纳米材料遗传毒性研究的系统质量评价和综述:一个监管的角度。

IF 7.2 1区 医学 Q1 TOXICOLOGY
Kirsi K Siivola, Michael J Burgum, Blanca Suárez-Merino, Martin J D Clift, Shareen H Doak, Julia Catalán
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引用次数: 5

摘要

在过去十年中,由欧盟资助项目产生的几个数据库中,纳米基因毒理学领域的出版物数量和纳米材料(NMs)的基因毒性数据量有所增加。同时,大量的研究工作有助于我们对纳米表征的关键物理化学(PC)参数的理解,以及最初为可溶性化学品设计的毒理学分析的局限性。因此,越来越明显的是,从监管的角度来看,并非所有这些数据都是可靠的或相关的。本系统综述的目的是调查可被认为可靠和相关的NMs遗传毒性研究的范围,并从监管的角度关注研究需要做些什么才能有用。由于已有大量的研究,我们选择将研究范围限制在近年来引起极大兴趣的两大类:纳米纤维(包括纳米管)和含金属纳米颗粒。针对同行评审的出版物,我们根据EU FP-7 GUIDEnano项目开发的质量评估方法,评估了所测试NMs的PC特性、模型系统文档、研究设计和结果的完整性。此外,基于最近发表的关于纳米基因毒理学研究最佳实践的建议,我们创建了一套标准,用于风险评估目的的特定测定的可靠性和相关性。然后对文章进行了回顾,讨论了符合条件的出版物,并强调了NM遗传毒性研究中最常见的缺点。此外,FP7和H2020框架下的几个欧盟项目设定了共同将其产生的信息输入eNanoMapper数据库的目标。因此,多年来,eNanoMapper数据库已经扩展了不同质量的数据,这取决于输入时的现有知识。这些活动是高度相关的,因为负面结果往往不公布。在这里,我们回顾了eNanoMapper数据库下的NanoInformaTIX实例,该数据库托管来自9个EU计划的数据。我们从监管的角度评估了每个实验条目的数据质量和数据使用的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A systematic quality evaluation and review of nanomaterial genotoxicity studies: a regulatory perspective.

A systematic quality evaluation and review of nanomaterial genotoxicity studies: a regulatory perspective.

A systematic quality evaluation and review of nanomaterial genotoxicity studies: a regulatory perspective.

A systematic quality evaluation and review of nanomaterial genotoxicity studies: a regulatory perspective.

The number of publications in the field of nanogenotoxicology and the amount of genotoxicity data on nanomaterials (NMs) in several databases generated by European Union (EU) funded projects have increased during the last decade. In parallel, large research efforts have contributed to both our understanding of key physico-chemical (PC) parameters regarding NM characterization as well as the limitations of toxicological assays originally designed for soluble chemicals. Hence, it is becoming increasingly clear that not all of these data are reliable or relevant from the regulatory perspective. The aim of this systematic review is to investigate the extent of studies on genotoxicity of NMs that can be considered reliable and relevant by current standards and bring focus to what is needed for a study to be useful from the regulatory point of view. Due to the vast number of studies available, we chose to limit our search to two large groups, which have raised substantial interest in recent years: nanofibers (including nanotubes) and metal-containing nanoparticles. Focusing on peer-reviewed publications, we evaluated the completeness of PC characterization of the tested NMs, documentation of the model system, study design, and results according to the quality assessment approach developed in the EU FP-7 GUIDEnano project. Further, building on recently published recommendations for best practices in nanogenotoxicology research, we created a set of criteria that address assay-specific reliability and relevance for risk assessment purposes. Articles were then reviewed, the qualifying publications discussed, and the most common shortcomings in NM genotoxicity studies highlighted. Moreover, several EU projects under the FP7 and H2020 framework set the aim to collectively feed the information they produced into the eNanoMapper database. As a result, and over the years, the eNanoMapper database has been extended with data of various quality depending on the existing knowledge at the time of entry. These activities are highly relevant since negative results are often not published. Here, we have reviewed the NanoInformaTIX instance under the eNanoMapper database, which hosts data from nine EU initiatives. We evaluated the data quality and the feasibility of use of the data from a regulatory perspective for each experimental entry.

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来源期刊
CiteScore
15.90
自引率
4.00%
发文量
69
审稿时长
6 months
期刊介绍: Particle and Fibre Toxicology is an online journal that is open access and peer-reviewed. It covers a range of disciplines such as material science, biomaterials, and nanomedicine, focusing on the toxicological effects of particles and fibres. The journal serves as a platform for scientific debate and communication among toxicologists and scientists from different fields who work with particle and fibre materials. The main objective of the journal is to deepen our understanding of the physico-chemical properties of particles, their potential for human exposure, and the resulting biological effects. It also addresses regulatory issues related to particle exposure in workplaces and the general environment. Moreover, the journal recognizes that there are various situations where particles can pose a toxicological threat, such as the use of old materials in new applications or the introduction of new materials altogether. By encompassing all these disciplines, Particle and Fibre Toxicology provides a comprehensive source for research in this field.
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