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An early developmental vertebrate model for nanomaterial safety: bridging cell-based and mammalian toxicity assessment

机译:纳米材料安全的早期发育脊椎动物模型:桥接基于细胞和哺乳动物的毒性评估

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摘要

Aim: With the rise in production of nanoparticles (NPs) for an ever-increasing number of applications, there is an urgent need to efficiently assess their potential toxicity. We propose a NP hazard assessment protocol that combines mammalian cytotoxicity data with embryonic vertebrate abnormality scoring to determine an overall toxicity index. Results: We observed that, after exposure to a range of NPs, Xenopus phenotypic scoring showed a strong correlation with cell based in vitro assays. Magnetite-cored NPs, negative for toxicity in vitro and Xenopus, were further confirmed as nontoxic in mice. Conclusion: The results highlight the potential of Xenopus embryo analysis as a fast screening approach for toxicity assessment of NPs, which could be introduced for the routine testing of nanomaterials.
机译:目的:随着纳米颗粒(NPs)产量的增加,用于越来越多的应用,迫切需要有效评估其潜在毒性。我们提出了一种NP危害评估方案,该方案将哺乳动物细胞毒性数据与胚胎脊椎动物异常评分相结合,以确定总体毒性指数。结果:我们观察到,暴露于一定范围的NP后,非洲爪蟾表型评分与基于细胞的体外试验显示出很强的相关性。在体外和爪蟾中毒性阴性的以磁铁矿为核心的纳米粒在小鼠中被进一步确认为无毒。结论:结果突出了非洲爪蟾胚胎分析作为NPs毒性评估的快速筛选方法的潜力,该方法可用于纳米材料的常规测试。

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