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甲状腺功能减退对大鼠生长、血清生长激素、生长激素依赖性生长调节素、胰岛素样生长因子及其载体蛋白的影响。

The effect of hypothyroidism on growth, serum growth hormone, the growth hormone-dependent somatomedin, insulin-like growth factor, and its carrier protein in rats.

作者信息

Burstein P J, Draznin B, Johnson C J, Schalch D S

出版信息

Endocrinology. 1979 Apr;104(4):1107-11. doi: 10.1210/endo-104-4-1107.

Abstract

To study the possible mechanisms involved in growth retardation associated with hypothyroidism, serum T4, GH, the GH-dependent somatomedin, insulin-like growth factor (IGF), and its carrier protein (CP) were measured in hypothyroid rats and their age-matched controls. Three groups of rats were studied: infant, immature, and adult. Marked hypothyroidism (serum T4, less than 1 microgram/dl) was produced in experimental animals by providing them with drinking water containing 0.05% propylthiouracil. Infant and immature hypothyroid rats weighed markedly less than normal controls and had significantly reduced serum levels of GH, IGF, and CP. Normal adult rats, treated with propylthiouracil for 60 days, also weighed considerably less than control animals and exhibited a significant drop in serum GH, IGF, and CP during this period. The administration of bovine GH to hypothyroid adult rats for 7 days did not restore either IGF or CP levels to normal, indicating that their decrease in serum was, in part, a direct result of hypothyroidism per se. These results indicate that serum levels of GH, IGF, and CP are at least partly under thyroid hormone control. Furthermore, these studies suggest that the growth retardation associated with hypothyroidism may be mediated through somatomedin activity.

摘要

为研究甲状腺功能减退症相关生长发育迟缓的可能机制,对甲状腺功能减退大鼠及其年龄匹配的对照大鼠测定了血清甲状腺素(T4)、生长激素(GH)、GH依赖性生长调节素、胰岛素样生长因子(IGF)及其载体蛋白(CP)。研究了三组大鼠:幼龄、未成熟和成年大鼠。通过给实验动物提供含0.05%丙硫氧嘧啶的饮用水,使其产生明显的甲状腺功能减退(血清T4低于1微克/分升)。幼龄和未成熟甲状腺功能减退大鼠的体重明显低于正常对照,血清GH、IGF和CP水平显著降低。用丙硫氧嘧啶处理60天的正常成年大鼠体重也明显低于对照动物,在此期间血清GH、IGF和CP显著下降。给甲状腺功能减退成年大鼠注射牛GH 7天,未能使IGF或CP水平恢复正常,表明血清中它们的降低部分是甲状腺功能减退本身的直接结果。这些结果表明,血清GH、IGF和CP水平至少部分受甲状腺激素控制。此外,这些研究提示,与甲状腺功能减退症相关的生长发育迟缓可能通过生长调节素活性介导。

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