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用果蝇检测潜在致癌物。

Assaying potential carcinogens with Drosophila.

作者信息

Sobels F H, Vogel E

出版信息

Environ Health Perspect. 1976 Jun;15:141-6. doi: 10.1289/ehp.7615141.

Abstract

Drosophila offers many advantages for the detection of mutagenic activity of carcinogenic agents. It provides the quickest assay system for detecting mutations in animals today. Its generation time is short, and Drosophila is cheap and easy to breed in large numbers. The simple genetic testing methods give unequivocal answers about the whole spectrum of relevant genetic damage. A comparison of the detection capacity of assays sampling different kinds of genetic damage revealed that various substances are highly effective in inducing mutations but do not produce chromosome breakage effects at all, or only at much higher concentrations than those required for mutation induction. Of the different assay systems available, the classical sex-linked recessive lethal test deserves priority, in view of its superior capacity to detect mutagens. Of practical importance is also its high sensitivity, because a large number of loci in one fifth of the genome is tested for newly induced forward mutations, including small deletions. The recent findings that Drosophila is capable of carrying out the same metabolic activation reactions as the mammalian liver makes the organism eminently suitable for verifying results obtained in prescreening with fast microbial assay systems. An additional advantage in this respect is the capacity of Drosophila for detecting short-lived activation products, because intracellular metabolic activation appears to occur within the spermatids and spermatocytes.

摘要

果蝇在检测致癌剂的诱变活性方面具有许多优势。它为如今检测动物中的突变提供了最快的检测系统。其世代周期短,而且果蝇成本低且易于大量繁殖。简单的基因检测方法能对相关基因损伤的整个范围给出明确答案。对采样不同类型基因损伤的检测方法的检测能力进行比较后发现,各种物质在诱导突变方面非常有效,但根本不会产生染色体断裂效应,或者仅在比诱导突变所需浓度高得多的情况下才会产生。鉴于其检测诱变剂的卓越能力,在现有的不同检测系统中,经典的性连锁隐性致死试验应优先考虑。其高灵敏度也具有实际重要性,因为在基因组的五分之一中,大量基因座被检测是否有新诱导的正向突变,包括小缺失。最近的研究发现果蝇能够进行与哺乳动物肝脏相同的代谢活化反应,这使得该生物体非常适合验证使用快速微生物检测系统进行预筛选所获得的结果。在这方面的另一个优势是果蝇能够检测短寿命的活化产物,因为细胞内的代谢活化似乎发生在精子细胞和精母细胞内。

相似文献

1
Assaying potential carcinogens with Drosophila.用果蝇检测潜在致癌物。
Environ Health Perspect. 1976 Jun;15:141-6. doi: 10.1289/ehp.7615141.
2
The capacity of Drosophila for detecting relevant genetic damage.果蝇检测相关基因损伤的能力。
Mutat Res. 1976 Nov 1;41(1 spel. no):95-106. doi: 10.1016/0027-5107(76)90079-8.
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Investigation of coffee in Drosophila genotoxicity tests.果蝇遗传毒性试验中咖啡的研究。
Food Chem Toxicol. 1986 Aug;24(8):835-42. doi: 10.1016/0278-6915(86)90073-6.

本文引用的文献

7
Chemical mutagens in the human environment.人类环境中的化学诱变剂。
Nature. 1968 Jul 27;219(5152):385-7. doi: 10.1038/219385a0.

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