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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Development of a transgenic mouse model for carcinogenesis bioassays: evaluation of chemically induced skin tumors in Tg.AC mice.
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Development of a transgenic mouse model for carcinogenesis bioassays: evaluation of chemically induced skin tumors in Tg.AC mice.

机译:开发用于致癌生物测定的转基因小鼠模型:评估Tg.AC小鼠中化学诱导的皮肤肿瘤。

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Transgenic rodent models have emerged as potentially useful tools in the assessment of drug and chemical safety. The transgenic Tg.AC mouse carries an inducible v-Ha-ras oncogene that imparts the characteristic of genetically initiated skin to these animals. The induction of epidermal papillomas in the area of topically applied chemical agents, for duration of not more than 26 weeks, acts as a reporter phenotype that defines the activity of the test article. We describe here the activity of six chemicals that have been previously characterized for activity in the standard 2-year bioassay conducted by the National Toxicology Program (NTP). Homozygous female Tg.AC mice were treated with benzene (BZ), benzethonium chloride (BZTC), o-benzyl-p-chlorophenol (BCP), 2-chloroethanol (2-CE), lauric acid diethanolamine (LADA) and triethanolamine (TEA). BZ and LADA induced skin papillomas in a dose-dependent manner, while BCP induced papillomas only at the highest dose. BZTC, 2-CE, and TEA exhibited no activity. The correspondence of chemical activity in Tg.AC mice with that in the 2-year bioassay was high. A comparison of responsiveness to BZ and LADA was made between hemizygous and homozygous female Tg.AC mice. Both genotypes appear to be equally sensitive to maximum doses of active compounds. The results reported here indicate that the Tg.AC transgenic mouse model can discriminate between carcinogens and noncarcinogens and that both mutagenic and nonmutagenic chemicals can be detected. These studies provide support for the adjunctive use of the Tg.AC transgenic mouse skin tumor model in drug and chemical safety assessment and for the prediction of the carcinogenic potential of chemicals.
机译:转基因啮齿动物模型已经成为评估药物和化学安全性的潜在有用工具。转基因Tg.AC小鼠带有可诱导的v-Ha-ras癌基因,可将遗传引发的皮肤特征赋予这些动物。在不超过26周的持续时间内,在局部使用的化学试剂区域中诱导表皮乳头状瘤,起报告者表型的作用,从而决定了测试物品的活性。我们在这里描述了六种化学物质的活性,这些化学物质以前在国家毒理学计划(NTP)进行的标准2年生物分析中具有活性。纯合雌性Tg.AC小鼠用苯(BZ),苄索氯铵(BZTC),邻苄基对氯苯酚(BCP),2-氯乙醇(2-CE),月桂酸二乙醇胺(LADA)和三乙醇胺(TEA)处理)。 BZ和LADA以剂量依赖性方式诱导皮肤乳头状瘤,而BCP仅以最高剂量诱导乳头状瘤。 BZTC,2-CE和TEA没有显示任何活性。 Tg.AC小鼠的化学活性与2年生物测定的化学活性相对较高。比较了半合子和纯合雌性Tg.AC小鼠对BZ和LADA的反应性。两种基因型似乎都对最大剂量的活性化合物敏感。此处报道的结果表明,Tg.AC转基因小鼠模型可以区分致癌物和非致癌物,并且可以检测到致突变和非致突变化学物质。这些研究为在药物和化学安全性评估中辅助使用Tg.AC转基因小鼠皮肤肿瘤模型提供了支持,并为预测化学物质的致癌潜力提供了支持。

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