Laboratory of Cellular Dynamics, WPI–Immunology Frontier Research Center, Osaka University, Osaka, Japan.
J Clin Invest. 2013 Feb;123(2):866-73. doi: 10.1172/JCI65054. Epub 2013 Jan 16.
Osteoclasts are bone resorbing, multinucleate cells that differentiate from mononuclear macrophage/monocyte-lineage hematopoietic precursor cells. Although previous studies have revealed important molecular signals, how the bone resorptive functions of such cells are controlled in vivo remains less well characterized. Here, we visualized fluorescently labeled mature osteoclasts in intact mouse bone tissues using intravital multiphoton microscopy. Within this mature population, we observed cells with distinct motility behaviors and function, with the relative proportion of static - bone resorptive (R) to moving - nonresorptive (N) varying in accordance with the pathophysiological conditions of the bone. We also found that rapid application of the osteoclast-activation factor RANKL converted many N osteoclasts to R, suggesting a novel point of action in RANKL-mediated control of mature osteoclast function. Furthermore, we showed that Th17 cells, a subset of RANKL-expressing CD4+ T cells, could induce rapid N-to-R conversion of mature osteoclasts via cell-cell contact. These findings provide new insights into the activities of mature osteoclasts in situ and identify actions of RANKL-expressing Th17 cells in inflammatory bone destruction.
破骨细胞是一种骨吸收的多核细胞,由单核巨噬细胞/单核细胞系造血前体细胞分化而来。尽管之前的研究揭示了重要的分子信号,但这些细胞的骨吸收功能如何在体内得到控制,仍知之甚少。在这里,我们使用活体多光子显微镜观察到完整小鼠骨组织中荧光标记的成熟破骨细胞。在这个成熟群体中,我们观察到具有不同运动行为和功能的细胞,静止的 - 骨吸收(R)与运动的 - 非吸收(N)细胞的相对比例根据骨的病理生理状况而变化。我们还发现,快速应用破骨细胞激活因子 RANKL 将许多 N 破骨细胞转化为 R,这表明 RANKL 介导的成熟破骨细胞功能控制中的一个新的作用点。此外,我们表明,Th17 细胞,即表达 RANKL 的 CD4+T 细胞的一个亚群,可以通过细胞间接触诱导成熟破骨细胞的快速 N 到 R 转化。这些发现为原位成熟破骨细胞的活性提供了新的见解,并确定了表达 RANKL 的 Th17 细胞在炎症性骨破坏中的作用。