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Comparison of mechanisms of action of luteinizing hormone-releasing hormone (LHRH) antagonist cetrorelix and LHRH agonist triptorelin on the gene expression of pituitary LHRH receptors in rats

机译:黄体生成激素释放激素(LHRH)拮抗剂cetrorelix和LHRH激动剂曲普瑞林对大鼠垂体LHRH受体基因表达的作用机制比较

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摘要

The mechanisms through which luteinizing hormone (LH)-releasing hormone (LHRH) antagonists suppress pituitary gonadotroph functions and LHRH-receptor (LHRH-R) expression are incompletely understood. Consequently, we investigated the direct effect of LHRH antagonist cetrorelix in vitro on the expression of the pituitary LHRH-R gene and its ability to counteract the exogenous LHRH and the agonist triptorelin in the regulation of this gene. We also compared the effects of chronic administration of cetrorelix and triptorelin on the LHRH-R mRNA level and gonadotropin secretion in ovariectomized (OVX) and normal female rats. The exposure of pituitary cells in vitro to 3-min pulses of 1 nM LHRH or 0.1 nM triptorelin for 5 h increased the LHRH-R mRNA level by 77–88%. Continuous perfusion of the cells with 50 nM cetrorelix did not cause any significant changes, but prevented the stimulatory effect of LHRH pulses on the receptor mRNA expression. In OVX rats, 10 days after administration of a depot formulation of cetrorelix, releasing 100 μg of peptide daily, the elevated LHRH-R mRNA level was decreased by 73%, whereas daily injection of 100 μg of triptorelin caused a 41% suppression. In normal female rats, cetrorelix treatment suppressed the LHRH-R mRNA level by 33%, but triptorelin increased it by 150%. The highly elevated serum LH levels in OVX rats and the normal LH concentration of cycling rats were rapidly and completely suppressed by cetrorelix. Triptorelin decreased the serum LH in OVX rats to the precastration level, but had no effect on basal LH in normal rats. Our results confirm that LHRH antagonists, such as cetrorelix, inhibit the gene expression of pituitary LHRH-R indirectly, by counteracting the stimulatory effect of LHRH. A rapid suppression of serum LH by LHRH antagonists would be advantageous in the treatment of sex hormone-dependent tumors and other conditions.
机译:促黄体激素释放激素(LHRH)拮抗剂抑制垂体促性腺激素功能和LHRH受体(LHRH-R)表达的机制尚不完全清楚。因此,我们研究了LHRH拮抗剂cetrorelix在体外对垂体LHRH-R基因表达的直接影响及其在调节该基因中抵抗外源LHRH和激动剂曲普瑞林的能力。我们还比较了长期服用cetrorelix和triptorelin对卵巢切除(OVX)和正常雌性大鼠LHRH-R mRNA水平和促性腺激素分泌的影响。垂体细胞在体外暴露于3分钟的1 nM LHRH或0.1 nM雷普瑞林脉冲中5小时,使LHRH-R mRNA水平增加77-88%。用50 nM cetrorelix连续灌注细胞不会引起任何显着变化,但阻止了LHRH脉冲对受体mRNA表达的刺激作用。在OVX大鼠中,在使用头孢曲瑞克长效制剂给药10天后,每天释放100μg肽,升高的LHRH-R mRNA水平降低了73%,而每天注射100μg雷公藤杆菌素引起41%的抑制。在正常雌性大鼠中,cetrorelix处理可将LHRH-R mRNA水平抑制33%,而曲普瑞林则可将其抑制150%。 cetrorelix可快速,完全地抑制OVX大鼠中血清LH水平的高度升高和自行车大鼠的正常LH浓度。雷公藤甲素可将OVX大鼠的血清LH降低至cast没水平,但对正常大鼠的基础LH没有影响。我们的结果证实,LHRH拮抗剂(例如cetrorelix)可通过抵消LHRH的刺激作用来间接抑制垂体LHRH-R的基因表达。 LHRH拮抗剂快速抑制血清LH在治疗性激素依赖性肿瘤和其他疾病方面将是有利的。

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