Department of Rehabilitation, Faculty of Rehabilitation, Hiroshima International University, Kurose-Gakuendai 555-36, Higashi-Hiroshima, Hiroshima, Japan.
Department of Rehabilitation, Faculty of Rehabilitation, Hiroshima International University, Kurose-Gakuendai 555-36, Higashi-Hiroshima, Hiroshima, Japan.
Clin Biomech (Bristol). 2020 May;75:104993. doi: 10.1016/j.clinbiomech.2020.104993. Epub 2020 Mar 27.
Although knee immobilization may deteriorate the mechanical parameters of the anterior cruciate ligament, such as stiffness and failure strength, it is unknown whether it induces laxity in the whole joint. We examined the effects of immobilization on anterior-posterior joint laxity and mechanical properties of the anterior cruciate ligament, as well as histological and gene expression profiles of the joint capsule in rat knee joints.
Unilateral rat knees were immobilized using an external fixator. Non-immobilized contralateral knees were used as controls. After 3 weeks, anterior-posterior laxity in the whole joint (i.e., a complex of bones, ligaments, and capsule) and stiffness and failure strength in the anterior cruciate ligament were examined using a universal testing machine. Moreover, the knee joint capsule was histologically analyzed, and the expression levels of genes related to collagen turnover in the posterior joint capsule were examined.
Joint immobilization slightly but significantly increased anterior-posterior laxity compared with the contralateral side. Unexpectedly, the stiffness and failure strength of the anterior cruciate ligament were not altered by immobilization. There was no correlation found between anterior cruciate ligament stiffness and anterior-posterior joint laxity. In the posterior joint capsule, thinning of the collagen fiber bundles accompanied by a decrease in COL3A1 gene expression was observed after immobilization.
These results suggest that 3 weeks of joint immobilization alters the biomechanical integrity in the knee joint without altering the mechanical properties of the anterior cruciate ligament. Changes in the joint capsule may contribute to the immobilization-induced increase in anterior-posterior laxity.
尽管膝关节固定可能会使前交叉韧带的机械参数(如刚度和破坏强度)恶化,但尚不清楚它是否会导致整个关节松弛。我们研究了固定对前-后关节松弛和前交叉韧带机械性能的影响,以及关节囊的组织学和基因表达谱在大鼠膝关节中的变化。
使用外固定器对单侧大鼠膝关节进行固定。未固定的对侧膝关节作为对照。3 周后,使用万能试验机检查整个关节(即骨骼、韧带和囊的复合体)的前-后松弛度以及前交叉韧带的刚度和破坏强度。此外,对膝关节囊进行组织学分析,并检测后关节囊中与胶原周转相关的基因表达水平。
关节固定与对侧相比,仅轻微但显著增加了前-后松弛度。出乎意料的是,前交叉韧带的刚度和破坏强度不受固定的影响。前交叉韧带的刚度与前-后关节松弛度之间没有相关性。在关节囊的后部,固定后观察到胶原纤维束变薄,COL3A1 基因表达减少。
这些结果表明,3 周的关节固定会改变膝关节的生物力学完整性,而不会改变前交叉韧带的机械性能。关节囊的变化可能导致固定引起的前-后松弛度增加。