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雄性大鼠大脑中神经内分泌系统的衰老:受体机制与类固醇代谢

Ageing of the neuroendocrine system in the brain of male rats: receptor mechanisms and steroid metabolism.

作者信息

Piva F, Celotti F, Dondi D, Limonta P, Maggi R, Messi E, Negri-Cesi P, Zanisi M, Motta M, Martini L

机构信息

Department of Endocrinology, University of Milan, Italy.

出版信息

J Reprod Fertil Suppl. 1993;46:47-59.

PMID:8391083
Abstract

The work described in this article gives information on the effects of ageing on the hypothalamo-pituitary-testicular axis in rats. The hypothalami of young and old male rats contain similar amounts of luteinizing-hormone-releasing hormone (LHRH); when perifused in vitro they release comparable amounts of LHRH under basal conditions and in response to K+. The addition of an LHRH analogue to the perifusion medium blocks the release of LHRH induced by K+ from the hypothalami of young and old male rats, indicating that the ultrashort feedback mechanism controlling LHRH release functions normally in aged male rats. Ageing also exerts important effects on the density of mu- and kappa-opioid receptors in the brain. The number of hypothalamic mu-opioid receptors was significantly decreased in aged animals; a replacement treatment with testosterone does not reverse this decrease, indicating that the decline of hypothalamic mu receptors and of serum titres of testosterone in old rats are independent phenomena. The number of kappa-opioid receptors in the brain increases in the amygdala and in the thalamus with ageing. Apparently ageing does not influence the number of delta receptors in any of the brain areas investigated. The number of pituitary LHRH receptors decreases in old animals, which might explain the low serum concentration of gonadotrophins in aged rats caused by an inadequate response of the pituitary to hypothalamic LHRH. The impaired secretion of testosterone in aged male rats is accompanied by an increase in the number of testicular LHRH receptors, indicating that the intratesticular mechanisms controlling testosterone release also undergo significant alterations during ageing. The rate of conversion of testosterone to dihydrotestosterone (DHT) and 5 alpha-androstane-3 alpha, 17 beta-diol (3 alpha-diol) is the same in the hypothalami of young and old rats. However, the yields of DHT obtained from the pituitaries of aged male rats are significantly lower than those recorded in the pituitaries of young animals. These results show that the enzymes necessary for metabolizing testosterone via the 5 alpha-reductase pathway are maintained both in the hypothalamus and in the anterior pituitary of aged male rats. However, the 5 alpha-reductase activity of the anterior pituitary of senescent animals appears to be lower than that in the younger controls.

摘要

本文所述研究给出了衰老对大鼠下丘脑 - 垂体 - 睾丸轴影响的相关信息。年轻和老年雄性大鼠的下丘脑所含促黄体生成激素释放激素(LHRH)量相似;在体外灌流时,它们在基础条件下以及对钾离子(K⁺)反应时释放的LHRH量相当。向灌流培养基中添加LHRH类似物可阻断K⁺诱导的年轻和老年雄性大鼠下丘脑释放LHRH,这表明控制LHRH释放的超短反馈机制在老年雄性大鼠中功能正常。衰老对大脑中μ和κ阿片受体的密度也有重要影响。老年动物下丘脑的μ阿片受体数量显著减少;用睾酮替代治疗并不能逆转这种减少,这表明老年大鼠下丘脑μ受体的减少和血清睾酮水平的下降是独立现象。随着衰老,杏仁核和丘脑的大脑κ阿片受体数量增加。显然,衰老不影响所研究的任何脑区中δ受体的数量。老年动物垂体LHRH受体数量减少,这可能解释了老年大鼠中促性腺激素血清浓度低的原因,即垂体对下丘脑LHRH反应不足。老年雄性大鼠睾酮分泌受损伴随着睾丸LHRH受体数量增加,这表明控制睾酮释放的睾丸内机制在衰老过程中也发生了显著改变。年轻和老年大鼠下丘脑将睾酮转化为双氢睾酮(DHT)和5α - 雄烷 - 3α,17β - 二醇(3α - 二醇)的速率相同。然而,老年雄性大鼠垂体中获得的DHT产量显著低于年轻动物垂体中的记录值。这些结果表明,在老年雄性大鼠的下丘脑和垂体前叶中,通过5α - 还原酶途径代谢睾酮所需的酶得以维持。然而,衰老动物垂体前叶的5α - 还原酶活性似乎低于年轻对照动物。

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