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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 >Osteocyte apoptosis controls activation of intracortical resorption in response to bone fatigue.
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Osteocyte apoptosis controls activation of intracortical resorption in response to bone fatigue.

机译:响应于骨疲劳,骨细胞凋亡控制皮质内吸收的激活。

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摘要

Osteocyte apoptosis is spatially and temporally linked to bone fatigue-induced microdamage and to subsequent intracortical remodeling. Specifically, osteocytes surrounding fatigue microcracks in bone undergo apoptosis, and those regions containing apoptotic osteocytes co-localize exactly with areas subsequently resorbed by osteoclasts. Here we tested the hypothesis that osteocyte apoptosis is a key controlling step in the activation and/or targeting of osteoclastic resorption after bone fatigue. We carried out in vivo fatigue loading of ulna from 4- to 5-mo-old Sprague-Dawley rats treated with an apoptosis inhibitor (the pan-caspase inhibitor Q-VD-OPh) or with vehicle. Intracortical bone remodeling and osteocyte apoptosis were quantitatively assessed by standard histomorphometric techniques on day 14 after fatigue. Continuous exposure to Q-VD-OPh completely blocked both fatigue-induced apoptosis and the activation of osteoclastic resorption, whereas short-term caspase inhibition during only the first 2 days after fatigue resulted in >50% reductions in both osteocyte apoptosis and bone resorption. These results (1) show that osteocyte apoptosis is necessary to initiate intracortical bone remodeling in response to fatigue microdamage, (2) indicate a possible dose-response relationship between the two processes, and (3) suggest that early apoptotic events after fatigue-induced microdamage may play a substantial role in determining the subsequent course of tissue remodeling.
机译:骨细胞凋亡在空间和时间上与骨疲劳诱导的微损伤以及随后的皮层内重塑有关。具体而言,围绕骨中疲劳微裂纹的骨细胞会发生凋亡,而那些含有凋亡骨细胞的区域则与随后被破骨细胞吸收的区域完全共定位。在这里,我们测试了以下假设:骨疲劳后,骨细胞凋亡是激活和/或靶向破骨细胞吸收的关键控制步骤。我们对4至5个月大的Sprague-Dawley大鼠的尺骨进行了体内疲劳负荷,该大鼠用凋亡抑制剂(泛半胱天冬酶抑制剂Q-VD-OPh)或溶媒治疗。在疲劳后第14天,通过标准组织形态计量学技术定量评估皮质内骨重塑和骨细胞凋亡。连续暴露于Q-VD-OPh完全阻断了疲劳诱导的凋亡和破骨细胞吸收的激活,而仅在疲劳后的前两天对caspase的短期抑制会导致骨细胞凋亡和骨吸收的降低> 50%。这些结果(1)表明,骨细胞凋亡对于启动针对疲劳微损伤的皮层内骨重塑是必要的;(2)表明这两个过程之间可能存在剂量反应关系,并且(3)表明疲劳诱导后的早期凋亡事件微损伤可能在确定随后的组织重塑过程中起重要作用。

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