首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genotoxicity investigations on nanomaterials: methods, preparation and characterization of test material, potential artifacts and limitations-Many questions, some answers.
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Genotoxicity investigations on nanomaterials: methods, preparation and characterization of test material, potential artifacts and limitations-Many questions, some answers.

机译:纳米材料的基因毒性研究:方法,测试材料的制备和表征,潜在的伪影和局限性-许多问题,一些答案。

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摘要

Nanomaterials display novel properties to which most toxicologists have not consciously been exposed before the advent of their practical use. The same properties, small size and particular shape, large surface area and surface activity, which make nanomaterials attractive in many applications, may contribute to their toxicological profile. This review describes what is known about genotoxicity investigations on nanomaterials published in the openly available scientific literature to-date. The most frequently used test was the Comet assay: 19 studies, 14 with positive outcome. The second most frequently used test was the micronucleus test: 14 studies, 12 of them with positive outcome. The Ames test, popular with other materials, was less frequently used (6 studies) and was almost always negative, the bacterial cell wall possibly being a barrier for many nanomaterials. Recommendations for improvements emerging from analyzing the reports summarized in this review are: Know what nanomaterial has been tested (and in what form); Consider uptake and distribution of the nanomaterial; Use standardized methods; Recognize that nanomaterials are not all the same; Use in vivo studies to correlate in vitro results; Take nanomaterials specific properties into account; Learn about the mechanism of nanomaterials genotoxic effects. It is concluded that experiences with other, non-nano, substances (molecules and larger particles) taught us that mechanisms of genotoxic effects can be diverse and their elucidation can be demanding, while there often is an immediate need to assess the genotoxic hazard. Thus a practical, pragmatic approach is the use of a battery of standard genotoxicity testing methods covering a wide range of mechanisms. Application of these standard methods to nanomaterials demands adaptations and the interpretation of results from the genotoxicity tests may need additional considerations. This review should help to improve standard genotoxicity testing as well as investigations on the underlying mechanism and the interpretation of genotoxicity data on nanomaterials.
机译:纳米材料显示出新颖的特性,大多数毒理学家在其实际应用出现之前还没有意识到这些特性。纳米材料在许多应用中具有吸引力的相同属性,较小的尺寸和特定的形状,较大的表面积和表面活性可能有助于其毒理学特征。这篇评论描述了迄今为止公开发表的科学文献中有关纳米材料的遗传毒性研究的已知信息。最常用的测试是彗星试验:19项研究,其中14项具有阳性结果。第二种最常用的测试是微核测试:14项研究,其中12项具有阳性结果。在其他材料上很受欢迎的Ames测试很少使用(6个研究),并且几乎总是阴性,细菌细胞壁可能是许多纳米材料的障碍。通过分析本综述中总结的报告得出的改进建议是:知道已经测试了哪些纳米材料(以及以何种形式);考虑纳米材料的吸收和分布;使用标准化方法;认识到纳米材料并不完全相同;使用体内研究来关联体外结果;考虑到纳米材料的特定特性;了解纳米材料遗传毒性作用的机制。结论是,其他非纳米物质(分子和较大颗粒)的经验告诉我们,遗传毒性作用的机制可能是多种多样的,并且可能需要阐明它们,而常常需要立即评估遗传毒性危害。因此,实用,实用的方法是使用一系列涵盖广泛机制的标准遗传毒性测试方法。这些标准方法在纳米材料上的应用需要适应性,而对遗传毒性测试结果的解释可能还需要考虑其他因素。这项审查应有助于改善标准的遗传毒性测试以及对纳米材料的遗传毒性数据的潜在机理和解释的研究。

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