Developmental toxicity of estrogenic chemicals on rodents and other species

T. Iguchi, Hajime Watanabe, Y. Katsu, Takeshi Mizutani, S. Miyagawa, A. Suzuki, S. Kohno, K. Sone, Hideo Kato
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引用次数: 37

Abstract

ABSTRACT  Antenatal sex‐hormone exposure induces lesions in mouse reproductive organs, which are similar to those in humans exposed in utero to a synthetic estrogen, diethylstilbestrol. The developing organisms including rodents, fish and amphibians are particularly sensitive to exposure to estrogenic chemicals during a critical window. Exposure to estrogens during the critical period induces long‐term changes in reproductive as well as non‐reproductive organs, including persistent molecular alterations. The antenatal mouse model can be utilized as an indicator of possible long‐term consequences of exposure to exogenous estrogenic compounds including possible environmental endocrine disrupters. Many chemicals released into the environment potentially disrupt the endocrine system in wildlife and humans, some of which exhibit estrogenic activity by binding to the estrogen receptors. Estrogen responsive genes, therefore, need to be identified to understand the molecular basis of estrogenic actions. In order to understand molecular mechanisms of estrogenic chemicals on developing organisms, we are identifying estrogen responsive genes using cDNA microarray, quantitative RT‐PCR, and differential display methods, and genes related to the estrogen‐independent vaginal changes in mice induced by estrogens during the critical window. In this review, discussion of our own findings related to endocrine distuptor issue will be provided.
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雌激素化学物质对啮齿动物和其他物种的发育毒性
产前性激素暴露会导致小鼠生殖器官损伤,这与人类在子宫内暴露于合成雌激素己烯雌酚相似。包括啮齿动物、鱼类和两栖动物在内的发育中的生物在一个关键的窗口期对雌激素化学物质的暴露特别敏感。在关键时期暴露于雌激素会引起生殖器官和非生殖器官的长期变化,包括持续的分子改变。产前小鼠模型可以作为暴露于外源性雌激素化合物(包括可能的环境内分泌干扰物)可能产生的长期后果的指标。释放到环境中的许多化学物质可能会破坏野生动物和人类的内分泌系统,其中一些化学物质通过与雌激素受体结合而表现出雌激素活性。因此,需要鉴定雌激素应答基因以了解雌激素作用的分子基础。为了了解雌激素化学物质对发育中的生物的分子机制,我们正在使用cDNA微阵列、定量RT - PCR和差异显示方法鉴定雌激素响应基因,以及雌激素在关键窗口期诱导小鼠雌激素不依赖阴道变化的相关基因。在这篇综述中,我们将讨论自己在内分泌干扰物问题上的发现。
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