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在用丝裂霉素C或环磷酰胺急性处理后,黑头呆鱼(肥头鲦鱼)红细胞中微核的形成。

Formation of micronuclei in erythrocytes of the fathead minnow (Pimephales promelas) after acute treatment with mitomycin C or cyclophosphamide.

作者信息

Winter Matthew J, Ellis Lucy C J, Hutchinson Thomas H

机构信息

AstraZeneca Global Safety, Health and Environment, United Kingdom.

出版信息

Mutat Res. 2007 May 18;629(2):89-99. doi: 10.1016/j.mrgentox.2007.01.010. Epub 2007 Mar 1.

Abstract

Despite the widespread use of the fathead minnow in ecotoxicology, there have been relatively few studies on genotoxicity biomarkers in this small, warm-water fish species. Consequently, we investigated the effect of two known genotoxins, mitomycin C and cyclophosphamide, on micronucleus induction in spleen and peripheral blood erythrocytes of this species. Initially, 96-h experiments after intra-peritoneal (i.p.) injections of mitomycin C and cyclophosphamide were undertaken to determine the maximum tolerated dose (MTD). From these studies, MTDs of 10 and 400 mg/kg, respectively, were obtained: doses that were higher than those reported for other fish species. Next, an assessment of micronucleus induction at 1, 2, 4, 8 and 14 days after injection was undertaken for each compound at the MTD. Mitomycin C at 10 mg/kg significantly induced micronuclei in erythrocytes from the spleen, but not from the peripheral blood, at 8 and 14 days. In addition, the overall levels of micronuclei observed were lower than most previously published data from other fish species. In contrast to mitomycin C, treatment with 400 mg/kg cyclophosphamide failed to significantly induce micronuclei in erythrocytes from any of the tissues employed, in contrast to previous reports of significant induction in other species. The reasons for the apparent relative insensitivity of the fathead minnow to these clastogens, with respect to both MTDs and micronucleus induction, are not clear. The fathead minnow, however, has previously been described as relatively insensitive compared to other fish species with respect to selected carcinogens and cytochrome P450 inducers; the latter suggesting that the lack of a significant induction following cyclophosphamide exposure may be due to low metabolic activation in vivo. Consequently, further clarifying work is required to delineate the response shown, considering the extensive use of this species in ecotoxicology research and regulatory testing.

摘要

尽管黑头呆鱼在生态毒理学中被广泛应用,但针对这种小型温水鱼类的遗传毒性生物标志物的研究相对较少。因此,我们研究了两种已知的遗传毒素丝裂霉素C和环磷酰胺对该物种脾脏和外周血红细胞微核诱导的影响。首先,通过腹腔注射丝裂霉素C和环磷酰胺进行96小时实验,以确定最大耐受剂量(MTD)。从这些研究中,分别获得了10和400 mg/kg的MTD:这些剂量高于其他鱼类报道的剂量。接下来,对每种化合物在MTD下注射后1、2、4、8和14天的微核诱导情况进行了评估。10 mg/kg的丝裂霉素C在8天和14天时显著诱导了脾脏红细胞中的微核,但未诱导外周血红细胞中的微核。此外,观察到的微核总体水平低于大多数先前发表的其他鱼类数据。与丝裂霉素C相反,400 mg/kg环磷酰胺处理未能显著诱导所用任何组织红细胞中的微核,这与先前其他物种显著诱导的报道相反。关于黑头呆鱼在MTD和微核诱导方面对这些断裂剂明显相对不敏感的原因尚不清楚。然而,先前已描述黑头呆鱼与其他鱼类相比,对某些致癌物和细胞色素P450诱导剂相对不敏感;后者表明环磷酰胺暴露后缺乏显著诱导可能是由于体内代谢活化低。因此,考虑到该物种在生态毒理学研究和监管测试中的广泛应用,需要进一步开展明确工作来描述所显示的反应。

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