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Triazole induced concentration-related gene signatures in rat whole embryo culture

机译:三唑诱导大鼠全胚培养中浓度相关的基因签名

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摘要

Commonly used as antifungal agents in agriculture and medicine, triazoles have been shown to cause teratogenicity in a diverse set of animal models. Here, we evaluated the dose-dependent impacts of flusilazole, cyproconazole and triadimefon, on global gene expression in relation to effects on embryonic development using the rat whole embryo culture (WEC) model. After 4. h exposure, we identified changes in gene expression due to triazole exposure which preceded morphological alterations observed at 48. h. In general, across the three triazoles, we observed similar directionality of regulation in gene expression and the magnitude of effects on gene expression correlated with the degree of induced developmental toxicity. Significantly regulated genes included key members of steroid/cholesterol and retinoic acid metabolism and hindbrain developmental pathways. Direct comparisons with previous studies suggest that triazole-gene signatures identified in the WEC overlap with zebrafish and mouse, and furthermore, triazoles impact gene expression in a similar manner as retinoic acid exposures in rat embryos. In summary, we further differentiate pathways underlying triazole-developmental toxicity using WEC and demonstrate the conservation of these response-pathways across model systems.
机译:三唑类在农业和医学中通常用作抗真菌剂,在多种动物模型中均显示出致畸性。在这里,我们使用大鼠全胚培养(WEC)模型评估了氟硅唑,环丙唑和三唑酮对全球基因表达的剂量依赖性影响,这些影响与对胚胎发育的影响有关。暴露4. h后,我们确定了由于三唑暴露引起的基因表达变化,而三唑暴露是在48 h观察到的形态学改变之前。通常,在三种三唑中,我们观察到相似的基因表达调控方向,以及对基因表达的影响程度与诱导的发育毒性程度相关。显着调节的基因包括类固醇/胆固醇和视黄酸代谢和后脑发育途径的关键成员。与先前研究的直接比较表明,在WEC中鉴定出的三唑基因特征与斑马鱼和小鼠重叠,此外,三唑以与视黄酸暴露于大鼠胚胎中相似的方式影响基因表达。总之,我们使用WEC进一步区分了三唑发展毒性的潜在途径,并证明了这些反应途径在模型系统中的保守性。

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