Perinatal ethinyl oestradiol alters mammary gland development in male and female Wistar rats

K. R. Mandrup, U. Hass, S. Christiansen, J. Boberg
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引用次数: 28

Abstract

Increased attention is being paid to human mammary gland development because of concerns for environmental influences on puberty onset and breast cancer development. Studies in rodents have showed a variety of changes in the mammary glands after perinatal exposure to endocrine disrupting chemicals, indicating progressed development of mammary glands when exposed to oestrogens early in life. However, laboratories use different parameters to evaluate the development of mammary glands, making studies difficult to compare. Moreover, studies of whole mounts in Wistar rats are lacking. In the present study, Wistar rats were exposed to 0, 5, 15 or 50 μg/kg of ethinyl oestradiol per day during gestation and lactation. A wide range of morphological parameters were evaluated in whole mounts of mammary glands from male and female offspring PD21–22. This study showed that in both male and female pre-pubertal Wistar rats, mammary gland development was accelerated after perinatal oestrogen exposure with increase in size, density and number of terminal end buds (TEBs). In female rats, the most sensitive parameters were the distance to the fifth gland, the relative growth towards the lymph node and the overall density. The sensitive endpoints in male rats were TEB numbers, both in the whole gland and in the zone C, the overall- and the highest density. The overall density was sensitive in both male and female rats and was considered a good representative of both branching and budding of the gland. The number of TEBs in zone C was representative of the number of TEBs in the whole gland. Further studies in older Wistar rats and with weak oestrogenic compounds could be performed to validate mammary gland examination as an endpoint in reproductive toxicity studies and to examine how early life environmental exposures may alter mammary gland development, disrupt lactation and alter susceptibility to breast cancer.

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围产期炔雌醇改变雄性和雌性Wistar大鼠乳腺发育
由于担心环境对青春期开始和乳腺癌发展的影响,人们越来越重视人类乳腺的发育。对啮齿动物的研究表明,围产期暴露于内分泌干扰化学物质后,乳腺发生了各种变化,这表明在生命早期暴露于雌激素时,乳腺的发育有所进展。然而,实验室使用不同的参数来评估乳腺的发育,使得研究难以比较。此外,缺乏对Wistar大鼠整个坐骑的研究。在本研究中,Wistar大鼠在妊娠和哺乳期每天分别暴露于0、5、15或50 μg/kg的乙炔雌二醇。对雄性和雌性后代PD21-22的乳腺进行了广泛的形态学参数评价。本研究表明,雌性和雄性青春期前Wistar大鼠在围产期雌激素暴露后,其乳腺发育均加快,终末芽(TEBs)的大小、密度和数量均增加。在雌性大鼠中,最敏感的参数是与第五腺的距离、向淋巴结的相对生长和总体密度。雄性大鼠的敏感终点为全腺和C区TEB数量、总密度和最高密度。在雄性和雌性大鼠中,总密度都很敏感,被认为是腺体分支和出芽的良好代表。C区teb的数量代表了整个腺体中teb的数量。在老年Wistar大鼠和弱雌激素化合物中进行进一步的研究,以验证乳腺检查作为生殖毒性研究的终点,并研究早期生活环境暴露如何改变乳腺发育、破坏泌乳和改变乳腺癌易感性。
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200
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6-12 weeks
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