Department of Human Physiology, University of Oregon, Eugene, 97403-1240, USA.
Am J Physiol Regul Integr Comp Physiol. 2012 Aug 15;303(4):R376-86. doi: 10.1152/ajpregu.00146.2012. Epub 2012 Jul 3.
Total knee arthroplasty (TKA) is the most common and a cost-effective surgical remediation for older adults with long-standing osteoarthritis. In parallel with the expanding population of older adults, the number of TKAs performed annually is projected to be 3.48 million by 2030. During this surgery, a tourniquet is used to stop blood flow to the operative leg. However, the molecular pathways that are affected by tourniquet use during TKA continue to be elucidated. We hypothesized that components of the catabolic FoxO3a (i.e., MuRF1, MAFbx, and Bnip3) pathway, as well as the cellular stress pathways [i.e., stress-activated protein kinase (SAPK)/JNK and MAPKs], are upregulated during TKA. The purpose of this study was to measure changes in transcripts and proteins involved in muscle cell catabolic and stress-activated pathways. We obtained muscle biopsies from subjects, 70 ± 1.3 yr, during TKA, from the vastus lateralis at baseline (before tourniquet inflation), during maximal ischemia (just before tourniquet release), and during reperfusion. Total tourniquet time was 43 ± 2 min and reperfusion time was 16 ± 1. Significant increases in FoxO3a downstream targets, MAFbx and MuRF1, were present for mRNA levels during ischemia (MAFbx, P = 0.04; MuRF1, P = 0.04), and protein expression during ischemia (MAFbx, P = 0.002; MuRF1, P = 0.001) and reperfusion (MuRF1, P = 0.002). Additionally, stress-activated JNK gene expression (P = 0.01) and protein were elevated during ischemia (P = 0.001). The results of this study support our hypothesis that protein degradation pathways are stimulated during TKA. Muscle protein catabolism is likely to play a role in the rapid loss of muscle volume measured within 2 wk of this surgery.
全膝关节置换术(TKA)是治疗长期骨关节炎老年患者的最常见且具有成本效益的手术方法。随着老年人口的不断增加,预计到 2030 年,每年进行的 TKA 数量将达到 348 万。在这种手术中,使用止血带阻止手术腿的血液流动。然而,TKA 过程中止血带使用影响的分子途径仍在阐明之中。我们假设 FoxO3a 的分解代谢途径(即 MuRF1、MAFbx 和 Bnip3)以及细胞应激途径(即应激激活蛋白激酶(SAPK)/JNK 和 MAPKs)的组成部分在 TKA 过程中会被上调。本研究的目的是测量参与肌肉细胞分解代谢和应激激活途径的转录物和蛋白质的变化。我们从 70±1.3 岁的患者的股外侧肌中获得了 TKA 期间的肌肉活检,分别在基线(止血带充气前)、最大缺血期(止血带即将释放前)和再灌注期进行。总止血带时间为 43±2 分钟,再灌注时间为 16±1 分钟。缺血期的 FoxO3a 下游靶标 MAFbx 和 MuRF1 的 mRNA 水平(MAFbx,P=0.04;MuRF1,P=0.04)和蛋白表达(MAFbx,P=0.002;MuRF1,P=0.001)以及再灌注期(MuRF1,P=0.002)均显著增加。此外,缺血期应激激活的 JNK 基因表达(P=0.01)和蛋白表达(P=0.001)升高。本研究结果支持我们的假设,即 TKA 期间会刺激蛋白质降解途径。肌肉蛋白分解可能在术后 2 周内测量到的肌肉体积迅速减少中起作用。