activates AhR and its subsequent signaling, inducing oxidative stress and related toxicity. Past research has also identified and characterized several classes of endogenous ligands, particularly some tryptophan (Trp) metabolic/catabolic products, that act as AhR agonists, influencing a variety of physiological and pathological states, including the modulation of immune responses and cell death. Heavy metals, being non-essential elements in the human body, are generally perceived as toxic and hazardous, originating either naturally or from industrial activities. Emerging evidence indicates that heavy metals significantly influence AhR activation and its downstream signaling. This review consolidates current knowledge on the modulation of the AhR signaling pathway by heavy metals, explores the consequences of co-exposure to AhR ligands and heavy metals, and investigates the interplay between oxidative stress and AhR activation, focusing on the regulation of immune responses and ferroptosis.
芳香烃受体(Aryl Hydrocarbon Receptor,AhR)是一种配体激活的转录因子,在应对环境应激和维持细胞内稳态方面发挥着关键作用。暴露于环境中的特定外源性化学物质或工业化合物会激活 AhR 及其后续信号转导,诱导氧化应激和相关毒性。过去的研究还鉴定和表征了几类内源性配体,特别是一些色氨酸(Tryptophan,Trp)代谢/分解产物,它们作为 AhR 激动剂发挥作用,影响多种生理和病理状态,包括免疫反应和细胞死亡的调节。重金属是人体内非必需的元素,通常被认为是有毒和有害的,它们要么来源于自然,要么来源于工业活动。新出现的证据表明,重金属显著影响 AhR 的激活及其下游信号转导。本综述整合了目前关于重金属对 AhR 信号通路的调节作用的知识,探讨了 AhR 配体和重金属共同暴露的后果,以及氧化应激和 AhR 激活之间的相互作用,重点关注免疫反应和铁死亡的调节。