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Dynamic relationship of the epithelium and mesenchyme during salivary gland initiation: the role of Fgf10

机译:唾液腺启动过程中上皮与间质的动态关系:Fgf10的作用

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Salivary glands provide an excellent model for the study of epithelial–mesenchymal interactions. We have looked at the interactions involved in the early initiation and development of murine salivary glands using classic recombination experiments and knockout mice. We show that salivary gland epithelium, at thickening and initial bud stages, is able to direct salivary gland development in non-gland pharyngeal arch mesenchyme at early stages. The early salivary gland epithelium is therefore able to induce gland development in non-gland tissue. This ability later shifts to the mesenchyme, with non-gland epithelium, such as from the limb bud, able to form a branching gland when combined with pseudoglandular stage gland mesenchyme. This shift appears to involve Fgf signalling, with signals from the epithelium inducing Fgf10 in the mesenchyme. Fgf10 then signals back to the epithelium to direct gland down-growth and bud development. These experiments highlight the importance of epithelial–mesenchymal signalling in gland initiation, controlling where, when and how many salivary glands form.
机译:唾液腺为研究上皮-间质相互作用提供了一个极好的模型。我们已经使用经典的重组实验和基因敲除小鼠研究了鼠唾液腺的早期启动和发育所涉及的相互作用。我们显示唾液腺上皮在增厚和初期芽阶段,能够在早期的非腺咽弓间质中引导唾液腺的发育。因此,唾液腺的早期上皮能够诱导非腺组织中的腺发育。该能力随后转移至具有非腺上皮的间充质,例如来自肢芽的上皮,当与假腺期腺间充质结合后能够形成分支腺。这种转变似乎与Fgf信号传导有关,来自上皮的信号在间质中诱导Fgf10。然后Fgf10信号返回上皮,指导腺体向下生长和芽发育。这些实验突出了上皮-间质信号传导在腺体形成,控制形成唾液腺的位置,时间和数量方面的重要性。

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