首页> 外文期刊>The Bulletin of Tokyo Dental College >Temporomandibular Joint Hypofunction Secondary to Unilateral Partial Discectomy Attenuates Degeneration in Murine Mandibular Condylar Cartilage
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Temporomandibular Joint Hypofunction Secondary to Unilateral Partial Discectomy Attenuates Degeneration in Murine Mandibular Condylar Cartilage

机译:颞下颌关节减少双侧部分椎间盘切除术减弱鼠下颌髁突软骨变性

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Mechanical overloading of the temporomandibular joint (TMJ) promotes both the initiation and progression of TMJ osteoarthritis (OA). New preclinical animal models are needed for the evaluation of the molecular basis of cellular load transmission. This would allow a better understanding of the underlying mechanisms of TMJ-OA pain and disability, and help identify new therapeutics for its early diagnosis and management. The purpose of this study was to evaluate the role of mechanical loading in the progression of TMJ-OA in surgical instability arising from unilateral partial discectomy (UPD) in a murine model. In the theoretical modelling employed, lower joint reaction forces were observed on the chewing (working) side of the TMJ in the murine craniomandibular musculoskeletal system. Hypofunction was induced secondary to UPD through surgically manipulating the working side using an unopposed molar model. When the working side was restricted to the same side as that on which UPD was performed, late-stage degeneration of the cartilage showed a significant reduction (p<0.05), with diminished fibrillation and erosion of the articular cartilage, cell clustering, and hypocellularity. Condylar remodelling and proteolysis of proteoglycans were less affected. Thus, select and specific late-stage changes in TMJ-OA were contextually linked with the local mechanical environment of the joint. These data underscore the value of the UPD mouse model in studying mechanobiological pathways activated during TMJ-OA, and suggest that therapeutically targeting mechanobiological stimuli is an effective strategy in improving long-term biological, clinical, and patient-based outcomes.
机译:颞下颌关节(TMJ)的机械过载促进TMJ骨关节炎(OA)的起始和进展。评估细胞载荷传输的分子基础需要新的临床前动物模型。这将使更好地了解TMJ-OA疼痛和残疾的潜在机制,并帮助确定新的诊断和管理的新治疗方法。本研究的目的是评估机械加载在小鼠模型中单侧部分椎间盘突出术(UPD)引起的TMJ-OA进展中的作用。在理论上使用的理论模型中,在鼠颅骨肌肉骨骼系统中的TMJ的咀嚼(工作)侧观察到较低的关节反应力。通过使用未备p的摩尔模型通过手法操纵工作侧,通过手术侧进行缓冲。当工作方限制在同一侧的情况下,在其上进行的同一侧,软骨的后期变性显示出显着的减少(P <0.05),颤音和关节软骨,细胞聚类和低细胞的侵蚀减少。常肠果改良和蛋白质苷e的蛋白水解的影响较小。因此,与关节的局部机械环境相关联,TMJ-OA中的选择和特定的晚期变化。这些数据强调了在TMJ-OA中激活的力学途径中的更新鼠标模型的值,并表明治疗靶向机动学刺激是改善长期生物,临床和患者的结果的有效策略。

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