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首页> 外文期刊>American Journal of Physiology >Disruption of claudin-18 diminishes ovariectomy-induced bone loss in mice
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Disruption of claudin-18 diminishes ovariectomy-induced bone loss in mice

机译:claudin-18的破坏减少了卵巢切除术引起的小鼠骨丢失

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Claudin-18 (Cldn-18), a member of the tight junction family of proteins, is a negative regulator of RANKL-induced osteoclast differentiation and bone resorption (BR) in vivo. Since estrogen deficiency decreases bone mass in part by a RANKL-mediated increase in BR, we evaluated whether estrogen regulates Cldn-18 expression in bone. We found that Cldn-18 expression was reduced in the bones of estrogen deficient mice, whereas it was increased by estrogen treatment in osteoblasts and osteoclasts in vitro. We next evaluated the role of Cldn-18 in mediating estrogen-induced bone loss. Cldn-18 knockout (KO) and littermate wild-type (WT) mice were ovariectomized (OVX) or sham operated at 6 wk of age, and the skeletal phenotype was evaluated at 14 wk of age. PIXImus revealed that total body, femur, and lumbar BMD were reduced 8-13% (P< 0.05) after 8 wk of OVX compared with sham in WT mice. As expected, total body, femur, and lumbar BMD were reduced 14-21% (P< 0.05) in Cldn-18 KO sham mice compared with sham WT mice. However, ovariectomy failed to induce significant changes in BMD of total body, femur, or vertebra in the Cldn-18 KO mice. μCT analysis of the distal femur revealed that trabecular (Tb) bone volume was decreased 50% in the OVX WT mice compared with sham that was caused by a 26% decrease in Tb number and a 30% increase in Tb separation (all P< 0.05). By contrast, none of the Tb parameters were significantly different in OVX Cldn-18 KO mice compared with sham KO mice. Histomorphometric analyses at the Tb site revealed that neither osteoclast surface nor osteoclast perimeter was increased significantly as a consequence of OVX in either genotype at the time point examined. Based on our findings, we conclude that the estrogen effects on osteoclasts may in part be mediated via regulation of Cldn-18 signaling.
机译:Claudin-18(Cldn-18)是蛋白质紧密连接家族的成员,是RANKL诱导的破骨细胞分化和体内骨吸收(BR)的负调节剂。由于雌激素缺乏会部分通过RANKL介导的BR减少而减少骨量,因此我们评估了雌激素是否调节骨骼中Cldn-18的表达。我们发现,在雌激素缺乏小鼠的骨骼中,Cldn-18表达降低,而在成骨细胞和破骨细胞中,通过雌激素处理,其表达增加。接下来,我们评估了Cldn-18在介导雌激素诱导的骨质流失中的作用。在6周龄卵巢切除卵巢(OVX)或假手术,对Cldn-18基因敲除(KO)和同窝野生型(WT)小鼠进行手术,并在14周龄时评估骨骼的表型。 PIXImus揭示,与假手术相比,OVX小鼠8周后,全身,股骨和腰部BMD降低了8-13%(P <0.05)。如预期的那样,与假WT小鼠相比,Cldn-18 KO假小鼠的全身,股骨和腰部BMD降低了14-21%(P <0.05)。但是,卵巢切除术未能在Cldn-18 KO小鼠中诱导全身,股骨或椎骨BMD的显着变化。股骨远端的μCT分析表明,与假手术相比,OVX WT小鼠的小梁(Tb)骨量减少了50%,这是由Tb数量减少26%和Tb分离增加30%引起的(所有P <0.05 )。相反,与假KO小鼠相比,OVX Cldn-18 KO小鼠的Tb参数均无显着差异。 Tb部位的组织形态计量学分析显示,在所检查的时间点,任一基因型的OVX都不会使破骨细胞表面和破骨细胞周界显着增加。根据我们的发现,我们得出结论,破骨细胞的雌激素作用可能部分是通过调节Cldn-18信号传导来介导的。

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