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首页> 外文期刊>Hormones and behavior >Ovarian hormone replacement to aged ovariectomized female rats benefits acquisition of the morris water maze.
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Ovarian hormone replacement to aged ovariectomized female rats benefits acquisition of the morris water maze.

机译:卵巢激素替代老年卵巢切除的雌性大鼠有益于获得莫里斯水迷宫。

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摘要

Ovarian steroids have been suggested to aid in preserving cognitive functioning during aging in both humans and other animals. Spatial memory relies heavily on the hippocampus, a structure that is sensitive to the influence of both ovarian hormones and aging. The present study investigated the outcome of ovarian hormone replacement during aging on performance in a spatial version of the Morris water maze. Female rats were ovariectomized at 14 months of age and received one of three types of replacement prior to testing at 16 months: acute estrogen replacement (2 days), chronic estrogen replacement (28 days), or chronic replacement of both estrogen and progesterone (28 days). Control animals, which did not receive replacement hormones, displayed significant overnight forgetting during acquisition of the task. Ovarian hormone replacement, both acute and chronic, prevented forgetting. Previous studies have demonstrated that high levels of ovarian hormones are detrimental to performance of young adult female rats on this task (Warren and Juraska, 1997; Chesler and Juraska, 2000). The current study found an opposite effect during aging: ovarian hormone replacement was beneficial. This suggests that animal models of menopause, aimed at exploring the protective effects of hormone replacement therapy on cognition during human female aging, require the use of aged female animals.
机译:有人建议卵巢类固醇在人类和其他动物的衰老过程中有助于维持其认知功能。空间记忆在很大程度上依赖于海马体,该结构对卵巢激素和衰老的影响都很敏感。本研究调查了在空间版本的莫里斯水迷宫中卵巢激素替代对衰老的影响。雌性大鼠在14个月大时进行了卵巢切除,并在16个月进行测试之前接受了三种类型的替代之一:急性雌激素替代(2天),慢性雌激素替代(28天)或雌激素和孕激素的长期替代(28)天)。没有接受替代激素的对照动物在完成任务期间表现出明显的过夜遗忘。卵巢激素的替代,无论是急性的还是慢性的,都可以防止遗忘。先前的研究表明,高水平的卵巢激素会损害成年雌性大鼠的这项功能(Warren和Juraska,1997; Chesler和Juraska,2000)。当前的研究发现衰老过程中存在相反的作用:卵巢激素替代是有益的。这表明更年期的动物模型旨在探索激素替代疗法对人类女性衰老过程中认知的保护作用,因此需要使用老年雌性动物。

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