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In vitro genotoxicity testing using the micronucleus assay in cell lines, human lymphocytes and 3D human skin models.

机译:在细胞系,人淋巴细胞和3D人皮肤模型中使用微核检测进行体外遗传毒性测试。

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摘要

The toxicological relevance of the micronucleus (MN) test is well defined: it is a multi-target genotoxic endpoint, assessing not only clastogenic and aneugenic events but also some epigenetic effects, which is simple to score, accurate, applicable in different cell types. In addition, it is predictive for cancer, amenable for automation and allows good extrapolation for potential limits of exposure or thresholds and it is easily measured in experimental both in vitro and in vivo systems. Implementation of in vitro micronucleus (IVMN) assays in the battery of tests for hazard and risk assessment of potential mutagens/carcinogens is therefore fully justified. Moreover, the final draft of an OECD guideline became recently available for this test. In this review, we discuss the prerequisites for an acceptable MN assay, including the cell as unit of observation, importance of cell membranes, the requirement of a mitotic or meiotic division and the assessment of cell division in the presence of the test substance. Furthermore, the importance of adequate design of protocols is highlighted and new developments, in particular the in vitro 3D human skin models, are discussed. Finally, we address future research perspectives including the possibility of a combined primary 3D human skin and primary human whole blood culture system, and the need for adaptation of the IVMN assays to assess the genotoxic potential of new materials, in particular nanomaterials.
机译:微核(MN)测试的毒理学相关性得到了很好的定义:这是一个多目标遗传毒性终点,不仅评估了致裂事件和成瘤事件,而且还评估了一些表观遗传学效应,其评分简单,准确,适用于不同细胞类型。此外,它可以预测癌症,适合自动化,并且可以对潜在的暴露极限或阈值进行良好的推断,并且可以在体外和体内实验系统中轻松进行测量。因此,完全有理由在一系列用于潜在诱变剂/致癌物的危害和风险评估的测试中实施体外微核(IVMN)分析。此外,经合组织准则的最终草案最近可用于该测试。在这篇综述中,我们讨论了可接受的MN测定的先决条件,包括作为观察单位的细胞,细胞膜的重要性,有丝分裂或减数分裂分裂的要求以及在存在测试物质的情况下对细胞分裂的评估。此外,强调了适当设计方案的重要性,并讨论了新的发展,特别是体外3D人体皮肤模型。最后,我们着眼于未来的研究观点,包括将原代3D人体皮肤和原代人全血培养系统结合起来的可能性,以及需要对IVMN分析进行调整以评估新材料(尤其是纳米材料)的遗传毒性潜力。

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