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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Expression of osteoclast differentiation signals by stromal elements of giant cell tumors.
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Expression of osteoclast differentiation signals by stromal elements of giant cell tumors.

机译:破骨细胞分化信号的表达是由巨细胞肿瘤的基质成分引起的。

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摘要

The mechanisms by which primary tumors of the bone cause bone destruction have not been elucidated. Unlike most other lytic bone tumors, osteoclastomas, otherwise known as giant cell tumors (GCT), contain osteoclast-like cells within the tumor stroma. A new member of the TNF-ligand superfamily member, osteoclast differentiation factor (ODF/OPGL/RANKL/TRANCE), was recently identified. ODF was shown to directly stimulate osteoclastogenesis, in the presence of M-CSF. In this study, the expression of ODF was examined in a number of tumor samples associated with bone lysis in vivo. In addition, we investigated expression of the ODF receptor on osteoclast precursors, RANK, as well as the ODF inhibitor osteoprotegerin (OPG), and another TNF-ligand superfamily member, TRAIL, previously shown to abrogate the inhibitory effects of OPG. We report here the novel finding that GCT stromal cells contain abundant ODF mRNA, whereas the giant cell population exclusively expresses RANK mRNA. These results are consistent with the osteoclast-mediated bone destruction by these tumors. We also report the expression of OPG and TRAIL mRNA in GCT samples. A comparison with other lytic and nonlytic tumors of bone showed that GCT express more ODF and TRAIL mRNA relative to OPG mRNA. In addition, GCT were found to express a number of cytokines previously reported to play central roles in osteoclastogenesis, namely, IL-1, -6, -11, -17, as well as TNF-alpha. Importantly, GCT were also found to express high levels of M-CSF mRNA, a cytokine shown to be an essential cofactor of ODF, and a survival factor for mature and developing osteoclasts. Furthermore, expression of these molecules by stromal cells isolated from GCT continued in vitro. Thus GCT constitutively express all of the signals that are currently understood to be necessary for the differentiation of osteoclasts from precursor cells.
机译:骨骼的原发性肿瘤引起骨骼破坏的机制尚未阐明。与大多数其他溶骨性肿瘤不同,破骨细胞瘤(也称为巨细胞瘤(GCT))在肿瘤基质内含有破骨细胞样细胞。最近鉴定了TNF-配体超家族成员的新成员破骨细胞分化因子(ODF / OPGL / RANKL / TRANCE)。在M-CSF的存在下,ODF被证明直接刺激破骨细胞生成。在这项研究中,在体内与骨溶解相关的许多肿瘤样品中检测了ODF的表达。此外,我们研究了破骨细胞前体RANK上ODF受体的表达,以及ODF抑制剂骨保护素(OPG)和另一个TNF-配体超家族成员TRAIL的表达,该成员先前已证明可消除OPG的抑制作用。我们在这里报告的新发现,GCT基质细胞包含丰富的ODF mRNA,而巨细胞群体专门表达RANK mRNA。这些结果与这些肿瘤的破骨细胞介导的骨破坏相一致。我们还报告了GCT样品中OPG和TRAIL mRNA的表达。与其他骨溶解性和非溶解性肿瘤的比较显示,相对于OPG mRNA,GCT表达更多的ODF和TRAIL mRNA。另外,发现GCT表达先前报道在破骨细胞形成中起重要作用的多种细胞因子,即IL-1,-6,-11,-17以及TNF-α。重要的是,还发现GCT可以表达高水平的M-CSF mRNA,一种细胞因子,被证明是ODF的必要辅助因子,以及成熟和发育破骨细胞的生存因子。此外,从GCT分离的基质细胞继续在体外表达这些分子。因此,GCT组成性表达目前被认为是从前体细胞分化破骨细胞所必需的所有信号。

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