首页> 美国卫生研究院文献>Journal of Bone and Mineral Research >Pannexin-1 and P2X7-receptor are required for apoptotic osteocytes in fatigued bone to trigger RANKL production in neighboring bystander osteocytes
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Pannexin-1 and P2X7-receptor are required for apoptotic osteocytes in fatigued bone to trigger RANKL production in neighboring bystander osteocytes

机译:疲劳骨骼中的凋亡骨细胞需要Pannexin-1和P2X7受体来触发邻近旁观者骨细胞中的RANKL产生

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摘要

Osteocyte apoptosis is required to induce intracortical bone remodeling following microdamage in animal models, but how apoptotic osteocytes signal neighboring “bystander” cells to initiate the remodeling process is unknown. Apoptosis has been shown to open pannexin-1 (Panx1) channels to release ATP as a “find-me” signal for phagocytic cells. To address whether apoptotic osteocytes use this signaling mechanism, we adapted the rat ulnar fatigue-loading model to reproducibly introduce microdamage into mouse cortical bone and measured subsequent changes in osteocyte apoptosis, RANKL expression and osteoclastic bone resorption in wild type (WT, C57Bl/6) mice and in mice genetically deficient in Panx1 (Panx1KO). Mouse ulnar-loading produced linear microcracks comparable in number and location to the rat model. WT mice showed increased osteocyte apoptosis and RANKL expression at microdamage sites at 3 days after loading, and increased intracortical remodeling and endocortical tunneling at day 14. With fatigue, Panx1KO mice exhibited levels of microdamage and osteocyte apoptosis identical to WT mice. However, they did not upregulate RANKL in bystander osteocytes or initiate resorption. Panx1 interacts with P2X7R in ATP release; thus we examined P2X7R-deficient mice and WT mice treated with P2X7R antagonist Brilliant Blue G (BBG) to test the possible role of ATP as a find-me signal. P2X7RKO mice failed to upregulate RANKL in osteocytes or induce resorption despite normally elevated osteocyte apoptosis after fatigue loading. Similarly, treatment of fatigued C57Bl/6 mice with BBG mimicked behavior of both Panx1KO and P2X7RKO mice; BBG had no effect on osteocyte apoptosis in fatigued bone, but completely prevented increases in bystander osteocyte RANKL expression and attenuated activation of resorption by more than 50 percent. These results indicate that activation of Panx1 and P2X7R are required for apoptotic osteocytes in fatigued bone to trigger RANKL production in neighboring bystander osteocytes and implicate ATP as an essential signal mediating this process.
机译:在动物模型中,微损伤后需要骨细胞凋亡来诱导皮质内骨重塑,但是凋亡的骨细胞如何向邻近的“旁观者”细胞发出信号以启动重塑过程尚不清楚。凋亡已显示打开pannexin-1(Panx1)通道释放ATP,作为吞噬细胞的“ find-me”信号。为了解决凋亡的骨细胞是否使用这种信号传导机制,我们采用了大鼠尺骨疲劳负荷模型,以可重复性地将微损伤引入小鼠皮质骨,并测量了野生型中骨细胞凋亡,RANKL表达和破骨细胞吸收的后续变化(WT,C57Bl / 6 )小鼠和Panx1(Panx1KO)基因缺陷的小鼠中。小鼠尺骨负荷产生的线性微裂纹的数量和位置与大鼠模型相当。 WT小鼠在加载后第3天在微损伤部位显示出增加的骨细胞凋亡和RANKL表达,并在第14天时皮质内重构和皮质内隧道形成增加。由于疲劳,Panx1KO小鼠表现出与WT小鼠相同的微损伤和骨细胞凋亡水平。但是,它们并没有在旁观者骨细胞中上调RANKL或启动吸收。 Panx1与ATP释放中的P2X7R相互作用;因此,我们检查了P2X7R缺陷小鼠和用P2X7R拮抗剂亮蓝G(BBG)处理的WT小鼠,以测试ATP作为“我发现”信号的可能作用。尽管疲劳负荷后正常情况下骨细胞凋亡增加,但P2X7RKO小鼠未能上调骨细胞中的RANKL或诱导吸收。同样,用BBG处理疲劳的C57Bl / 6小鼠模仿了Panx1KO和P2X7RKO小鼠的行为。 BBG对疲劳骨骼中的骨细胞凋亡没有影响,但是完全阻止了旁观者骨细胞RANKL表达的增加,并使吸收的激活减弱了50%以上。这些结果表明,疲劳骨骼中的凋亡骨细胞需要Panx1和P2X7R的激活才能触发邻近旁观者骨细胞的RANKL产生,并暗示ATP是介导这一过程的重要信号。

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