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Connexin 43 hemichannels protect bone loss during estrogen deficiency

机译:连接蛋白43半通道可保护雌激素缺乏时的骨质流失

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Estrogen deficiency in postmenopausal women is a major cause of bone loss, resulting in osteopenia, osteoporosis, and a high risk for bone fracture. Connexin 43 (Cx43) hemichannels (HCs) in osteocytes play an important role in osteocyte viability, bone formation, and remodeling. We showed here that estrogen deficiency reduced Cx43 expression and HC function. To determine if functional HCs protect osteocytes and bone loss during estrogen deficiency, we adopted an ovariectomy model in wild-type (WT) and two transgenic Cx43 mice: R76W (dominant-negative mutant inhibiting only gap junction channels) and Cx43 Δ130-136 (dominant-negative mutant compromising both gap junction channels and HCs). The bone mineral density (BMD), bone structure, and histomorphometric changes of cortical and trabecular bones after ovariectomy were investigated. Our results showed that the Δ130-136 transgenic cohort had greatly decreased vertebral trabecular bone mass compared to WT and R76W mice, associated with a significant increase in the number of apoptotic osteocyte and empty lacunae. Moreover, osteoclast surfaces in trabecular and cortical bones were increased after ovariectomy in the R76W and WT mice, respectively, but not in ?130-136 mice. These data demonstrate that impairment of Cx43 HCs in osteocytes accelerates vertebral trabecular bone loss and increase in osteocyte apoptosis, and further suggest that Cx43 HCs in osteocytes protect trabecular bone against catabolic effects due to estrogen deficiency.
机译:绝经后妇女的雌激素缺乏是骨质流失的主要原因,导致骨质减少,骨质疏松和骨折的高风险。骨细胞中的连接蛋白43(Cx43)半通道(HCs)在骨细胞活力,骨形成和重塑中起重要作用。我们在这里表明雌激素缺乏会降低Cx43表达和HC功能。为了确定功能性HC是否在雌激素缺乏期间保护骨细胞和骨丢失,我们在野生型(WT)和两只转基因Cx43小鼠中采用了卵巢切除模型:R76W(显性负突变体仅抑制间隙连接通道)和Cx43Δ130-136(显性-阴性突变体破坏了间隙连接通道和HCs)。研究了卵巢切除术后皮质和小梁骨的骨矿物质密度(BMD),骨结构和组织形态变化。我们的结果表明,与WT和R76W小鼠相比,Δ130-136转基因人群的椎骨小梁骨量大大减少,与凋亡性骨细胞和空洞的数量显着增加有关。此外,R76W和WT小鼠卵巢切除后,小梁和皮质骨中的破骨细胞表面分别增加,而?130-136小鼠则没有。这些数据表明,骨细胞中Cx43 HCs的损伤加速了椎骨小梁的骨丢失并增加了骨细胞的凋亡,并且进一步表明骨细胞中的Cx43 HCs保护小梁的骨免受雌激素缺乏引起的分解代谢作用。

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