Effect of Piperonyl Butoxide on Cell Replication and Xenobiotic Metabolism in the Livers of CD-1 Mice and F344 Rats

John C. Phillips , Roger J. Price , Morag E. Cunninghame , Tom G. Osimitz , Andrew Cockburn , Karl L. Gabriel , Fred J. Preiss , William H. Butler , Brian G. Lake
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引用次数: 22

Abstract

Male CD- 1 mice were fed diets containing 0 (control), 10, 30, 100, and 300 mg/kg/day piperonyl butoxide (PBO) and 0.05% sodium phenobarbital (NaPB) and male F344 rats were fed diets containing 0 (control), 100, 550, 1050, and 1850 mg/kg/day PBO and 0.5% NaPB for periods of 7 and 42 days. In both species PBO and NaPB increased relative liver weight and whereas PBO produced a midzonal (mouse) or periportal/midzonal (rat) hypertrophy, NaPB produced a centrilobular hypertrophy. In the rat, individual cell necrosis was also observed at 42 days after high doses of PBO. Replicative DNA synthesis, assessed as the hepatocyte labeling index following implantation of 7-day osmotic pumps containing 5-bromo-2′-deoxyuridine during Study Days 0–7 and 35-42, was increased in mice given 300 mg/kg/day PBO and NaPB for 7 days and in rats given 550 and 1050 mg/kg/day PBO and NaPB for 7 days and 1050 mg/kg/day PBO for 42 days. While PBO had no effect on body weights in mice, the body weights of rats given 550, 1050, and 1850 mg/kg/day PBO for 42 days were reduced to 92, 89, and 70% of control, respectively. PBO induced microsomal cytochrome P450 content and mixed function oxidase activities in the mouse and rat, although the effects were less marked than those produced by NaPB. In summary, this data demonstrates that PBO can produce liver enlargement in the mouse and the rat which is associated with induction of xenobiotic metabolism, hypertrophy, and hyperplasia. The hepatic effects of PBO in the mouse were similar to but less marked than those produced by NaPB. In the rat high doses of PBO were hepatotoxic and resulted in a marked reduction in body weight. Thus while the reported formation of eosinophilic nodules in mouse liver by PBO may occur by a mechanism(s) similar to that of NaPB and other nongenotoxic enzyme inducers, the reported tumor formation in rats at greater than the maximum tolerated dose is most likely associated with marked enzyme induction in conjunction with a regenerative hyperplasia resulting from PBO-induced hepatotoxicity.

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丁二醇胡椒酯对CD-1小鼠和F344大鼠肝脏细胞复制和外源代谢的影响
雄性CD- 1小鼠分别饲喂0(对照)、10、30、100和300 mg/kg/d的胡椒酰丁醇(PBO)和0.05%苯巴比多钠(NaPB),雄性F344大鼠分别饲喂0(对照)、100、550、1050和1850 mg/kg/d的PBO和0.5% NaPB,试验期为7和42 d。在这两个物种中,PBO和NaPB都增加了相对肝脏重量,而PBO产生中区(小鼠)或门脉周围/中区(大鼠)肥大,NaPB产生小叶中心肥大。在大鼠中,高剂量PBO后42天也观察到单个细胞坏死。在研究第0-7天和第35-42天植入含有5-溴-2 ' -脱氧尿苷的7天渗透泵后的肝细胞标记指数显示,在给予300 mg/kg/天PBO和NaPB的小鼠中,给予550和1050 mg/kg/天PBO和NaPB的小鼠中,给予7天PBO和NaPB的大鼠中,给予1050 mg/kg/天PBO的大鼠中,给予42天PBO的大鼠中,复制性DNA合成增加。虽然PBO对小鼠体重没有影响,但连续42天给予550、1050和1850 mg/kg/天PBO的大鼠体重分别减少到对照组的92%、89%和70%。PBO诱导小鼠和大鼠微粒体细胞色素P450含量和混合功能氧化酶活性,但影响不如NaPB显著。综上所述,这些数据表明PBO可以使小鼠和大鼠的肝脏增大,并与诱导异种代谢、肥大和增生有关。PBO对小鼠肝脏的影响与NaPB相似,但不那么明显。在大鼠中,高剂量的PBO具有肝毒性,并导致体重明显减轻。因此,虽然报道的PBO在小鼠肝脏中形成嗜酸性结节的机制可能与NaPB和其他非基因毒性酶诱导剂类似,但报道的大于最大耐受剂量的大鼠肿瘤形成很可能与显著的酶诱导以及PBO诱导的肝毒性引起的再生增生有关。
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