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利用体内生化参数进行啮齿动物致癌性预测分析:操作特性与互补性

Predictive assay for rodent carcinogenicity using in vivo biochemical parameters: operational characteristics and complementarity.

作者信息

Kitchin K T, Brown J L, Kulkarni A P

机构信息

Carcinogenesis and Metabolism Branch, U.S. Environmental Protection Agency, Research Triangle Park, NC 27711.

出版信息

Mutat Res. 1992 Apr;266(2):253-72. doi: 10.1016/0027-5107(92)90193-6.

Abstract

111 chemicals of known rodent carcinogenicity (49 carcinogens, 62 noncarcinogens), including many promoters of carcinogenesis, nongenotoxic carcinogens, hepatocarcinogens, and halogenated hydrocarbons, were selected for study. The chemicals were administered by gavage in two dose levels to female Sprague-Dawley rats. The effects of these 111 chemicals on 4 biochemical assays (hepatic DNA damage by alkaline elution (DD), hepatic ornithine decarboxylase activity (ODC), serum alanine aminotransferase activity (ALT), and hepatic cytochrome P-450 content (P450)) were determined. Composite parameters are defined as follows: CP = [ODC and P450), CT = [ALT and ODC), and TS = [DD or CP or CT]. The operational characteristics of TS for predicting rodent cancer were sensitivity 55%, specificity 87%, positive predictivity 77%, negative predictivity 71%, and concordance 73%. For these chemicals, the 73% concordance of this study was superior to the concordance obtained from published data from other laboratories on the Ames test (53%), structural alerts (SA) (46%), chromosome aberrations in Chinese hamster ovary cells (ABS) (48%), cell mutation in mouse lymphoma 15178Y cells (MOLY) (52%), and sister-chromatid exchange in Chinese hamster ovary cells (SCE) (60%). The 4 in vivo biochemical assays were complementary to each other. The composite parameter TS also shows complementarity to all 5 other predictors of rodent cancer examined in this paper. For example, the Ames test alone has a concordance of only 53%. In combination with TS, the concordance is increased to 62% (Ames or TS) or to 63% (Ames and TS). For the 67 chemicals with data available for SA, the concordance for predicting rodent carcinogenicity was 47% (for SA alone), 54% (for SA or TS), and 66% (for SA and TS). These biochemical assays will be useful: (1) to predict rodent carcinogenicity per se, (2) to 'confirm' the results of short-term mutagenicity tests by the high specificity mode of the biochemical assays (the specificity and positive predictivity are both 100%), and (3) to be a component of future complementary batteries of tests for predicting rodent carcinogenicity.

摘要

选取了111种已知对啮齿动物具有致癌性的化学物质(49种致癌物、62种非致癌物),包括许多致癌促进剂、非遗传毒性致癌物、肝癌致癌物和卤代烃,用于研究。这些化学物质以两种剂量水平通过灌胃法给予雌性斯普拉格-道利大鼠。测定了这111种化学物质对4种生化检测指标(通过碱性洗脱法测定肝脏DNA损伤(DD)、肝脏鸟氨酸脱羧酶活性(ODC)、血清丙氨酸转氨酶活性(ALT)以及肝脏细胞色素P-450含量(P450))的影响。复合参数定义如下:CP = [ODC和P450],CT = [ALT和ODC],TS = [DD或CP或CT]。TS预测啮齿动物癌症的操作特性为:灵敏度55%,特异性87%,阳性预测值77%,阴性预测值71%,一致性73%。对于这些化学物质,本研究73%的一致性优于其他实验室发表的关于艾姆斯试验(53%)、结构警报(SA)(46%)、中国仓鼠卵巢细胞染色体畸变(ABS)(48%)、小鼠淋巴瘤15178Y细胞基因突变(MOLY)(52%)以及中国仓鼠卵巢细胞姐妹染色单体交换(SCE)(60%)的数据的一致性。这4种体内生化检测方法相互补充。复合参数TS与本文中检测的其他所有5种啮齿动物癌症预测指标也具有互补性。例如,仅艾姆斯试验的一致性仅为53%。与TS结合时,一致性提高到62%(艾姆斯试验或TS)或63%(艾姆斯试验和TS)。对于有SA数据的67种化学物质,预测啮齿动物致癌性的一致性为:单独SA为47%,SA或TS为54%,SA和TS为66%。这些生化检测方法将有以下用途:(1)本身用于预测啮齿动物致癌性;(2)通过生化检测的高特异性模式“确认”短期致突变性试验的结果(特异性和阳性预测值均为100%);(3)作为未来预测啮齿动物致癌性的互补检测组合的一个组成部分。

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