Swan Malcolm A, Sato Eugene, Galatz Leesa M, Thomopoulos Stavros, Ward Samuel R
Department of Orthopaedic Surgery, University of California La Jolla, CA, USA.
Department of Bioengineering, University of California La Jolla, CA, USA.
J Shoulder Elbow Surg. 2014 Dec;23(12):1786-1791. doi: 10.1016/j.jse.2014.03.002. Epub 2014 May 28.
Understanding rotator cuff muscle function during disease development and after repair is necessary for preventing degeneration and improving postsurgical outcomes, respectively. The rat is a commonly used rotator cuff animal model; however, unlike humans, rats continue to grow throughout their lifespan, so age-related changes in muscle structure may complicate an understanding of muscle adaptations to injury.
Infraspinatus and supraspinatus muscle mass, fiber length, pennation angle, sarcomere length, and physiological cross-sectional area (PCSA) were measured in Sprague-Dawley rats (n = 30) with a body mass ranging from 51 to 814 g (approximately 3 weeks to approximately 18 months).
Both the supraspinatus and infraspinatus showed a striking conservation of sarcomere length throughout growth. There was linear growth in muscle mass and PCSA, nonlinear growth in muscle length and fiber bundle length, and a linear relationship between humeral head diameter and fiber bundle length, suggesting that muscle fiber length (serial sarcomere number) adjusted according to skeletal dimensions. These muscle growth trajectories allowed sarcomere length to remain nearly constant.
During the typical rat rotator cuff experimental period (animal mass, 400-600 g), muscle mass will increase by 30%, fiber length will increase by 7%, and PCSA will increase by 27%, but sarcomere lengths are nearly constant. Therefore, these normal growth-induced changes in architecture must be considered when muscle atrophy or fiber shortening is measured after rotator cuff tears in this model.
了解肩袖肌群在疾病发展过程中和修复后的功能,分别对于预防退变和改善术后效果是必要的。大鼠是常用的肩袖动物模型;然而,与人类不同,大鼠在其整个生命周期中持续生长,因此肌肉结构的年龄相关变化可能会使对肌肉损伤适应性的理解变得复杂。
测量了体重在51至814克(约3周龄至约18月龄)的Sprague-Dawley大鼠(n = 30)的冈下肌和冈上肌的肌肉质量、纤维长度、羽状角、肌节长度和生理横截面积(PCSA)。
冈上肌和冈下肌在整个生长过程中肌节长度均表现出显著的守恒性。肌肉质量和PCSA呈线性增长,肌肉长度和纤维束长度呈非线性增长,并且肱骨头直径与纤维束长度之间存在线性关系,这表明肌肉纤维长度(串联肌节数量)根据骨骼尺寸进行了调整。这些肌肉生长轨迹使肌节长度几乎保持恒定。
在典型的大鼠肩袖实验期间(动物体重400 - 600克),肌肉质量将增加30%,纤维长度将增加7%,PCSA将增加27%,但肌节长度几乎恒定。因此,在该模型中测量肩袖撕裂后肌肉萎缩或纤维缩短时,必须考虑这些正常生长引起的结构变化。