首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >GC-TOF/MS-based metabolomic strategy for combined toxicity effects of deoxynivalenol and zearalenone on murine macrophage ANA-1 cells
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GC-TOF/MS-based metabolomic strategy for combined toxicity effects of deoxynivalenol and zearalenone on murine macrophage ANA-1 cells

机译:基于GC-TOF / MS的代谢组学策略研究脱氧雪腐烯醇和玉米赤霉烯酮对小鼠巨噬细胞ANA-1细胞的联合毒性作用

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摘要

The actual health risk from exposure to combined mycotoxins is unknown, and few studies have focused on changes to cellular biological systems (e.g., metabolomics) caused by combined mycotoxic effects. To evaluate the combined mycotoxic effects of deoxynivalenol (DON) and zearalenone (ZEN) on the level of cellular biological systems, gas chromatographic, time-of-flight mass spectroscopy (GC-TOF/MS) of the complete murine macrophage ANA-1 cell metabolome was implemented in this study. Using optimized chromatography and mass spectrometry parameters, the metabolites detected by GC-TOF/MS were identified and processed using multivariate statistical analysis, including principal component analysis (PCA) and orthogonal projection on latent-structures discriminant analysis (OPLS-DA). The metabolite sets were screened for further pathway analysis under rules of t-test (P) value 0.05, VIP value > 1, and similarity value > 500. The mainly interfered metabolism pathways were categorized into two dominant types: amino acid metabolism and glycometabolism. Four metabolites, palmitic acid, 1-monopalmitin, ribose-5-phosphate and 2-deoxy-D-galactose, occur only under combined "DON + ZEN" treatment, indicating abnormal metabolism in ANA-1 cells. The metabolic state of ANA-1 cells under induction by combined "DON + ZEN" illustrates that DON may inhibit the estrogenic effects of ZEN. Thus, the combined effect of "DON + ZEN" may exacerbate toxicity in the pentose phosphate pathway, while palmitic acid metabolism is likely a new pathway effected by the combination, "DON + ZEN." (C) 2016 Elsevier Ltd. All rights reserved.
机译:暴露于合并的霉菌毒素的实际健康风险尚不清楚,并且很少有研究集中于由合并的霉菌毒素作用引起的细胞生物学系统(例如代谢组学)的变化。要评估脱氧雪腐烯醇(DON)和玉米赤霉烯酮(ZEN)对完整的小鼠巨噬细胞ANA-1细胞的细胞生物学系统,气相色谱,飞行时间质谱(GC-TOF / MS)水平的组合霉菌毒素作用在这项研究中实施了代谢组。使用优化的色谱和质谱参数,通过多变量统计分析(包括主成分分析(PCA)和在潜在结构判别分析上的正交投影(OPLS-DA))来鉴定和处理GC-TOF / MS检测到的代谢物。在t检验(P)值<0.05,VIP值> 1和相似度值> 500的规则下,筛选代谢物组,以进行进一步的通路分析。主要受干扰的代谢途径分为两种主要类型:氨基酸代谢和糖代谢。仅在“ DON + ZEN”联合治疗下才会出现四种代谢物,棕榈酸,1-单棕榈酸,核糖-5-磷酸和2-脱氧-D-半乳糖,这表明ANA-1细胞的代谢异常。联合“ DON + ZEN”诱导的ANA-1细胞的代谢状态说明DON可以抑制ZEN的雌激素作用。因此,“ DON + ZEN”的联合作用可能加剧戊糖磷酸途径的毒性,而棕榈酸代谢可能是“ DON + ZEN”联合作用的新途径。 (C)2016 Elsevier Ltd.保留所有权利。

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