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Osteoprotegerin exposure at different stages of osteoclastogenesis differentially affects osteoclast formation and function

机译:破骨细胞形成不同阶段的骨保护素暴露差异影响破骨细胞的形成和功能

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摘要

This study aimed to investigate the effects of osteoprotegerin (OPG), a decoy receptor for receptor activator for nuclear factor κB ligand (RANKL), during the various stages of osteoclast differentiation, and additionally investigate its effects on osteoclast adhesion and activity. RAW264.7 murine monocytic cells were incubated with macrophage colony-stimulating factor and RANKL for 1, 3, 5, or 7 days, followed by an additional 24-h incubation in the presence or absence of OPG (80 ng/mL). We examined osteoclast differentiation and adhesion capacity using the tartrate-resistant acid phosphatase (TRAP) assay and immunofluorescence microscopy, and additionally examined cell growth in real time using the xCELLigence system. Furthermore, the expression levels of TRAP, RANK, integrin β3, matrix metalloproteinase 9, cathepsin K, carbonic anhydrase II, and vesicular-type H+-ATPase A1 were examined using western blotting. OPG exposure on day 1 enhanced the osteoclast growth curve as well as adhesion, and increased RANK and integrin β3 expression. In contrast, exposure to OPG at later time points (days 3–7) inhibited osteoclast differentiation, adhesion structure formation, and protease expression. In conclusion, the biological effects of OPG exposure at the various stages of osteoclast differentiation were varied, and included the enhanced adhesion and survival of preosteoclasts, the block of differentiation from the early to the terminal stages of osteoclastogenesis, and suppression of mature osteoclast activation following OPG exposure during the terminal differentiation stage, suggesting that the effects of OPG exposure differ based on the stage of differentiation.
机译:这项研究旨在研究破骨细胞分化各个阶段中骨保护素(OPG)(核因子κB配体受体激活剂的诱饵受体)的作用,并研究其对破骨细胞粘附和活性的影响。将RAW264.7鼠单核细胞与巨噬细胞集落刺激因子和RANKL孵育1、3、5或7天,然后在存在或不存在OPG(80 ng / mL)的情况下再孵育24小时。我们使用抗酒石酸酸性磷酸酶(TRAP)分析和免疫荧光显微镜检查了破骨细胞的分化和粘附能力,并使用xCELLigence系统实时检查了细胞生长。此外,使用蛋白质印迹法检测TRAP,RANK,整联蛋白β3,基质金属蛋白酶9,组织蛋白酶K,碳酸酐酶II和水泡型H + -ATPase A1的表达水平。在第1天暴露于OPG会增强破骨细胞生长曲线和粘附力,并增加RANK和整联蛋白β3的表达。相反,在以后的时间点(第3-7天)暴露于OPG会抑制破骨细胞的分化,粘附结构的形成和蛋白酶的表达。总之,在破骨细胞分化的各个阶段,OPG暴露的生物学效应是多种多样的,包括破骨细胞的粘附和存活增强,破骨细胞形成从早期到晚期的分化阻滞以及抑制成熟破骨细胞活化终末分化阶段的OPG暴露,提示OPG暴露的影响因分化阶段而异。

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