首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Applicability and robustness of the hen's egg test for analysis of micronucleus induction (HET-MN): results from an inter-laboratory trial.
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Applicability and robustness of the hen's egg test for analysis of micronucleus induction (HET-MN): results from an inter-laboratory trial.

机译:鸡蛋试验对微核诱导分析(HET-MN)的适用性和鲁棒性:来自实验室间试验的结果。

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The hen's egg test for analysis of micronucleus formation (HET-MN) was developed several years ago to provide an alternative test system to the in vivo micronucleus test. In order to assess its applicability and robustness, a study was carried out at the University of Osnabrueck (lab A) and at the laboratories of Henkel AG & Co. KGaA (lab B). Following transfer of the method to lab B, a range of test substances that had been pre-tested at lab A, were tested at Henkel: the genotoxins cyclophosphamide, dimethylbenz(a)anthracene, methotrexate, acrylamide, azorubin, N-nitroso-dimethylamine and the non-genotoxins, orange G and isopropyl myristate. In a second phase, additional compounds with known in vivo properties were examined in both labs: the non-genotoxin, ampicillin, the "irrelevant" positives, isophorone and 2,4-dichlorophenol ("irrelevant" means positive in standard in vitro tests, but negative in vivo), the clastogen p-chloroaniline, and the aneugens carbendazim and vinorelbine. All substances were correctly predicted in both labs with respect to their in vivo genotoxic properties, indicating that the HET-MN may have an improved predictivity compared with current standard in vitro test systems. The results support the promising role of the HET-MN assay as a supplement to existing test batteries.
机译:用于分析微核形成的母鸡卵测试(HET-MN)是几年前开发的,旨在为体内微核测试提供替代测试系统。为了评估其适用性和鲁棒性,在奥斯纳布吕克大学(实验室A)和汉高股份公司KGaA实验室(实验室B)进行了研究。将方法转移到实验室B后,在汉高对一系列已在实验室A进行了预测试的测试物质进行了测试:遗传毒素环磷酰胺,二甲基苯并蒽,甲氨蝶呤,丙烯酰胺,偶氮红霉素,N-亚硝基二甲胺以及非遗传毒素,橙色G和肉豆蔻酸异丙酯。在第二阶段中,两个实验室都对具有已知体内特性的其他化合物进行了检查:非基因毒素,氨苄西林,“无关”阳性,异佛尔酮和2,4-二氯苯酚(“无关”是指在标准体外试验中呈阳性,但体内阴性),克拉斯托原对氯苯胺,多菌灵和长春瑞滨。在两个实验室中,就其体内遗传毒性特性而言,所有物质均得到了正确的预测,表明与目前的标准体外测试系统相比,HET-MN的预测性可能更高。结果支持HET-MN分析作为现有测试电池的补充的有希望的作用。

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