γ -山竹苷和CYP1B1在香烟烟雾提取物引起的毒性机制中的重要作用:在硅和体外的观察

IF 4.8 3区 医学 Q1 PHARMACOLOGY & PHARMACY Toxicology Pub Date : 2024-11-29 DOI:10.1016/j.tox.2024.154016
Hao Lin , Zijian Li , Tao Zeng , Ying Wang , Lan Zhang
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引用次数: 0

摘要

香烟烟雾提取物(CSE)含有有害物质,对呼吸系统疾病有重大影响。以前的研究主要集中在CSE中致癌物质的存在。然而,应该指出的是,其他化合物也可能协同作用产生更大的影响。本研究提出了CSE天然产物与致癌物之间的创新合作,以增强CSE诱导的急性毒性。生物信息学分析结合实验验证已经阐明了CYP1B1在cse诱导的急性毒性中的关键作用。靶向CYP1B1的抑制剂对CYP1B1表达水平升高的细胞具有优先的细胞毒性。随后,我们对CSE组合物数据库进行了虚拟筛选,以确定CYP1B1的潜在抑制剂。经过对接评分和复杂的相互作用模式分析,γ-山竹苷成为一种极有前景的CYP1B1抑制剂。利用分子对接和动力学方法对γ-山竹苷与CYP1B1之间形成的复合物结构进行了分析。进一步研究表明,γ-山竹苷可与CSE中的致癌物协同作用,造成细胞损伤,并在CSE诱导的急性毒性中发挥重要作用。此外,γ-山竹苷对CYP1B1变体L432V和N453S的亲和力增加,表明具有这些遗传变异的生物体可能更容易受到CSE引起的细胞损伤。这些新观点增强了我们对CSE急性毒性背后机制的理解,并为改进预防措施和治疗策略提供了新的可能性。
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The crucial involvement of gamma-Mangostin and CYP1B1 in the mechanism underlying the toxicity caused by cigarette smoke extract: In silico and in vitro insights
Cigarette smoke extracts (CSE) contain harmful substances that significantly contribute to respiratory conditions. Previous studies have primarily focused on the presence of carcinogens in CSE. However, it should be noted that other compounds may also synergistically contribute to a greater impact. This study proposes an innovative collaboration between natural products in CSE and carcinogens to enhance CSE-induced acute toxicity. Bioinformatics analysis coupled with experimental validation have elucidated the pivotal role of CYP1B1 in CSE-induced acute toxicity. Inhibitors targeting CYP1B1 have demonstrated preferential cytotoxicity towards cells exhibiting elevated levels of CYP1B1 expression. Afterwards, we conducted a virtual screening of the CSE composition database to identify a potential inhibitor for CYP1B1. After analyzing docking scores and complex interaction modes, γ-mangostin emerged as a highly promising CYP1B1 inhibitor. Molecular docking and dynamics were used to elucidate the complex structure formed between γ-mangostin and CYP1B1. Further investigations suggest that γ-mangostin can synergistically interact with carcinogens in CSE, causing cellular harm and contributing significantly to acute toxicity induced by CSE. Furthermore, γ-mangostin showed increased affinity towards CYP1B1 variants L432V and N453S, suggesting that organisms with these genetic variations may be more susceptible to cell damage caused by CSE. These new perspectives enhance our understanding of the mechanism behind acute toxicity associated with CSE and offer new possibilities for improving preventive measures and treatment strategies.
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来源期刊
Toxicology
Toxicology 医学-毒理学
CiteScore
7.80
自引率
4.40%
发文量
222
审稿时长
23 days
期刊介绍: Toxicology is an international, peer-reviewed journal that publishes only the highest quality original scientific research and critical reviews describing hypothesis-based investigations into mechanisms of toxicity associated with exposures to xenobiotic chemicals, particularly as it relates to human health. In this respect "mechanisms" is defined on both the macro (e.g. physiological, biological, kinetic, species, sex, etc.) and molecular (genomic, transcriptomic, metabolic, etc.) scale. Emphasis is placed on findings that identify novel hazards and that can be extrapolated to exposures and mechanisms that are relevant to estimating human risk. Toxicology also publishes brief communications, personal commentaries and opinion articles, as well as concise expert reviews on contemporary topics. All research and review articles published in Toxicology are subject to rigorous peer review. Authors are asked to contact the Editor-in-Chief prior to submitting review articles or commentaries for consideration for publication in Toxicology.
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