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Control of RANKL gene expression.

机译:RANKL基因表达的控制。

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Osteoclasts are highly specialized cells capable of degrading mineralized tissue and form at different regions of bone to meet different physiological needs, such as mobilization of calcium, modeling of bone structure, and remodeling of bone matrix. Osteoclast production is elevated in a number of pathological conditions, many of which lead to loss of bone mass. Whether normal or pathological, osteoclastogenesis strictly depends upon support from accessory cells which supply cytokines required for osteoclast differentiation. Only one of these cytokines, receptor activator of NFkappaB ligand (RANKL), is absolutely essential for osteoclast formation throughout life and is thus expressed by all cell types that support osteoclast differentiation. The central role of RANKL in bone resorption is highlighted by the fact that it is the basis for a new therapy to inhibit bone loss. This review will discuss mechanisms that control RANKL gene expression in different osteoclast-support cells and how the study of such mechanisms may lead to a better understanding of the cellular interactions that drive normal and pathological bone resorption.
机译:破骨细胞是高度专业化的细胞,能够降解矿化的组织并在骨骼的不同区域形成以满足不同的生理需求,例如钙的动员,骨骼结构的建模以及骨骼基质的重构。在许多病理条件下破骨细胞的产生均增加,其中许多导致骨量减少。不论是正常的还是病理的,破骨细胞的形成都严格取决于辅助细胞的支持,这些辅助细胞提供破骨细胞分化所需的细胞因子。这些细胞因子中只有一种,即NFkappaB配体的受体激活剂(RANKL),对于一生中的破骨细胞形成绝对必不可少,因此由支持破骨细胞分化的所有细胞类型表达。事实证明,RANKL是抑制骨质流失的新疗法的基础,这一事实突出了RANKL在骨吸收中的核心作用。这篇综述将讨论控制RANKL基因在不同破骨细胞支持细胞中表达的机制,以及对这些机制的研究如何使人们更好地理解驱动正常和病理性骨吸收的细胞相互作用。

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