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受体介导的乙炔雌二醇诱导大鼠睾丸细胞中的氧化性DNA损伤。

Receptor-mediated ethinylestradiol-induced oxidative DNA damage in rat testicular cells.

作者信息

Wellejus Anja, Loft Steffen

机构信息

Institute of Public Health, University of Copenhagen, Denmark.

出版信息

FASEB J. 2002 Feb;16(2):195-201. doi: 10.1096/fj.01-0385com.

Abstract

Estrogenic chemicals are suspected of affecting cancer risk and male reproduction, possibly involving oxidative DNA damage. In this study, formation of 7,8-dihydro-8-oxo-2'-deoxyguanosine (8-oxodG), was measured in testicular cells from rats after 17 alpha-ethinylestradiol (EE) exposure in vivo and in vitro after incubation with EE with or without an antiestrogen. In vivo, preadult (30-35 days) and adult (110-120 days) Wistar rats received 0, 2.8, or 56 mg EE/kg body weight as intraperitoneal injections (n=6). After 1 or 4 h, the 8-oxodG/10(6) dG ratio was measured in the liver, kidneys, and testes. Testes DNA analysis revealed an age-related effect (adult animals had a higher ratio than the young animals) and a concentration effect in preadult rats (increased EE-concentration caused increased ratio), but no time effect. No differences were found in the liver or kidneys. In vitro, testicular cells were isolated and incubated with EE concentrations ranging from 0.1 to 1000 nM. The results indicated an increase in 8-oxodG/10(6) dG from 0 to 10 nM estrogen. At 1000 nM, the level was close to control level. Coincubation of 10 nM EE (maximum damage) with an estrogen antagonist, ICI 182.780, abolished the effect at 10 nM, indicating that the damaging effect is estrogen receptor mediated.

摘要

雌激素类化学物质被怀疑会影响癌症风险和男性生殖功能,可能涉及氧化性DNA损伤。在本研究中,对体内暴露于17α-乙炔基雌二醇(EE)后的大鼠睾丸细胞以及体外与有或无抗雌激素的EE孵育后的大鼠睾丸细胞中7,8-二氢-8-氧代-2'-脱氧鸟苷(8-氧代dG)的形成进行了测定。在体内,未成年(30 - 35天)和成年(110 - 120天)的Wistar大鼠腹腔注射0、2.8或56 mg EE/kg体重(n = 6)。1或4小时后,测定肝脏、肾脏和睾丸中的8-氧代dG/10⁶dG比值。睾丸DNA分析显示存在年龄相关效应(成年动物的比值高于幼年动物)以及未成年大鼠中的浓度效应(EE浓度增加导致比值升高),但不存在时间效应。在肝脏或肾脏中未发现差异。在体外,分离睾丸细胞并与浓度范围为0.1至1000 nM的EE孵育。结果表明,从0至10 nM雌激素,8-氧代dG/10⁶dG增加。在1000 nM时,该水平接近对照水平。将10 nM EE(最大损伤)与雌激素拮抗剂ICI 182.780共同孵育,消除了10 nM时的效应,表明损伤效应是由雌激素受体介导的。

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