Cabahug-Zuckerman Pamela, Frikha-Benayed Dorra, Majeska Robert J, Tuthill Alyssa, Yakar Shoshana, Judex Stefan, Schaffler Mitchell B
Department of Biomedical Engineering, City College of New York, New York, NY, USA.
Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY, USA.
J Bone Miner Res. 2016 Jul;31(7):1356-65. doi: 10.1002/jbmr.2807. Epub 2016 Mar 22.
Osteocyte apoptosis is essential to activate bone remodeling in response to fatigue microdamage and estrogen withdrawal, such that apoptosis inhibition in vivo prevents the onset of osteoclastic resorption. Osteocyte apoptosis has also been spatially linked to bone resorption owing to disuse, but whether apoptosis plays a similar controlling role is unclear. We, therefore, 1) evaluated the spatial and temporal effects of disuse from hindlimb unloading (HLU) on osteocyte apoptosis, receptor activator of NF-κB ligand (RANKL) expression, bone resorption, and loss in mouse femora, and 2) tested whether osteocyte apoptosis was required to activate osteoclastic activity in cortical and trabecular bone by treating animals subjected to HLU with the pan-caspase apoptosis inhibitor, QVD (quinolyl-valyl-O-methylaspartyl-[-2,6-difluorophenoxy]-methylketone). Immunohistochemistry was used to identify apoptotic and RANKL-producing osteocytes in femoral diaphysis and distal trabecular bone, and µCT was used to determine the extent of trabecular bone loss owing to HLU. In both cortical and trabecular bone, 5 days of HLU increased osteocyte apoptosis significantly (3- and 4-fold, respectively, p < 0.05 versus Ctrl). At day 14, the apoptotic osteocyte number in femoral cortices declined to near control levels but remained elevated in trabeculae (3-fold versus Ctrl, p < 0.05). The number of osteocytes producing RANKL in both bone compartments was also significantly increased at day 5 of HLU (>1.5-fold versus Ctrl, p < 0.05) and further increased by day 14. Increases in osteocyte apoptosis and RANKL production preceded increases in bone resorption at both endocortical and trabecular surfaces. QVD completely inhibited not only the HLU-triggered increases in osteocyte apoptosis but also RANKL production and activation of bone resorption at both sites. Finally, µCT studies revealed that apoptosis inhibition completely prevented the trabecular bone loss caused by HLU. Together these data indicate that osteocyte apoptosis plays a central and controlling role in triggering osteocyte RANKL production and the activation of new resorption leading to bone loss in disuse. © 2016 American Society for Bone and Mineral Research.
骨细胞凋亡对于响应疲劳微损伤和雌激素撤退而激活骨重塑至关重要,以至于体内凋亡抑制可防止破骨细胞吸收的发生。由于废用,骨细胞凋亡在空间上也与骨吸收相关,但凋亡是否发挥类似的控制作用尚不清楚。因此,我们:1)评估了后肢卸载(HLU)导致的废用对小鼠股骨中骨细胞凋亡、核因子κB受体活化因子配体(RANKL)表达、骨吸收和骨量丢失的时空影响;2)通过用泛半胱天冬酶凋亡抑制剂QVD(喹啉基-缬氨酰-O-甲基天冬氨酰-[-2,6-二氟苯氧基]-甲基酮)处理HLU动物,测试骨细胞凋亡是否是激活皮质骨和小梁骨中破骨细胞活性所必需的。免疫组织化学用于鉴定股骨干和远端小梁骨中凋亡的和产生RANKL的骨细胞,μCT用于确定HLU导致的小梁骨丢失程度。在皮质骨和小梁骨中,5天的HLU均显著增加了骨细胞凋亡(分别增加3倍和4倍,与对照组相比p<0.05)。在第14天,股骨干皮质中凋亡骨细胞数量降至接近对照水平,但在小梁中仍保持升高(比对照组高3倍,p<0.05)。在HLU第5天,两个骨区中产生RANKL的骨细胞数量也显著增加(比对照组增加>1.5倍,p<0.05),并在第14天进一步增加。骨细胞凋亡和RANKL产生的增加在内皮质和小梁表面的骨吸收增加之前出现。QVD不仅完全抑制了HLU触发的骨细胞凋亡增加,还抑制了两个部位的RANKL产生和骨吸收激活。最后,μCT研究表明,凋亡抑制完全防止了HLU导致的小梁骨丢失。这些数据共同表明,骨细胞凋亡在触发骨细胞RANKL产生以及激活导致废用性骨丢失的新的骨吸收过程中起核心和控制作用。©2016美国骨与矿物质研究学会。