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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >The use of zebrafish mutants to identify secondary target effects of acetylcholine esterase inhibitors.
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The use of zebrafish mutants to identify secondary target effects of acetylcholine esterase inhibitors.

机译:斑马鱼突变体用于鉴定乙酰胆碱酯酶抑制剂的次级靶作用的用途。

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摘要

We are confronted with a large and steadily growing number of bioactive compounds, including drugs, pesticides, and industrial by-products. The assessment of target specificity and potential toxic effect on human health and the environment generates a strong demand for robust and cost-effective models with high predictive power. We investigated the potential of the zebrafish embryo as a whole organism, vertebrate model to assess the specificity of compounds that are known to inhibit acetylcholinesterase (AChE). Inhibitors of AChE are widely used as drugs and pesticides. By application of simple assays and comparison with the phenotype of embryos with genetic lesions in the ache gene, we demonstrate that only one of the AChE inhibitors (galanthamine) reproduces the phenotype of ache mutant embryos. The other compounds produced additional effects indicating secondary targets. Our work demonstrates the power of a genetic system for toxicological evaluations. The combination of genetics and transgenesis with the other experimental virtues of the zebrafish embryo, such as small size and low cost, offers a whole organism platform for medium to high throughput compound testing.
机译:我们面临着大量且稳定增长的生物活性化合物,包括药物,农药和工业副产品。对目标特异性和对人类健康及环境的潜在毒性影响的评估产生了对具有高预测力的健壮且具有成本效益的模型的强烈需求。我们调查了斑马鱼胚胎作为整个生物体,脊椎动物模型的潜力,以评估已知抑制乙酰胆碱酯酶(AChE)的化合物的特异性。 AChE的抑制剂被广泛用作药物和杀虫剂。通过应用简单的测定方法并与ache基因中具有遗传损伤的胚胎的表型进行比较,我们证明只有一种AChE抑制剂(加兰他敏)可复制ache突变体胚胎的表型。其他化合物产生了其他作用,表明其是次要靶标。我们的工作证明了遗传系统对毒理学评估的作用。遗传学和转基因与斑马鱼胚胎的其他实验优势(例如小尺寸和低成本)的结合为中到高通量化合物测试提供了一个完整的生物平台。

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