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下丘脑内生长激素反馈:大鼠从侏儒症到肢端肥大症的转变

Intrahypothalamic growth hormone feedback: from dwarfism to acromegaly in the rat.

作者信息

Pellegrini E, Carmignac D F, Bluet-Pajot M T, Mounier F, Bennett P, Epelbaum J, Robinson I C

机构信息

U-159, Institut National de la Santé et de la Recherche Médicale, Paris, France.

出版信息

Endocrinology. 1997 Nov;138(11):4543-51. doi: 10.1210/endo.138.11.5503.

Abstract

Two different dwarf rat models with primary (dw/dw, DW) or secondary (transgenic growth retarded, WF/Tgr) GH deficiency and contrasting hypothalamic GH-releasing hormone (GHRH) and somatostatin (SRIH) expression were implanted sc with GC cells. These form encapsulated rat GH-secreting tumors that maintain high plasma rat GH levels for several weeks. In both strains, GC cell tumors stimulated growth and raised GHBP levels, without affecting pituitary GH content. In DW rats, GC cell implants increased SRIH expression in the periventricular nucleus (PeV), but not in the arcuate nucleus (ARC), whereas their high GHRH expression in ARC was decreased by GC cells. In contrast, GC cell implants in WF/Tgr rats had little effect on the already high SRIH expression in PeV or low GHRH expression in ARC, although they reduced SRIH expression in ARC. GC cell implants also reduced GH receptor expression in both ARC and PeV in the WF/Tgr dwarves. Thus, chronic GH overexposure stimulates rapid growth in both dwarf strains, but has differential hypothalamic effects in these models. This experimental approach now makes it possible to study the effects of pathophysiological concentrations of GH ranging from dwarfism to acromegaly in the same animal model.

摘要

将两种不同的原发性(dw/dw,DW)或继发性(转基因生长迟缓,WF/Tgr)生长激素(GH)缺乏且下丘脑生长激素释放激素(GHRH)和生长抑素(SRIH)表达情况不同的侏儒大鼠模型皮下植入GC细胞。这些细胞形成包囊化的大鼠生长激素分泌肿瘤,可使血浆大鼠生长激素水平在数周内维持在较高水平。在这两种品系中,GC细胞瘤均刺激生长并提高生长激素结合蛋白(GHBP)水平,而不影响垂体生长激素含量。在DW大鼠中,GC细胞植入增加了室旁核(PeV)中的生长抑素表达,但在弓状核(ARC)中未增加,而GC细胞使ARC中原本较高的生长激素释放激素表达降低。相反,WF/Tgr大鼠中的GC细胞植入对PeV中本就较高的生长抑素表达或ARC中较低的生长激素释放激素表达影响不大,尽管它们降低了ARC中的生长抑素表达。GC细胞植入还降低了WF/Tgr侏儒大鼠ARC和PeV中的生长激素受体表达。因此,慢性生长激素过度暴露在两种侏儒品系中均刺激快速生长,但在这些模型中对下丘脑有不同影响。这种实验方法现在使得在同一动物模型中研究从侏儒症到肢端肥大症等不同病理生理浓度生长激素的作用成为可能。

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