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胰岛素样生长因子I刺激垂体切除大鼠的红细胞生成。

Insulin-like growth factor I stimulates erythropoiesis in hypophysectomized rats.

作者信息

Kurtz A, Zapf J, Eckardt K U, Clemons G, Froesch E R, Bauer C

机构信息

Physiologisches Institut der Universität Zürich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1988 Oct;85(20):7825-9. doi: 10.1073/pnas.85.20.7825.

Abstract

Stimulation of erythropoiesis during growth is necessary to ensure proportionality between erythrocyte mass and body mass. However, the way by which erythrocyte formation is adapted to body growth is still unknown. Growth arrest in hypophysectomized rats is accompanied by decreased erythropoiesis. We have, therefore, examined whether insulin-like growth factor I (IGF-I), the mediator of growth hormone effects on body growth, is able to restore erythropoiesis in these animals. Subcutaneous infusions of 120 micrograms of recombinant human IGF-I per day in hypophysectomized rats led to increases in body weight, 59Fe incorporation into erythrocytes, and the number of reticulocytes that were similar to increases caused by infusions of 28 milliunits of human growth hormone per day. Body weight gain and 59Fe incorporation were linearly correlated. Like growth hormone, IGF-I also caused a significant rise in serum erythropoietin concentrations. However, the stimulatory effect on erythropoiesis occurred before serum erythropoietin levels had risen. These results demonstrate that IGF-I mediates the stimulatory effect of growth hormone on erythropoiesis in vivo and thus further support the somatomedin concept. They also show that IGF-I can stimulate erythropoiesis in an endocrine manner, and they suggest two possible routes of action: a direct one and an indirect one by means of enhanced erythropoietin production.

摘要

生长过程中对红细胞生成的刺激对于确保红细胞量与体重之间的比例关系是必要的。然而,红细胞生成适应身体生长的方式仍不清楚。垂体切除大鼠的生长停滞伴随着红细胞生成减少。因此,我们研究了胰岛素样生长因子I(IGF-I),即生长激素对身体生长作用的介质,是否能够恢复这些动物的红细胞生成。垂体切除大鼠每天皮下输注120微克重组人IGF-I导致体重增加、59Fe掺入红细胞以及网织红细胞数量增加,这些增加与每天输注28毫单位人生长激素所引起的增加相似。体重增加与59Fe掺入呈线性相关。与生长激素一样,IGF-I也导致血清促红细胞生成素浓度显著升高。然而,对红细胞生成的刺激作用在血清促红细胞生成素水平升高之前就已出现。这些结果表明,IGF-I在体内介导生长激素对红细胞生成的刺激作用,从而进一步支持生长调节素概念。它们还表明,IGF-I可以以内分泌方式刺激红细胞生成,并提示了两种可能的作用途径:直接途径和通过增强促红细胞生成素产生的间接途径。

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