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表皮生长因子对异种移植人甲状腺组织增殖的刺激作用及功能的抑制作用

Stimulation of proliferation and inhibition of function of xenotransplanted human thyroid tissue by epidermal growth factor.

作者信息

Paschke R, Eck T, Herfurth J, Usadel K H

机构信息

II. Medizinische Klinik, Klinikum Mannheim der Universität Heidelberg, FRG.

出版信息

J Endocrinol Invest. 1995 May;18(5):359-63. doi: 10.1007/BF03347838.

Abstract

A stimulation of thyroid epithelial cell proliferation by epidermal growth factor (EGF) has been repeatedly reported in different in vitro systems. Furthermore, a suppression of thyroid epithelial cell function by EGF has been described in vitro. In order to investigate the effects of EGF on the thyroid in vivo, human Graves' disease tissue was transplanted to 59 nu/nu mice. EGF was given once, and over a period of 7 days 7 times intermittently or continuously by osmotic mini pumps to mice. 3-H-thymidine histoautoradiography of transplants showed an increased 3-H-thymidine incorporation of thyroid epithelial cells and mesenchymal cells, following each form of EGF application. Thyroid epithelial cell nuclear volume, which has previously been shown to be a parameter for thyroid epithelial cell function showed a decrease following EGF application. There was a tendency to a more intensive proliferation and differentiation following intermittent EGF application compared to continuous stimulation. These results demonstrate that EGF does stimulate proliferation of thyroid epithelial as well as mesenchymal cells in vivo. The growth stimulating effect of EGF is linked with a concomitant decrease of thyroid function in vivo. The latter is most likely due to the dedifferentiating action of EGF previously shown in in vitro systems.

摘要

在不同的体外系统中,表皮生长因子(EGF)对甲状腺上皮细胞增殖的刺激作用已被多次报道。此外,体外研究还描述了EGF对甲状腺上皮细胞功能的抑制作用。为了研究EGF在体内对甲状腺的影响,将人类格雷夫斯病组织移植到59只裸鼠体内。通过渗透微型泵,给小鼠一次性、或在7天内间歇性或连续7次给予EGF。移植组织的³H-胸腺嘧啶核苷组织放射自显影显示,在每种EGF给药方式后,甲状腺上皮细胞和间充质细胞的³H-胸腺嘧啶核苷掺入量增加。甲状腺上皮细胞核体积,先前已被证明是甲状腺上皮细胞功能的一个参数,在给予EGF后显示减小。与持续刺激相比,间歇性给予EGF后,有更强烈的增殖和分化趋势。这些结果表明,EGF在体内确实能刺激甲状腺上皮细胞和间充质细胞的增殖。EGF的生长刺激作用与体内甲状腺功能的相应降低有关。后者很可能是由于先前在体外系统中显示的EGF的去分化作用。

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