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Osteocytes, mechanosensing and Wnt signaling.

机译:骨细胞,机械传感和Wnt信号传导。

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The majority of bone cell biology focuses on activity on the surface of the bone with little attention paid to the activity that occurs below the surface. However, with recent new discoveries, osteocytes, cells embedded within the mineralized matrix of bone, are becoming the target of intensive investigation. In this article, the distinctions between osteoblasts and their descendants, osteocytes, are reviewed. Osteoblasts are defined as cells that make bone matrix and osteocytes are thought to translate mechanical loading into biochemical signals that affect bone (re)modeling. Osteoblasts and osteocytes should have similarities as would be expected of cells of the same lineage, yet these cells also have distinct differences, particularly in their responses to mechanical loading and utilization of the various biochemical pathways to accomplish their respective functions. For example, the Wnt/beta-catenin signaling pathway is now recognized as an important regulator of bone mass and bone cell functions. This pathway is important in osteoblasts for differentiation, proliferation and the synthesis bone matrix, whereas osteocytes appear to use the Wnt/beta-catenin pathway to transmit signals of mechanical loading to cells on the bone surface. New emerging evidence suggests that the Wnt/beta-catenin pathway in osteocytes may be triggered by crosstalk with the prostaglandin pathway in response to loading which then leads to a decrease in expression of negative regulators of the pathway such as Sost and Dkk1. The study of osteocyte biology is becoming an intense area of research interest and this review will examine some of the recent findings that are reshaping our understanding of bone/bone cell biology.
机译:大部分骨细胞生物学关注于骨表面的活性,而很少关注在骨表面以下发生的活性。然而,随着最近的新发现,骨细胞,嵌入骨矿化基质中的细胞正成为深入研究的目标。在本文中,将回顾成骨细胞与其后代骨细胞之间的区别。成骨细胞被定义为形成骨基质的细胞,而骨细胞被认为将机械负荷转化为影响骨骼(重塑)的生化信号。成骨细胞和骨细胞应该具有相同谱系的细胞所具有的相似性,但是这些细胞也具有明显的差异,特别是在它们对机械负荷的反应以及利用各种生化途径来实现其各自功能方面。例如,Wnt /β-catenin信号传导途径现在被认为是骨量和骨细胞功能的重要调节剂。该途径在成骨细胞中对于分化,增殖和合成骨基质很重要,而骨细胞似乎使用Wnt /β-catenin途径将机械负荷信号传递至骨表面的细胞。新出现的证据表明,骨细胞中的Wnt /β-catenin途径可能是由于与负荷反应而与前列腺素途径发生串扰而触发的,从而导致该途径的负调控因子(如Sost和Dkk1)的表达降低。骨细胞生物学的研究正成为人们研究的热点领域,本综述将探讨一些最近的发现,这些发现正在重塑我们对骨/骨细胞生物学的理解。

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