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NMR-Based Metabolic Profiles of Intact Zebrafish Embryos Exposed to Aflatoxin B1 Recapitulates Hepatotoxicity and Supports Possible Neurotoxicity

机译:暴露于黄曲霉毒素B1的完整斑马鱼胚胎的基于NMR的代谢特征概述了肝毒性并支持可能的神经毒性。

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摘要

Aflatoxin B1 (AFB1) is a widespread contaminant of grains and other agricultural crops and is globally associated with both acute toxicity and carcinogenicity. In the present study, we utilized nuclear magnetic resonance (NMR), and specifically high-resolution magic angle spin (HRMAS) NMR, coupled to the zebrafish (Danio rerio) embryo toxicological model, to characterize metabolic profiles associated with exposure to AFB1. Exposure to AFB1 was associated with dose-dependent acute toxicity (i.e., lethality) and developmental deformities at micromolar (≤ 2 µM) concentrations. Toxicity of AFB1 was stage-dependent and specifically consistent, in this regard, with a role of the liver and phase I enzyme (i.e., cytochrome P450) bioactivation. Metabolic profiles of intact zebrafish embryos exposed to AFB1 were, furthermore, largely consistent with hepatotoxicity previously reported in mammalian systems including metabolites associated with cytotoxicity (i.e., loss of cellular membrane integrity), glutathione-based detoxification, and multiple pathways associated with the liver including amino acid, lipid, and carbohydrate (i.e., energy) metabolism. Taken together, these metabolic alterations enabled the proposal of an integrated model of the hepatotoxicity of AFB1 in the zebrafish embryo system. Interestingly, changes in amino acid neurotransmitters (i.e., Gly, Glu, and GABA), as a key modulator of neural development, supports a role in recently-reported neurobehavioral and neurodevelopmental effects of AFB1 in the zebrafish embryo model. The present study reinforces not only toxicological pathways of AFB1 (i.e., hepatotoxicity, neurotoxicity), but also multiple metabolites as potential biomarkers of exposure and toxicity. More generally, this underscores the capacity of NMR-based approaches, when coupled to animal models, as a powerful toxicometabolomics tool.
机译:黄曲霉毒素B1(AFB1)是谷物和其他农作物的广泛污染物,在全球范围内都与急性毒性和致癌性有关。在本研究中,我们利用核磁共振(NMR),特别是高分辨率魔角自旋(HRMAS)NMR,结合斑马鱼(Danio rerio)胚胎毒理学模型,来表征与暴露于AFB1相关的代谢特征。暴露于AFB1与剂量依赖性急性毒性(即致死性)和微摩尔浓度(≤2 µM)下的发育畸形有关。在这方面,AFB1的毒性是阶段依赖性的,并且与肝脏和I期酶(即细胞色素P450)的生物激活作用特别一致。此外,暴露于AFB1的完整斑马鱼胚胎的代谢谱与以前在哺乳动物系统中报道的肝毒性基本一致,包括与细胞毒性相关的代谢产物(即细胞膜完整性的丧失),谷胱甘肽为基础的排毒以及与肝脏相关的多种途径,包括氨基酸,脂质和碳水化合物(即能量)代谢。综上所述,这些代谢改变使得能够提出斑马鱼胚胎系统中AFB1肝毒性的整合模型。有趣的是,氨基酸神经递质(即Gly,Glu和GABA)的变化作为神经发育的关键调节剂,支持了AFB1在斑马鱼胚胎模型中最近报道的神经行为和神经发育作用中的作用。本研究不仅加强了AFB1的毒理学途径(即肝毒性,神经毒性),而且还强化了多种代谢物作为暴露和毒性的潜在生物标志物。更普遍地,这突显了基于NMR的方法与动物模型结合后作为强大的毒物代谢组学工具的能力。

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