首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >IL-17 Receptor Signaling in Osteoblasts/Osteocytes Mediates PTH-Induced Bone Loss and Enhances Osteocytic RANKL Production
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IL-17 Receptor Signaling in Osteoblasts/Osteocytes Mediates PTH-Induced Bone Loss and Enhances Osteocytic RANKL Production

机译:成骨细胞/骨细胞中的IL-17受体信号传导介导PTH诱导的骨质损失并增强骨细胞RANKL产量

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摘要

Primary hyperparathyroidism (PHPT) is a condition where elevated PTH levels lead to bone loss, in part through increased production of the osteoclastogenic factor IL-17A, by bone marrow (BM) T-helper 17 (Th17) cells, a subset of helper CD4+ T cells. In animals, PHPT is modeled by continuous PTH treatment (cPTH). In mice, an additional critical action of cPTH is the capacity to increase the production of RANKL by osteocytes. However, a definitive link between IL-17A and osteocytic expression of RANKL has not been made. Here we show that cPTH fails to induce cortical and trabecular bone loss and causes less intense bone resorption in conditional knock-out (IL-17RA(Delta OCY)) male and female mice lacking the expression of IL-17A receptor (IL-17RA) in dentin matrix protein 1 (DMP1)-8kb-Cre-expressing cells, which include osteocytes and some osteoblasts. Therefore, direct IL-17RA signaling in osteoblasts/osteocytes is required for cPTH to exert its bone catabolic effects. In addition, in vivo, silencing of IL-17RA signaling in in DMP1-8kb-expressing cells blunts the capacity of cPTH to stimulate osteocytic RANKL production, indicating that cPTH augments osteocytic RANKL expression indirectly, via an IL-17A/IL-17RA-mediated mechanism. Thus, osteocytic production of RANKL and T cell production of IL-17A are both critical for the bone catabolic activity of cPTH. (c) 2018 American Society for Bone and Mineral Research.
机译:原发性甲状旁腺功能亢进(PHPT)是一种升高的PTH水平导致骨质损失的条件,部分通过骨髓(BM)T-辅助17(TH17)细胞的骨髓(BM)T-杆17a(TH17)细胞,辅助CD4 +的子集T细胞。在动物中,PHPT通过连续的PTH处理(CPTH)进行建模。在小鼠中,CPTH的另一个关键作用是通过骨细胞增加RANKL的产量的能力。然而,尚未制作IL-17A和骨细胞表达的明确联系。在这里,我们表明CPTH未能诱导皮质和小梁骨质损失,并导致缺乏IL-17A受体(IL-17RA)表达(IL-17RA(Delta Ocy))的较小骨吸收(IL-17RA(Delta Ocy))在牙本质基质1(DMP1)-8KB-CRE表达的细胞中,包括骨细胞和一些成骨细胞。因此,CPTH需要在成骨细胞/骨细胞中的直接IL-17ra信号传导施加其骨分解代谢效果。此外,在体内,在DMP1-8KB表达的细胞中的IL-17ra信号传导的沉默钝化CPTH以刺激骨细胞RANKL的产量,表明CPTH通过IL-17a / IL-17间接增强骨细胞RANKL表达。介导的机制。因此,IL-17a的RANKL和T细胞产生的骨细胞产生对于CPTH的骨分解生成至关重要。 (c)2018年美国骨骼和矿物学学会。

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