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生长激素受体/结合蛋白和胰岛素样生长因子-I(IGF-I)在牙胚中的产前表达。生长激素和IGF-I在牙齿早期形成过程中的细胞分化中起作用吗?

Prenatal expression of growth hormone receptor/binding protein and insulin-like growth factor-I (IGF-I) in the enamel organ. Role for growth hormone and IGF-I in cellular differentiation during early tooth formation?

作者信息

Joseph B K, Savage N W, Young W G, Waters M J

机构信息

Department of Oral Biology and Pathology, University of Queensland, Brisbane, Australia.

出版信息

Anat Embryol (Berl). 1994 Jun;189(6):489-94. doi: 10.1007/BF00186823.

Abstract

Immunohistochemistry was used to study the ontogeny of GH receptor/binding protein (GHR/BP) and IGF-I from the 13-day-old embryo (E13) to the E19 rat fetus in the developing incisor and molar. Analysis of serial sections revealed diffuse staining of GHR/BP and IGF-I at the bud and early cap stages within both the mesenchyme of the dental papilla and the ectodermal-derived enamel organ. Just before transition to the cap stage, immunoreactivity of GHR/BP and IGF-I increased in the epithelial bud and extended to the condensed dental mesenchyme. At the cap stage, the dental epithelium showed an intense expression of GHR/BP and IGF-I, whereas the dental mesenchymal cells showed very weak staining. The inner enamel epithelium and the outer enamel epithelium were positive for both GHR/BP and IGF-I in the bell stage. Differentiating ameloblasts, odontoblasts and the secretory ameloblasts and odontoblasts continued to express GHR/BP and IGF-I in incisors. These findings support the premise that growth hormone and IGF-I may play a role in embryonic tooth development by regulating the epithelial-mesenchymal interactions that influence events in growth and cytodifferentiation.

摘要

采用免疫组织化学方法研究了从13日龄胚胎(E13)到E19大鼠胎儿发育中的切牙和磨牙中生长激素受体/结合蛋白(GHR/BP)和胰岛素样生长因子-I(IGF-I)的个体发生。连续切片分析显示,在牙乳头间充质和外胚层来源的成釉器的芽期和早期帽状期,GHR/BP和IGF-I呈弥漫性染色。在过渡到帽状期之前,GHR/BP和IGF-I的免疫反应性在上皮芽中增加并延伸至致密的牙间充质。在帽状期,牙上皮显示出强烈的GHR/BP和IGF-I表达,而牙间充质细胞显示出非常弱的染色。在钟状期,内釉上皮和外釉上皮的GHR/BP和IGF-I均为阳性。在切牙中,分化中的成釉细胞、成牙本质细胞以及分泌期成釉细胞和成牙本质细胞持续表达GHR/BP和IGF-I。这些发现支持了生长激素和IGF-I可能通过调节影响生长和细胞分化事件的上皮-间充质相互作用在胚胎牙齿发育中发挥作用这一前提。

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