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Zebrafish as an integrative vertebrate model to identify miRNA mechanisms regulating toxicity

机译:斑马鱼作为一种综合的脊椎动物模型,以鉴定调节毒性的miRNA机制

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Zebrafish ( Danio rerio ) are an integrative vertebrate model ideal for toxicity studies. The zebrafish genome is sequenced with detailed characterization of all life stages. With their genetic similarity to humans, zebrafish models are established to study biological processes including development and disease mechanisms for translation to human health. The zebrafish genome, similar to other eukaryotic organisms, contains microRNAs (miRNAs) which function along with other epigenetic mechanisms to regulate gene expression. Studies have now established that exposure to toxins and xenobiotics can change miRNA expression profiles resulting in various physiological and behavioral alterations. In this review, we cover the intersection of miRNA alterations from toxin or xenobiotic exposure with a focus on studies using the zebrafish model system to identify miRNA mechanisms regulating toxicity. Studies to date have addressed exposures to toxins, particulate matter and nanoparticles, various environmental contaminants including pesticides, ethanol, and pharmaceuticals. Current limitations of the completed studies and future directions for this research area are discussed.
机译:斑马鱼(Danio Rerio)是一种综合的脊椎动物模型,适合毒性研究。斑马鱼基因组被测序,详细表征了所有寿命。随着它们对人类的遗传相似性,建立了斑马鱼模型,以研究生物过程,包括对人体健康翻译的发展和疾病机制。类似于其他真核生物的斑马鱼基因组含有微小RNA(miRNA),其与其他表观遗传机制一起调节基因表达。现在,研究已经确定,暴露于毒素和异种症可以改变miRNA表达谱,导致各种生理和行为改变。在本综述中,我们涵盖了毒素或异种症暴露的胚胎改变,重点使用斑马鱼模型系统来鉴定调节毒性的miRNA机制。迄今为止的研究已经解决了毒素,颗粒物和纳米颗粒,各种环境污染物,包括杀虫剂,乙醇和药物的各种环境污染物。讨论了完成研究的当前限制和该研究区域的未来方向。

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