首页> 美国卫生研究院文献>International Journal of Nanomedicine >Tissue-specific direct microtransfer of nanomaterials into Drosophila embryos as a versatile in vivo test bed for nanomaterial toxicity assessment
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Tissue-specific direct microtransfer of nanomaterials into Drosophila embryos as a versatile in vivo test bed for nanomaterial toxicity assessment

机译:纳米材料的组织特异性直接微转移到果蝇胚胎中作为多功能的体内测试床用于纳米材料毒性评估

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摘要

Nanomaterials are the subject of intense research, focused on their synthesis, modification, and biomedical applications. Increased nanomaterial production and their wide range of applications imply a higher risk of human and environmental exposure. Unfortunately, neither environmental effects nor toxicity of nanomaterials to organisms are fully understood. Cost-effective, rapid toxicity assays requiring minimal amounts of materials are needed to establish both their biomedical potential and environmental safety standards. Drosophila exemplifies an efficient and cost-effective model organism with a vast repertoire of in vivo tools and techniques, all with high-throughput scalability and screening feasibility throughout its life cycle. Here we report tissue specific nanomaterial assessment through direct microtransfer into target tissues. We tested several nanomaterials with potential biomedical applications such as single-wall carbon nanotubes, multiwall carbon nanotubes, silver, gold, titanium dioxide, and iron oxide nanoparticles. Assessment of nanomaterial toxicity was conducted by evaluating progression through developmental morphological milestones in Drosophila. This cost-effective assessment method is amenable to high-throughput screening.
机译:纳米材料是广泛研究的主题,专注于其合成,修饰和生物医学应用。纳米材料生产的增加及其广泛的应用范围意味着人类和环境暴露的风险更高。不幸的是,纳米材料对生物的环境影响和毒性都没有被完全理解。需要经济高效的快速毒性分析方法,以最少的材料量来确定其生物医学潜力和环境安全标准。果蝇是一种高效且具有成本效益的模型生物,具有大量的体内工具和技术,并且在其整个生命周期中均具有高通量的可扩展性和筛选可行性。在这里,我们报告通过直接微转移到目标组织的组织特定的纳米材料评估。我们测试了具有潜在生物医学应用的几种纳米材料,例如单壁碳纳米管,多壁碳纳米管,银,金,二氧化钛和氧化铁纳米颗粒。通过评估果蝇中发育形态学里程碑的进展来进行纳米材料毒性的评估。这种经济有效的评估方法适用于高通量筛选。

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