Arruda Ellen M, Mundy Kevin, Calve Sarah, Baar Keith
Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan, USA.
Am J Physiol Regul Integr Comp Physiol. 2007 Feb;292(2):R983-7. doi: 10.1152/ajpregu.00483.2006. Epub 2006 Sep 28.
Denervation or inactivity is known to decrease the mass and alter the phenotype of muscle and the mechanics of tendon. It has been proposed that a shift in the collagen of the extracellular matrix (ECM) of the muscle, increasing type III and decreasing type I collagen, may be partially responsible for the observed changes. We directly investigated this hypothesis using quantitative real-time PCR on muscles and tendons that had been denervated for 5 wk. Five weeks of denervation resulted in a 2.91-fold increase in collagen concentration but no change in the content of collagen in the muscle, whereas in the tendon there was no change in either the concentration or content of collagen. The expression of collagen I, collagen III, and lysyl oxidase mRNA in the ECM of muscle decreased (76 +/- 1.6%, 73 +/- 2.3%, and 83 +/- 3.2%, respectively) after 5 wk of denervation. Staining with picrosirius red confirmed the earlier observation of a change in staining color from red to green. Taken with the observed equivalent decreases in collagen I and III mRNA, this suggests that there was a change in orientation of the ECM of muscle becoming more aligned with the axis of the muscle fibers and no change in collagen type. The change in collagen orientation may serve to protect the smaller muscle fibers from damage by increasing the stiffness of the ECM and may partly explain why the region of the tendon closest to the muscle becomes stiffer after inactivity.
已知去神经支配或缺乏活动会降低肌肉质量、改变肌肉表型以及肌腱力学特性。有人提出,肌肉细胞外基质(ECM)中胶原蛋白的转变,即III型胶原蛋白增加而I型胶原蛋白减少,可能是观察到的这些变化的部分原因。我们通过对去神经支配5周的肌肉和肌腱进行定量实时PCR,直接对这一假设进行了研究。去神经支配5周导致胶原蛋白浓度增加2.91倍,但肌肉中胶原蛋白含量没有变化,而在肌腱中,胶原蛋白的浓度和含量均无变化。去神经支配5周后,肌肉ECM中I型胶原蛋白、III型胶原蛋白和赖氨酰氧化酶mRNA的表达分别下降(76±1.6%、73±2.3%和83±3.2%)。用天狼星红染色证实了之前观察到的染色颜色从红色变为绿色的现象。结合观察到的I型和III型胶原蛋白mRNA的等效下降,这表明肌肉ECM的取向发生了变化,变得更与肌纤维轴对齐,且胶原蛋白类型没有变化。胶原蛋白取向的变化可能通过增加ECM的硬度来保护较小的肌纤维免受损伤,并且可能部分解释了为什么在缺乏活动后,最靠近肌肉的肌腱区域会变得更硬。