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Osteocytic signalling pathways as therapeutic targets for bone fragility

机译:骨细胞信号通路作为骨脆性的治疗靶标

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摘要

Osteocytes are differentiated osteoblasts that become surrounded by matrix during the process of bone formation. Acquisition of the osteocyte phenotype is achieved by profound changes in gene expression that facilitate adaptation to the changing cellular environment and constitute the molecular signature of osteocytes. During osteocytogenesis, the expression of genes that are characteristic of the osteoblast are altered and the expression of genes and/or proteins that impart dendritic cellular morphology, regulate matrix mineralization and control the function of cells at the bone surface are ordely modulated. The discovery of mutations in human osteocytic genes has contributed, in a large part, to our understanding of the role of osteocytes in bone homeostasis. Osteocytes are targets of the mechanical force imposed on the skeleton and have a critical role in integrating mechanosensory pathways with the action of hormones, which thereby leads to the orchestrated response of bone to environmental cues. Current, therapeutic approaches harness this accumulating knowledge by targeting osteocytic signalling pathways and messengers to improve skeletal health.
机译:骨细胞是分化的成骨细胞,在成骨过程中被基质包围。骨细胞表型的获得是通过基因表达的深刻变化来实现的,这些变化有利于适应不断变化的细胞环境并构成骨细胞的分子标记。在成骨细胞生成过程中,成骨细胞特征基因的表达被改变,赋予树突状细胞形态,调节基质矿化和控制骨表面细胞功能的基因和/或蛋白质的表达受到调节。人类骨细胞基因突变的发现在很大程度上有助于我们对骨细胞在骨稳态中的作用的理解。骨细胞是施加在骨骼上的机械力的目标,在整合机械感测途径与激素的作用中起着关键作用,从而导致骨骼对环境线索的协调响应。当前,治疗方法通过靶向骨细胞信号通路和信使来利用这些积累的知识,以改善骨骼健康。

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