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骨细胞样细胞网络中,RANKL 和 OPG 的活性受损伤大小的调节。

RANKL and OPG activity is regulated by injury size in networks of osteocyte-like cells.

机构信息

Trinity Centre for Bioengineering, Department of Mechanical Engineering, Dublin 2, Ireland.

出版信息

Bone. 2011 Feb;48(2):182-8. doi: 10.1016/j.bone.2010.09.014. Epub 2010 Sep 18.

Abstract

Bone remodelling is an intricate process encompassing numerous paracrine and autocrine biochemical pathways and mechanical mechanisms. It is responsible for maintaining bone homeostasis, structural integrity and function. The RANKL-RANK-OPG cytokine system is one of the principal mediators in the maintenance of bone cell function and activation of bone remodelling by the Basic Multicellular Unit (BMU) which carries out remodelling. Theories surrounding the initiation of bone remodelling include mechanical loading, fluid flow and microdamage as potential stimuli. This study focused on microdamage. In an in vitro simulated bone environment, gel embedded MLO-Y4 cell networks were subjected to damage in the form of planar, crack-like defects of constant area and varying thickness. The biochemical response was determined by ELISA and luciferase assay. The results showed that RANKL release increased and OPG decreased in a manner which depended on injury size (i.e. thickness) and time following application of injury. The effect of microdamage on cell viability and apoptosis was also evaluated. This work demonstrates that injury alone, in the absence of imposed strain or fluid flow, is sufficient to initiate changes in cytokine concentrations of the type which are known to stimulate bone remodeling.

摘要

骨重建是一个复杂的过程,包含许多旁分泌和自分泌生化途径和机械机制。它负责维持骨内稳态、结构完整性和功能。RANKL-RANK-OPG 细胞因子系统是维持骨细胞功能和激活基本多细胞单位(BMU)骨重建的主要介质之一,BMU 进行重建。骨重建起始的理论包括机械加载、流体流动和微损伤作为潜在的刺激物。本研究集中在微损伤上。在体外模拟骨环境中,凝胶嵌入的 MLO-Y4 细胞网络受到平面、裂纹样缺陷的损伤,缺陷具有恒定面积和不同厚度。通过 ELISA 和荧光素酶测定法确定生化反应。结果表明,RANKL 的释放增加,OPG 减少,其方式取决于损伤的大小(即厚度)和损伤后时间。还评估了微损伤对细胞活力和细胞凋亡的影响。这项工作表明,在没有施加应变或流体流动的情况下,单独的损伤足以引发已知刺激骨重建的细胞因子浓度的变化。

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