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The role of estrogen in the control of rat osteocyte apoptosis.

机译:雌激素在控制大鼠骨细胞凋亡中的作用。

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We have previously shown that estrogen withdrawal by gonadotrophin-releasing hormone analogs (GnRHa) induces osteocyte death via apoptosis in human bone. Although it is likely that the increase in osteocyte death via apoptosis was related to the loss of estrogen, these experiments could not rule out a direct role for the GnRHa. Therefore, in this study, we have used a rat model of ovariectomy (OVX) to determine whether the effect of estrogen withdrawal extends to other species and to clarify the role of estrogen in the maintenance of osteocyte viability. Twelve 9-week-old rats were divided into three treatment groups: sham operated (SHAM) (n = 4), OVX (n = 4), and OVX + estrogen (E2) (25 microg/day) (n = 4). At 3 weeks following the start of treatment, tibial bones were removed. The percentage of osteocytes displaying DNA breaks, using an in situ nick-translation method, was significantly higher in the OVX group compared with the SHAM control in both cortical bone (10.04% vs. 2.31%, respectively; p < 0.0001) and trabecular bone (6.44% vs. 1.58%, respectively; p = 0.003). Addition of estrogen in the OVX animals completely abrogated the increase in osteocyte apoptosis in cortical bone (0.78%) and trabecular bone (1.17%). The percentage of apoptotic osteocytes decreased with increasing distance from the primary/secondary spongiosa interface below the growth plate in the OVX model and the OVX + E2 model. Nuclear morphology and electrophoresis of DNA confirmed the presence of apoptotic cells in the samples. In conclusion, OVX in the rat results in an increase in osteocyte apoptosis as a direct or indirect result of E2 loss. Addition of estrogen in the OVX animals prevents this increase in osteocyte apoptosis. These data confirm an important role for estrogen in the control of osteocyte apoptosis and the maintenance of osteocyte viability. Estrogen deficiency might, through compromising the viability of osteocyte networks, reduce the ability of bone to respond appropriately to loading.
机译:先前我们已经表明,促性腺激素释放激素类似物(GnRHa)撤出雌激素可通过人骨中的凋亡诱导骨细胞死亡。尽管通过细胞凋亡导致骨细胞死亡的增加可能与雌激素的丢失有关,但这些实验不能排除GnRHa的直接作用。因此,在这项研究中,我们使用了卵巢切除术(OVX)的大鼠模型来确定雌激素戒断的影响是否扩展到其他物种,并阐明雌激素在维持骨细胞生存力中的作用。将12只9周大的大鼠分为三个治疗组:假手术(SHAM)(n = 4),OVX(n = 4)和OVX +雌激素(E2)(25 microg /天)(n = 4) 。在开始治疗后3周,将胫骨切除。 OVX组中,使用原位切口平移方法显示出DNA断裂的骨细胞百分比与SHAM对照相比在皮质骨和小梁骨中均显着高于SHAM对照(分别为10.04%和2.31%; p <0.0001) (分别为6.44%和1.58%; p = 0.003)。在OVX动物中添加雌激素完全消除了皮质骨(0.78%)和小梁骨(1.17%)中骨细胞凋亡的增加。在OVX模型和OVX + E2模型中,随着距生长板下方的初级/次级海绵体界面的距离增加,凋亡性骨细胞的百分比降低。 DNA的核形态和电泳证实了样品中凋亡细胞的存在。总之,在大鼠中,OVX导致骨细胞凋亡增加,这是E2丢失的直接或间接结果。在OVX动物中添加雌激素可防止骨细胞凋亡的这种增加。这些数据证实了雌激素在控制骨细胞凋亡和维持骨细胞活力中的重要作用。雌激素缺乏症可能会通过损害骨细胞网络的生存能力而降低骨骼对负荷做出适当反应的能力。

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