长期暴露于低水平雌二醇及其对卵巢和生殖激素的影响:与衰老的比较

E. Gilbreath, S. MohanKumar, P. Balasubramanian, D. Agnew, PS Mohankumar
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引用次数: 4

摘要

雌性大鼠衰老的特征是一种被称为“持续发情”的状态,在这种状态下,大鼠无法排卵,卵巢多囊,雌激素水平适度升高。我们假设年轻动物长期暴露于低水平的E2可以产生类似于衰老动物的生殖变化。成年雌性大鼠被假植入(对照)或植入缓释E2 (20 ng/天)微丸,持续30、60或90天。以老年恒情(OCE)大鼠为对照。定期监测发情周期。治疗结束后,处死动物,采集干血进行激素测定,卵巢进行免疫组化。随着E2暴露时间的延长,幼龄动物呈无循环状态,而OCE大鼠则处于无循环状态。E2暴露后卵巢变得越来越囊性,与OCE大鼠相当;然而,外源性E2治疗后间质组织明显减少。外源性E2也降低了苗勒管抑制物质的表达,增加了巨噬细胞的浸润,但对卵巢细胞凋亡没有太大影响。e2处理的幼鼠血清睾酮水平下降,而OCE大鼠血清睾酮水平显著升高。在年轻和年老的动物中,暴露于E2的黄体生成素水平明显降低,但FSH水平没有明显降低。这些结果表明,即使是非常低剂量的E2也能在幼龄动物中引起类似衰老的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronic exposures to low levels of estradiol and their effects on the ovaries and reproductive hormones: Comparison with aging
Aging in female rats is characterized by a state called “constant estrous” in which rats are unable to ovulate, have polycystic ovaries and moderately elevated estrogen levels. We hypothesized that chronic exposure of young animals to low levels of E2 can produce reproductive changes similar to that seen in aging animals. Adult female rats were sham-implanted (control) or implanted with slow-release E2 (20 ng/day) pellets for 30, 60, or 90 days. Old constant estrous (OCE) rats were used for comparison. Estrous cyclicity was monitored periodically. At the end of treatment, animals were sacrificed, trunk blood was collected for hormone measurements and ovaries for immunohistochemistry. Young animals became acyclic with increasing duration of E2 exposure while OCE rats were in a state of acyclicity. Ovaries became increasingly more cystic with E2 exposure, and were comparable to OCE rats; however, there was a marked reduction in interstitial tissue with exogenous E2 treatment. Exogenous E2 also decreased Mullerian inhibiting substance expression, increased infiltration of macrophages without much impact on apoptosis in the ovaries. Serum testosterone levels decreased in E2-treated young animals, while it increased significantly in OCE rats. There was a marked reduction in LH but not FSH levels with E2 exposure in both young and old animals. These results indicate that even very low doses of E2 are capable of inducing aging-like changes in young animals.
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