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小鼠在产前暴露于苯并[a]芘和无机铅后的生育能力。

Fertility in mice after prenatal exposure to benzo[a]pyrene and inorganic lead.

作者信息

Kristensen P, Eilertsen E, Einarsdóttir E, Haugen A, Skaug V, Ovrebø S

机构信息

National Institute of Occupational Health, Oslo, Norway.

出版信息

Environ Health Perspect. 1995 Jun;103(6):588-90. doi: 10.1289/ehp.95103588.

Abstract

Experimental evidence suggests that inorganic lead and benzo[a]pyrene (BaP) suppress the development of primordial oocytes during fetal life. We examined the single and combined effects of prenatal exposure to BaP and moderate doses of lead. The fertility and ovarian morphology of F1 female NMRI mice in four treatment groups (nine mice per group) were investigated: control; lead (F0 given 1 g PbCl2/L in drinking water until mating); BaP (10 mg/kg body weight daily by oral intubation on days 7-16 of F0 pregnancy); and combined lead and BaP. F1 groups exposed prenatally to BaP either alone or in combination with inorganic lead showed markedly reduced fertility with few ovarian follicles compared to controls, whereas the group exposed to lead only had measures comparable to the controls. Mice exposed to both lead and BaP had a significantly longer gestation period (days to litter) compared to mice exposed only to BaP, lead, or controls. There is a nonsignificant indication that the compounds together further reduce number of offspring, number of litters, and litter size. These results suggest that lead and BaP have synergistic effects on impairment of fertility. The possibility of synergism may be of human relevance as inorganic lead and BaP are ubiquitous environmental pollutants.

摘要

实验证据表明,无机铅和苯并[a]芘(BaP)会抑制胎儿期原始卵母细胞的发育。我们研究了产前暴露于BaP和中等剂量铅的单一及联合效应。对四个处理组(每组9只小鼠)的F1代雌性NMRI小鼠的生育能力和卵巢形态进行了研究:对照组;铅暴露组(F0代小鼠在饮用水中给予1 g PbCl2/L直至交配);BaP暴露组(F0代小鼠在怀孕第7 - 16天每天经口灌胃给予10 mg/kg体重的BaP);以及铅和BaP联合暴露组。与对照组相比,产前单独或联合暴露于BaP的F1代组生育能力显著降低,卵巢卵泡数量很少,而仅暴露于铅的组各项指标与对照组相当。与仅暴露于BaP、铅或对照组的小鼠相比,同时暴露于铅和BaP的小鼠妊娠期(产仔天数)显著延长。有不显著的迹象表明,这两种化合物共同作用会进一步减少后代数量、产仔窝数和窝仔数。这些结果表明,铅和BaP对生育能力损害具有协同效应。由于无机铅和BaP是普遍存在的环境污染物,这种协同作用的可能性可能与人类相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccaf/1519139/bc9dec34e4f4/envhper00355-0065-a.jpg

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