Horwood N J, Udagawa N, Elliott J, Grail D, Okamura H, Kurimoto M, Dunn A R, Martin T, Gillespie M T
St. Vincent's Institute of Medical Research and The University of Melbourne, Department of Medicine, St. Vincent's Hospital, Fitzroy, Victoria 3065, Australia.
J Clin Invest. 1998 Feb 1;101(3):595-603. doi: 10.1172/JCI1333.
IL-18 inhibits osteoclast (OCL) formation in vitro independent of IFN-gamma production, and this was abolished by the addition of neutralizing antibodies to GM-CSF. We now establish that IL-18 was unable to inhibit OCL formation in cocultures using GM-CSF-deficient mice (GM-CSF -/-). Reciprocal cocultures using either wild-type osteoblasts with GM-CSF -/- spleen cells or GM-CSF -/- osteoblasts with wild-type spleen cells were examined. Wild-type spleen cells were required to elicit a response to IL-18 indicating that cells of splenic origin were the IL-18 target. As T cells comprise a large proportion of the spleen cell population, the role of T cells in osteoclastogenesis was examined. Total T cells were removed and repleted in various combinations. Addition of wild-type T cells to a GM-CSF -/- coculture restored IL-18 inhibition of osteoclastogenesis. Major subsets of T cells, CD4+ and CD8+, were also individually depleted. Addition of either CD4+ or CD8+ wild-type T cells restored IL-18 action in a GM-CSF -/- background, while IL-18 was ineffective when either CD4+ or CD8+ GM-CSF -/- T cells were added to a wild-type coculture. These results highlight the involvement of T cells in IL-18-induced OCL inhibition and provide evidence for a new OCL inhibitory pathway whereby IL-18 inhibits OCL formation due to action upon T cells promoting the release of GM-CSF, which in turn acts upon OCL precursors.
白细胞介素-18(IL-18)在体外可独立于γ干扰素的产生抑制破骨细胞(OCL)形成,而添加GM-CSF中和抗体可消除这种抑制作用。我们现在证实,在使用GM-CSF缺陷小鼠(GM-CSF -/-)的共培养体系中,IL-18无法抑制破骨细胞形成。我们检测了使用野生型成骨细胞与GM-CSF -/-脾细胞或GM-CSF -/-成骨细胞与野生型脾细胞的相互共培养体系。需要野生型脾细胞才能引发对IL-18的反应,这表明脾来源的细胞是IL-18的作用靶点。由于T细胞在脾细胞群体中占很大比例,因此研究了T细胞在破骨细胞生成中的作用。去除并以各种组合补充总T细胞。将野生型T细胞添加到GM-CSF -/-共培养体系中可恢复IL-18对破骨细胞生成的抑制作用。T细胞的主要亚群CD4+和CD8+也分别被去除。添加CD4+或CD8+野生型T细胞均可在GM-CSF -/-背景下恢复IL-18的作用,而当将CD4+或CD8+ GM-CSF -/- T细胞添加到野生型共培养体系中时,IL-18则无效。这些结果突出了T细胞参与IL-18诱导的破骨细胞抑制作用,并为一种新的破骨细胞抑制途径提供了证据,即IL-18通过作用于T细胞促进GM-CSF释放来抑制破骨细胞形成,而GM-CSF进而作用于破骨细胞前体。