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纳米材料的遗传毒性:危险识别的改进策略和测试。

Genotoxicity of nanomaterials: refining strategies and tests for hazard identification.

出版信息

Environ Mol Mutagen. 2013 May;54(4):229-39. doi: 10.1002/em.21770. Epub 2013 Mar 21.

Abstract

A workshop addressing strategies for the genotoxicity assessment of nanomaterials (NMs) was held on October 23, 2010 in Fort Worth Texas, USA. The workshop was organized by the Environmental Mutagen Society and the International Life Sciences Institute (ILSI) Health and Environmental Sciences Institute. The workshop was attended by more than 80 participants from academia, regulatory agencies, and industry from North America, Europe and Japan. A plenary session featured summaries of the current status and issues related to the testing of NMs for genotoxic properties, as well as an update on international activities and regulatory approaches. This was followed by breakout sessions and a plenary session devoted to independent discussions of in vitro assays, in vivo assays, and the need for new assays or new approaches to develop a testing strategy for NMs. Each of the standard assays was critiqued as a resource for evaluation of NMs, and it became apparent that none was appropriate without special considerations or modifications. The need for nanospecific positive controls was questioned, as was the utility of bacterial assays. The latter was thought to increase the importance of including mammalian cell gene mutation assays into the test battery. For in-vivo testing, to inform the selection of appropriate tests or protocols, it was suggested to run repeated dose studies first to learn about disposition, potential accumulation, and possible tissue damage. It was acknowledged that mechanisms may be at play that a standard genotoxicity battery may not be able to capture.

摘要

一个关于纳米材料(NMs)遗传毒性评估策略的研讨会于 2010 年 10 月 23 日在美国德克萨斯州沃思堡举行。该研讨会由环境诱变剂学会和国际生命科学学会(ILSI)健康与环境科学学会组织。来自北美、欧洲和日本的学术界、监管机构和行业的 80 多名代表参加了研讨会。一个全体会议的特点是总结了目前与纳米材料遗传毒性特性测试相关的现状和问题,以及国际活动和监管方法的最新情况。随后,进行了分组讨论和全体会议,专门讨论了体外检测、体内检测以及新检测方法或新方法的需求,以制定纳米材料的测试策略。每个标准检测方法都被批评为评估纳米材料的资源,显然,没有特殊考虑或修改,任何一个方法都不适用。纳米特异性阳性对照的必要性受到质疑,细菌检测的实用性也受到质疑。人们认为,将哺乳动物细胞基因突变检测纳入检测组合中,可以增加后者的重要性。对于体内测试,为了选择合适的测试或方案,建议首先进行重复剂量研究,以了解处置、潜在积累和可能的组织损伤情况。人们认识到,标准遗传毒性电池可能无法捕捉到可能起作用的机制。

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