LaStayo Paul, McDonagh Paul, Lipovic Dani, Napoles Phyllis, Bartholomew Amelia, Esser Karyn, Lindstedt Stan
University of Utah, Division of Physical Therapy and the Department of Orthopedics, Salt Lake City, UT 84108, USA.
J Geriatr Phys Ther. 2007;30(3):128-34. doi: 10.1519/00139143-200712000-00008.
Elderly individuals participate in resistance exercise to induce an anabolic response and grow muscle to help overcome functional deficits. It is thought that a muscle damage and inflammatory response to resistance exercise is a necessary prerequisite for an anabolic and muscle growth response.
This is a descriptive study of 11 elderly individuals in rehabilitation who underwent a 2-3x/week high force resistance exercise that used eccentric contractions. Serum measures of muscle damage, inflammation, and an anabolic response are reported along with changes in muscle mass as measured with dual energy X-ray absorptiometry.
Negative work increased >3-fold during the 11 weeks of resistance exercise. There were no significant changes in the damage measure of serum creatine kinase (pretraining: 18.5 +/- 1.2 Sigma units/ml; post-training: 19.2 +/- 1.1 Sigma units/ml). Proinflammatory tumor necrosis factor-alpha values remained within normal range (<4.0 pg/ml) throughout the 11 weeks of training. A nonsignificant trend for an anabolic increase (65%) in insulin like growth factor-1 was noted along with a significant increase (6%) in thigh muscle mass.
Neither damage, nor inflammation appear to be prerequisites for inducing anabolic and muscle growth responses in elderly individuals undergoing a high force resistance exercise with eccentric contractions.
老年人参与抗阻运动以引发合成代谢反应并增加肌肉量,从而帮助克服功能缺陷。人们认为,抗阻运动引起的肌肉损伤和炎症反应是合成代谢和肌肉生长反应的必要前提。
这是一项对11名康复期老年人的描述性研究,他们每周进行2 - 3次使用离心收缩的高强度抗阻运动。报告了肌肉损伤、炎症和合成代谢反应的血清指标,以及用双能X线吸收法测量的肌肉量变化。
在11周的抗阻运动期间,负功增加了3倍以上。血清肌酸激酶的损伤指标无显著变化(训练前:18.5±1.2西格玛单位/毫升;训练后:19.2±1.1西格玛单位/毫升)。在整个11周的训练过程中,促炎细胞因子肿瘤坏死因子-α的值保持在正常范围内(<4.0皮克/毫升)。观察到胰岛素样生长因子-1有合成代谢增加(65%)的不显著趋势,同时大腿肌肉量显著增加(6%)。
对于进行高强度离心收缩抗阻运动的老年人,损伤和炎症似乎都不是引发合成代谢和肌肉生长反应的前提条件。