首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Integration of Multiple Signaling Pathways Determines Differences in the Osteogenic Potential and Tissue Regeneration of Neural Crest-Derived and Mesoderm-Derived Calvarial Bones
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Integration of Multiple Signaling Pathways Determines Differences in the Osteogenic Potential and Tissue Regeneration of Neural Crest-Derived and Mesoderm-Derived Calvarial Bones

机译:多种信号通路的整合确定神经C衍生和中胚层衍生的颅骨骨骼成骨潜能和组织再生的差异

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摘要

The mammalian skull vault, a product of a unique and tightly regulated evolutionary process, in which components of disparate embryonic origin are integrated, is an elegant model with which to study osteoblast biology. Our laboratory has demonstrated that this distinct embryonic origin of frontal and parietal bones confer differences in embryonic and postnatal osteogenic potential and skeletal regenerative capacity, with frontal neural crest derived osteoblasts benefitting from greater osteogenic potential. We outline how this model has been used to elucidate some of the molecular mechanisms which underlie these differences and place these findings into the context of our current understanding of the key, highly conserved, pathways which govern the osteoblast lineage including FGF, BMP, Wnt and TGFβ signaling. Furthermore, we explore recent studies which have provided a tantalizing insight into way these pathways interact, with evidence accumulating for certain transcription factors, such as Runx2, acting as a nexus for cross-talk.
机译:哺乳动物头骨穹顶是一个独特且受到严格控制的进化过程的产物,其中整合了不同胚胎起源的成分,是研究成骨细胞生物学的优雅模型。我们的实验室已经证明,额叶和顶骨的这种独特的胚胎起源赋予胚胎和出生后成骨潜能以及骨骼再生能力的差异,额叶神经c衍生的成骨细胞得益于更大的成骨潜能。我们概述了该模型如何用于阐明构成这些差异基础的一些分子机制,并将这些发现纳入我们目前对控制成骨细胞谱系(包括FGF,BMP,Wnt和TGFβ信号传导。此外,我们探索了最近的研究,这些研究提供了对这些途径相互作用方式的诱人见解,并积累了某些转录因子(如Runx2)作为串扰的纽带的证据。

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