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Endoplasmic Reticulum Stress Regulates Rat Mandibular Cartilage Thinning under Compressive Mechanical Stress

机译:内质网应力调节压缩机械应力下大鼠下颌软骨变薄

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摘要

Compressive mechanical stress-induced cartilage thinning has been characterized as a key step in the progression of temporomandibular joint diseases, such as osteoarthritis. However, the regulatory mechanisms underlying this loss have not been thoroughly studied. Here, we used an established animal model for loading compressive mechanical stress to induce cartilage thinning in vivo. The mechanically stressed mandibular chondrocytes were then isolated to screen potential candidates using a proteomics approach. A total of 28 proteins were identified that were directly or indirectly associated with endoplasmic reticulum stress, including protein disulfide-isomerase, calreticulin, translationally controlled tumor protein, and peptidyl-prolyl cis/trans-isomerase protein. The altered expression of these candidates was validated at both the mRNA and protein levels. The induction of endoplasmic reticulum stress by mechanical stress loading was confirmed by the activation of endoplasmic reticulum stress markers, the elevation of the cytoplasmic Ca2+ level, and the expansion of endoplasmic reticulum membranes. More importantly, the use of a selective inhibitor to block endoplasmic reticulum stress in vivo reduced the apoptosis observed at the early stages of mechanical stress loading and inhibited the proliferation observed at the later stages of mechanical stress loading. Accordingly, the use of the inhibitor significantly restored cartilage thinning. Taken together, these results demonstrated that endoplasmic reticulum stress is significantly activated in mechanical stress-induced mandibular cartilage thinning and, more importantly, that endoplasmic reticulum stress inhibition alleviates this loss, suggesting a novel pharmaceutical strategy for the treatment of mechanical stress-induced temporomandibular joint diseases.
机译:压缩性机械应力诱导的软骨变薄已被表征为颞下颌关节疾病(例如骨关节炎)发展的关键步骤。但是,尚未完全研究造成这种损失的调节机制。在这里,我们使用已建立的动物模型加载压缩机械应力,以诱导体内软骨变薄。然后使用蛋白质组学方法分离受机械应力的下颌软骨细胞,以筛选潜在的候选对象。总共鉴定出28种与内质网应激直接或间接相关的蛋白质,包括蛋白质二硫键异构酶,钙网蛋白,翻译控制的肿瘤蛋白和肽基脯氨酰顺/反异构酶蛋白。这些候选物表达的改变在mRNA和蛋白质水平均得到验证。通过内质网应激标志物的激活,细胞质Ca 2 + 水平的升高以及内质网膜的扩张,证实了机械应力加载诱导的内质网应激。更重要的是,使用选择性抑制剂在体内阻断内质网应激可减少在机械应力加载早期观察到的细胞凋亡,并抑制在机械应力加载后期观察到的增殖。因此,使用抑制剂可显着恢复软骨变薄。综上所述,这些结果表明内质网应力在机械应力诱导的下颌软骨变薄中被显着激活,更重要的是,内质网应力抑制可减轻这种损失,这提示了一种新的药物策略,用于治疗机械应力引起的颞下颌关节疾病。

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