首页> 外文OA文献 >Low Doses of 17α-Estradiol and 17β-Estradiol Facilitate, Whereas Higher Doses of Estrone and 17α- and 17β-Estradiol Impair, Contextual Fear Conditioning in Adult Female Rats
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Low Doses of 17α-Estradiol and 17β-Estradiol Facilitate, Whereas Higher Doses of Estrone and 17α- and 17β-Estradiol Impair, Contextual Fear Conditioning in Adult Female Rats

机译:低剂量的17α-雌二醇和17β-雌二醇促进,而较高剂量的雌酮和17α-和17β-雌二醇损害,成年雌性大鼠的情境恐惧条件

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摘要

Estrogens are known to exert significant structural and functional effects in the hippocampus of adult rodents. In particular, 17β-estradiol can improve, impair, or have no effect on hippocampus-dependent learning and memory depending on dose and time of administration. The effects of other forms of estrogen, such as estrone and 17α-estradiol, on hippocampus-dependent learning have not been as thoroughly investigated. Therefore, the purpose of this study was to investigate the effects of 17β-estradiol, estrone, and 17α-estradiol at three different doses on two different tasks: hippocampus-dependent contextual fear conditioning and hippocampus-independent cued fear conditioning. Adult ovariectomized female rats were injected with one of the estrogens at one of the three doses 30 mins before conditioning to assess the rapid effects of these estrogens on acquisition. Twenty-four hours later memory for the context was examined and 1 h later memory for the cue (tone) was assessed. Levels of synaptophysin were examined in the dorsal hippocampus of rats to identify a potential synaptic correlate of hormonal effects on contextual fear conditioning. Low 17β-estradiol and 17α-estradiol enhanced, whereas high 17β-estradiol and 17α-estradiol impaired, contextual fear conditioning. Only the middle dose of estrone severely impaired contextual fear conditioning. Estrogens did not alter performance in the hippocampus-independent cued task. Synaptophysin expression was increased by estrone (at a middle and high dose) and 17β-estradiol (at a middle dose) in the CA3 region of the hippocampus and was not correlated with cognition. The results of this study indicate that estradiol can positively or negatively influence hippocampus-dependent learning and memory, whereas estrone impairs hippocampus-dependent learning and memory in a dose-dependent manner. These results have important therapeutic implications, as estrone, a main component of a widely used hormone replacement therapy, was shown to have either a negative effect or no effect on learning and memory. It may be possible to use 17α-estradiol and lower doses of estrogens as potential alternatives in hormone replacement therapies.
机译:已知雌激素在成年啮齿动物的海马中发挥重要的结构和功能作用。特别地,取决于给药剂量和时间,17β-雌二醇可以改善,削弱或对依赖海马的学习和记忆没有影响。尚未充分研究其他形式的雌激素,例如雌酮和17α-雌二醇对海马依赖性学习的影响。因此,本研究的目的是研究三种不同剂量的17β-雌二醇,雌酮和17α-雌二醇对两项不同任务的影响:海马依赖性上下文恐惧调节和海马依赖性暗示恐惧调节。调理前,以30分钟的三剂之一向雌性卵巢切除的成年雌性大鼠注射其中一种雌激素,以评估这些雌激素对采集的快速作用。二十四小时后,检查该上下文的记忆,并评估一小时后该提示(音调)的记忆。在大鼠背海马中检查突触素的水平,以鉴定激素对情境恐惧状况的潜在突触相关性。低17β-雌二醇和17α-雌二醇增强,而高17β-雌二醇和17α-雌二醇削弱了情境恐惧调节。仅中剂量的雌酮会严重损害情境恐惧条件。雌激素没有改变海马独立提示任务的表现。在海马CA3区,雌酮(中等剂量和高剂量)和17β-雌二醇(中等剂量)使突触素的表达增加,并且与认知能力无关。这项研究的结果表明,雌二醇可以正面或负面地影响海马依赖的学习和记忆,而雌酮则以剂量依赖的方式损害海马依赖的学习和记忆。这些结果具有重要的治疗意义,因为雌酮是广泛使用的激素替代疗法的主要成分,已显示对学习和记忆有负面影响或没有影响。在激素替代疗法中可能使用17α-雌二醇和较低剂量的雌激素作为潜在的替代品。

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