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自发性高血压大鼠的青春期延迟涉及原发性卵巢功能衰竭,且与下丘脑KiSS-1/GPR54/促性腺激素释放激素系统无关。

Delayed puberty in spontaneously hypertensive rats involves a primary ovarian failure independent of the hypothalamic KiSS-1/GPR54/GnRH system.

作者信息

Pinilla L, Castellano J M, Romero M, Tena-Sempere M, Gaytán F, Aguilar E

机构信息

Medical Research Council Human Reproductive Sciences Unit, Queen's Medical Research Institute, Edinburgh, United Kingdom.

出版信息

Endocrinology. 2009 Jun;150(6):2889-97. doi: 10.1210/en.2008-1381. Epub 2009 Feb 19.

Abstract

Spontaneously hypertensive (SH) rats, extensively used as experimental models of essential human hypertension, display important alterations in the neuroendocrine reproductive axis, which manifest as markedly delayed puberty onset in females but whose basis remains largely unknown. We analyze herein in female SH rats: 1) possible alterations in the expression and function of KiSS-1/GPR54 and GnRH/GnRH-receptor systems, 2) the integrity of feedback mechanisms governing the hypothalamic-pituitary-ovarian axis, and 3) the control of ovarian function by gonadotropins. Our data demonstrate that, despite overtly delayed puberty, no significant decrease in hypothalamic KiSS-1, GPR54, or GnRH mRNA levels was detected in this strain. Likewise, in vivo gonadotropin responses to ovariectomy and systemic kisspeptin-10 or GnRH administration, as well as in vitro gonadotropin responses to GnRH, were fully preserved in SH rats. Moreover, circulating LH levels were grossly conserved during prepubertal maturation, whereas FSH levels were even enhanced from d 20 postpartum onwards. In striking contrast, ovarian weight and hormone (progesterone and testosterone) responses to human chorionic gonadotropin (CG) in vitro were profoundly decreased in SH rats, with impaired follicular development and delayed ovulation at puberty. Such reduced hormonal responses to human CG could not be attributed to changes in LH/CG or FSH-receptor mRNA expression but might be linked to blunted P450scc, 3beta-hydroxy steroid dehydrogenase, and aromatase mRNA levels in ovaries from SH rats. In conclusion, our results indicate that the expression and function of KiSS-1/GPR54 and GnRH/GnRH-receptor systems is normal in SH rats, whereas ovarian development, steroidogenesis, and responsiveness to gonadotropins are strongly compromised.

摘要

自发性高血压(SH)大鼠被广泛用作人类原发性高血压的实验模型,其神经内分泌生殖轴存在重要改变,表现为雌性大鼠青春期明显延迟,但其原因仍 largely 未知。我们在此分析雌性 SH 大鼠:1)KiSS-1/GPR54 和 GnRH/GnRH 受体系统的表达和功能可能存在的改变;2)下丘脑 - 垂体 - 卵巢轴反馈机制的完整性;3)促性腺激素对卵巢功能的控制。我们的数据表明,尽管青春期明显延迟,但在该品系中未检测到下丘脑 KiSS-1、GPR54 或 GnRH mRNA 水平有显著下降。同样,在 SH 大鼠中,促性腺激素对卵巢切除术、全身注射 kisspeptin-10 或 GnRH 的体内反应,以及对 GnRH 的体外促性腺激素反应均完全保留。此外,青春期前成熟过程中循环 LH 水平总体保持不变,而 FSH 水平从产后第 20 天起甚至升高。与之形成鲜明对比的是,SH 大鼠体外对人绒毛膜促性腺激素(CG)的卵巢重量和激素(孕酮和睾酮)反应显著降低,青春期卵泡发育受损且排卵延迟。这种对人 CG 的激素反应降低不能归因于 LH/CG 或 FSH 受体 mRNA 表达的变化,而可能与 SH 大鼠卵巢中 P450scc、3β-羟基类固醇脱氢酶和芳香化酶 mRNA 水平降低有关。总之,我们的结果表明,SH 大鼠中 KiSS-1/GPR54 和 GnRH/GnRH 受体系统的表达和功能正常,而卵巢发育、类固醇生成以及对促性腺激素的反应受到严重损害。

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