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肌肉废用四天会损害年轻和老年健康男性的单纤维收缩功能。

Four days of muscle disuse impairs single fiber contractile function in young and old healthy men.

机构信息

SDU Muscle Research Cluster, Institute of Sports Science and Clinical Biomechanics, University of Southern Denmark, Odense, Denmark.

出版信息

Exp Gerontol. 2013 Feb;48(2):154-61. doi: 10.1016/j.exger.2012.11.005. Epub 2012 Dec 3.

Abstract

The purpose of the study was to investigate the effects of 4 days of disuse (knee brace) on contractile function of isolated vastus lateralis fibers (n=486) from 11 young (24.3±0.9 yrs) and 11 old (67.2±1.0 yrs) healthy men having comparable levels of physical activity. Prior to disuse single fiber specific force (maximal Ca(2+)-activated force per cross-sectional area) was lower in MHC I vs. IIa fibers (p<0.05) both in young (44%) and old (32%), and specific force of MHC IIa fibers was lower in old vs. young (19%, p<0.05). Further, Ca(2+) sensitivity was higher in MHC I vs. IIa fibers (p<0.05) in both age groups. Following disuse single fiber specific force decreased (p<0.05) in MHC I fibers in young (-19%) and old (-17%), and in MHC IIa fibers in young (-21%) but not in old (-11%; ns). The extent of these decreases did not differ between young and old. Ca(2+) sensitivity decreased (p<0.05) in MHC I fibers in old (-0.11 pCa units) but not in young (-0.08 pCa units; ns). The extent of these decreases was greater in old vs. young (p<0.05). In conclusion, 4 days of lower limb disuse led to marked impairments in single muscle fiber specific force independently of age, while changes in Ca(2+) sensitivity were dependent on age and MHC isoform composition. The present findings stress the importance of determining and implementing effective preventive and rehabilitative approaches for old individuals exposed to as little as 4 days of disuse.

摘要

研究目的在于探究 4 天制动(膝关节支具固定)对来自 11 名年轻(24.3±0.9 岁)和 11 名老年(67.2±1.0 岁)健康男性的离体股外侧肌纤维收缩功能的影响,这些男性的体力活动水平相当。在制动前,与 MHC IIa 纤维相比,MHC I 纤维的单纤维比力(横截面积的最大 Ca(2+)-激活力)更低(p<0.05),且无论在年轻人(44%)还是老年人(32%)中均是如此,而 MHC IIa 纤维的比力在老年人中比年轻人更低(19%,p<0.05)。此外,在两个年龄组中,MHC I 纤维的 Ca(2+)敏感性均高于 MHC IIa 纤维(p<0.05)。制动后,MHC I 纤维的单纤维比力在年轻人中下降(p<0.05)(-19%),在老年人中下降(p<0.05)(-17%),而 MHC IIa 纤维在年轻人中下降(p<0.05)(-21%),但在老年人中没有下降(-11%;无统计学差异)。这些下降在年轻人和老年人之间没有差异。Ca(2+)敏感性在老年 MHC I 纤维中下降(p<0.05)(-0.11 pCa 单位),但在年轻的 MHC I 纤维中没有下降(-0.08 pCa 单位;无统计学差异)。这种下降在老年人中比年轻人更明显(p<0.05)。总之,4 天的下肢制动导致单肌纤维比力明显受损,这与年龄无关,而 Ca(2+)敏感性的变化则依赖于年龄和 MHC 同工型组成。本研究结果强调了为暴露于仅仅 4 天制动的老年个体确定和实施有效预防和康复措施的重要性。

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