Ochala Julien, Frontera Walter R, Dorer David J, Van Hoecke Jacques, Krivickas Lisa S
Muscle Cell Physiology Laboratory, Department of Physical Medicine and Rehabilitation, Spaulding Rehabilitation Hospital, and Harvard Medical School, Boston, Massachusetts, USA.
J Gerontol A Biol Sci Med Sci. 2007 Apr;62(4):375-81. doi: 10.1093/gerona/62.4.375.
The current investigation was designed to: (a) assess the impact of aging on elastic characteristics of single skeletal muscle fibers from young (N = 6) and older men (N = 6); and (b) correlate the potential changes, with the fiber contractile properties. Chemically skinned single muscle fibers (n = 235) from vastus lateralis muscle were maximally activated. Maximal force and cross-sectional area were measured, and specific force calculated. The slack test was used to measure maximal unloaded shortening velocity. A quick release of 0.15% of fiber length was applied to determine instantaneous stiffness. The myosin heavy chain isoform composition of each single fiber was determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). Aging induces changes in both fiber elasticity (i.e., increased instantaneous stiffness) and contractility (i.e., reduced specific force and unloaded shortening velocity) in type I and IIa fibers. However, the changes in fiber stiffness may not directly influence contractile characteristics alterations.
(a)评估衰老对年轻男性(N = 6)和老年男性(N = 6)单根骨骼肌纤维弹性特性的影响;(b)将潜在变化与纤维收缩特性相关联。对来自股外侧肌的化学去膜单根肌纤维(n = 235)进行最大激活。测量最大力量和横截面积,并计算比力。采用松弛试验测量最大无负荷缩短速度。施加0.15%纤维长度的快速释放以确定瞬时刚度。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)确定每根单纤维的肌球蛋白重链同工型组成。衰老会导致I型和IIa型纤维的纤维弹性(即瞬时刚度增加)和收缩性(即比力和无负荷缩短速度降低)发生变化。然而,纤维刚度的变化可能不会直接影响收缩特性的改变。