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首页> 外文期刊>Neurotoxicology and teratology >Gene expression changes in developing zebrafish as potential markers for rapid developmental neurotoxicity screening.
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Gene expression changes in developing zebrafish as potential markers for rapid developmental neurotoxicity screening.

机译:斑马鱼发育中的基因表达变化是快速发育神经毒性筛选的潜在标志。

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摘要

Hazard information essential to guide developmental neurotoxicity risk assessments is limited for many chemicals. As developmental neurotoxicity testing using rodents is laborious and expensive, alternative species such as zebrafish are being adapted for rapid toxicity screening. Assessing the developmental neurotoxicity potential of chemicals in a rapid throughput mode will be aided by the identification and characterization of transcriptional biomarkers that can be measured accurately and rapidly. To this end, the developmental expression profiles of ten nervous system genes were characterized in 1 to 6 days post fertilization zebrafish embryos/larvae using quantitative real time PCR (qRT-PCR). Transcripts of synapsinII a (syn2a) and myelin basic protein (mbp) increased throughout development, while transcripts of gap43, elavl3, nkx2.2a, neurogenin1 (ngn1), alpha1-tubulin, and glial fibrillary acidic protein (gfap) initially increased, but subsequently declined. Transcripts for nestin and sonic hedgehog a (shha) decreased during development. We tested the responses of these potential biomarkers to developmental neurotoxicant exposure, and found that the expression profiles of a subset of genes were altered both during and after exposure to sublethal doses of ethanol, a known developmental neurotoxicant. Collectively, these data indicate that transcript levels of the candidate genes change during development in patterns which are consistent with literature reports, and that the expression of the transcripts is perturbed by treatment with a developmental neurotoxicant (ethanol). These results suggest that the expression profiles of these genes may be useful biomarkers for rapid evaluation of the developmental neurotoxicity potential of chemicals.
机译:对于许多化学品而言,指导发育性神经毒性风险评估必不可少的危害信息有限。由于使用啮齿动物进行发育性神经毒性测试既费力又昂贵,因此,诸如斑马鱼之类的替代物种正被用于快速毒性筛选。可以快速准确地测定和鉴定转录生物标志物,有助于评估化学物质在快速通量模式下的发展性神经毒性潜力。为此,使用定量实时PCR(qRT-PCR)在受精斑马鱼胚胎/幼虫受精后1至6天内表征了十种神经系统基因的发育表达谱。在整个发育过程中,synapsinII a(syn2a)和髓鞘碱性蛋白(mbp)的转录物增加,而gap43,elavl3,nkx2.2a,neurogenin1(ngn1),α1-微管蛋白和神经胶质纤维酸性蛋白(gfap)的转录物最初增加,但随后拒绝了。 Nestin和音速刺猬(shha)的转录本在发育过程中下降。我们测试了这些潜在的生物标记物对发育性神经毒性物质的反应,发现在暴露于亚致死剂量的乙醇(一种已知的发育性神经毒性物质)期间和之后,该基因子集的表达谱均发生了改变。总的来说,这些数据表明候选基因的转录水平在发育过程中以与文献报道一致的方式改变,并且转录的表达受到发育神经毒物(乙醇)的处理而受到干扰。这些结果表明,这些基因的表达谱可能是有用的生物标志物,用于快速评估化学品的发育神经毒性潜力。

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