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Osteoprotective Effects of IL-33/ST2 Link to Osteociast Apoptosis

机译:IL-33 / ST2与成骨细胞凋亡的骨保护作用

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摘要

The relevance of IL-33 and its receptor ST2 for bone remodeling is not well-defined. Our aim was to assess the role and underlying mechanisms of IL-33/ST2 in mechanically induced bone remodeling. BALB/c (wild type) and ST2 deficient (St2(-/-)) mice were subjected to mechanical loading in alveolar bone. Microtomography, histology, and real-time quantitative PCR were performed to analyze bone parameters, apoptosis and bone cell counts, and expression of bone remodeling markers, respectively. MC3T3-E1 osteobLastic cells and bone marrow cells were used to verify if mechanical force triggered IL-33 and ST2 expression as well as the effects of IL-33 on osteoclast differentiation and activity. Mechanical loading increased the expression of IL-33 and ST2 in alveolar bone in vivo and in osteoblastic cells in vitro. St2(-/-) mice had increased mechanical loading-induced bone resorption, number of osteoclasts, and expression of proresorptive markers. In contrast, St2(-/-) mice exhibited reduced numbers of osteoblasts and apoptotic cells in periodontium and diminished expression of osteoblast signaling molecules. In vitro, IL-33 treatment inhibited osteoclast differentiation and activity even in the presence of receptor activator of NE-kappa B ligand. IL-33 also increased the expression of pro-apoptotic molecules, including Bcl-2-associated X protein (BAX), cell-surface Fas receptor (FAS), FASL, FAS-associated death domain, tumor necrosis factor-related apoptosis-inducing ligand, and BH3 interacting-domain death (BID). Overall, these findings suggest that IL-33/ST2 have anti-osteoclastogenic effects and reduce osteoclast formation and activity by inducing their apoptosis.
机译:IL-33及其受体ST2与骨重塑的相关性尚未明确。我们的目的是评估IL-33 / ST2在机械诱导的骨重塑中的作用和潜在机制。 BALB / c(野生型)和ST2缺陷(St2(-/-))小鼠在牙槽骨中受到机械负荷。进行显微断层扫描,组织学和实时定量PCR分别分析骨参数,细胞凋亡和骨细胞计数以及骨重塑标志物的表达。 MC3T3-E1破骨细胞和骨髓细胞用于验证机械力是否触发了IL-33和ST2的表达以及IL-33对破骨细胞分化和活性的影响。机械负荷增加了体内和体外成骨细胞中牙槽骨中IL-33和ST2的表达。 St2(-/-)小鼠具有增加的机械负荷诱导的骨吸收,破骨细胞的数量和增生标记的表达。相比之下,St2(-/-)小鼠牙周膜中成骨细胞和凋亡细胞的数量减少,成骨细胞信号分子的表达减少。在体外,即使在NE-κB配体的受体激活剂存在下,IL-33处理仍能抑制破骨细胞的分化和活性。 IL-33还增加了促凋亡分子的表达,包括Bcl-2相关X蛋白(BAX),细胞表面Fas受体(FAS),FASL,FAS相关死亡域,肿瘤坏死因子相关凋亡诱导配体和BH3相互作用域死亡(BID)。总体而言,这些发现表明IL-33 / ST2具有抗破骨细胞作用,并通过诱导其凋亡来减少破骨细胞的形成和活性。

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