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生长激素释放激素基因敲除小鼠长期联合使用生长激素释放激素类似物和生长激素促分泌素的效果

Effects of combined long-term treatment with a growth hormone-releasing hormone analogue and a growth hormone secretagogue in the growth hormone-releasing hormone knock out mouse.

作者信息

Fintini Danilo, Alba Maria, Schally Andrew V, Bowers Cyril Y, Parlow A F, Salvatori Roberto

机构信息

Department of Medicine, Division of Endocrinology, and the Ilyssa Center for Molecular and Cellular Endocrinology, Johns Hopkins University School of Medicine, Baltimore, MD, USA.

出版信息

Neuroendocrinology. 2005;82(3-4):198-207. doi: 10.1159/000092520. Epub 2006 Apr 3.

Abstract

GH secretagogues (GHS) are synthetic ghrelin receptor agonists that stimulate GH secretion. It is not clear whether they act predominantly by stimulating the secretion of hypothalamic growth hormone-releasing hormone (GHRH), or directly on the somatotrope cells. In addition, it is not known whether combined treatment with GHRH and GHS has synergistic effects on growth. To address these questions, we used the GH-deficient GHRH knock out (GHRHKO) mouse model, which has severe somatotrope cell hypoplasia. We treated GHRHKO mice for 5 weeks (from week 1 to week 6 of age) with the GHRH analogue JI-38 alone, or in combination with a GHS (GHRP-2), and at the end of the treatment we examined their response to an acute stimulus with GHRP-2 or GHRP-2 plus JI-38. We used placebo-treated GHRHKO mice and animals heterozygous for the GHRHKO allele as controls. Animals treated with JI-38+GHRP-2 reached higher body length and weight than animals treated with JI-38 alone. All the animals receiving JI-38 (with or without GHRP-2) showed similar correction of somatotrope cell hypoplasia. None of the GHRHKO animals showed a serum GH response to the acute stimulation with GHRP-2 alone, while both treated groups responded to the combined test with JI-38 + GHRP-2. These data demonstrate that in GHRHKO mice, GHRP-2 has a growth-stimulating effect that augments the response induced by JI-38. In addition, the presence of GHRH seems necessary for the stimulation of GH secretion by GHRP-2.

摘要

生长激素促分泌素(GHS)是一类刺激生长激素(GH)分泌的合成型胃饥饿素受体激动剂。目前尚不清楚它们主要是通过刺激下丘脑生长激素释放激素(GHRH)的分泌起作用,还是直接作用于生长激素细胞。此外,GHRH与GHS联合治疗对生长是否具有协同作用也尚不明确。为解决这些问题,我们使用了生长激素缺乏的GHRH基因敲除(GHRHKO)小鼠模型,该模型存在严重的生长激素细胞发育不全。我们用GHRH类似物JI-38单独或与GHS(GHRP-2)联合处理GHRHKO小鼠5周(从1周龄至6周龄),在治疗结束时,检测它们对GHRP-2或GHRP-2加JI-38急性刺激的反应。我们使用接受安慰剂处理的GHRHKO小鼠和GHRHKO等位基因杂合动物作为对照。用JI-38 + GHRP-2处理的动物比单独用JI-38处理的动物达到更高的体长和体重。所有接受JI-38(无论有无GHRP-2)处理的动物对生长激素细胞发育不全的纠正程度相似。单独用GHRP-2进行急性刺激时,没有一只GHRHKO动物出现血清生长激素反应,而两个治疗组对JI-38 + GHRP-2联合试验均有反应。这些数据表明,在GHRHKO小鼠中,GHRP-2具有生长刺激作用,可增强JI-38诱导的反应。此外,GHRH的存在似乎是GHRP-2刺激生长激素分泌所必需的。

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