Department of Physical Medicine and Rehabilitation, Medical School, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Appl Physiol (1985). 2013 Jan 1;114(1):90-8. doi: 10.1152/japplphysiol.00525.2012. Epub 2012 Oct 25.
We examined the effects of mild therapeutic exercise during a period of inactivity on size and contractile functions of myosin heavy chain (MHC) type I (n = 204) and type II (n = 419) single fibers from the medial gastrocnemius in three age groups. Young adult (5-12 mo), middle-aged (24-31 mo), and old (32-37 mo) F344BNF1 rats were assigned to one of three groups: weight-bearing control, non-weight bearing (NWB), and NWB plus exercise (NWBX). Fourteen days of hindlimb suspension were applied in NWB rats. The NWBX rats exercised on the treadmill for 15 min, four times a day, during the period of NWB. The NWBX did not improve peak power, but increased normalized power of MHC type I fibers in young adult rats. In MHC type II fibers, NWBX did not change peak power, isometric maximal force, V(max), and fiber size from young adult and middle-aged rats. NWBX did not improve peak power and isometric maximal force and showed a dramatic decline in V(max) and normalized power in the old rats. Collectively, mild treadmill exercise during a period of inactivity does not improve peak power of MHC type I or type II fiber from the gastrocnemius in young, middle-aged, and old rats. However, NWBX is beneficial in enhancing normalized power of MHC type I fibers in young adult rats, most likely due to the stimulus intensity and the ability of the individual fibers to adapt to the stimulus. In contrast, several factors, such as impaired adaptation potential, inappropriate exercise intensity, or increased susceptibility to muscle damage, may contribute to the lack of improvement in the older rats.
我们研究了在一段不活动期间进行轻度治疗性运动对来自内侧比目鱼肌的肌球蛋白重链 (MHC) Ⅰ型 (n = 204) 和Ⅱ型 (n = 419) 单纤维的大小和收缩功能的影响。年轻成年 (5-12 个月)、中年 (24-31 个月) 和老年 (32-37 个月) F344BNF1 大鼠被分为三组:负重对照组、非负重 (NWB) 和 NWB 加运动 (NWBX)。NWB 大鼠应用后肢悬吊 14 天。NWBX 大鼠在 NWB 期间每天在跑步机上运动 15 分钟,每天 4 次。NWBX 并未改善峰值功率,但增加了年轻成年大鼠 MHC Ⅰ型纤维的归一化功率。在 MHC Ⅱ型纤维中,NWBX 并未改变峰值功率、等长最大力、V(max)和纤维大小,无论来自年轻成年还是中年大鼠。NWBX 未改善峰值功率和等长最大力,在老年大鼠中 V(max)和归一化功率显著下降。总之,在不活动期间进行轻度跑步机运动并不能改善来自年轻、中年和老年大鼠比目鱼肌的 MHC Ⅰ型或Ⅱ型纤维的峰值功率。然而,NWBX 有利于增强年轻成年大鼠 MHC Ⅰ型纤维的归一化功率,这很可能是由于刺激强度和个体纤维适应刺激的能力。相比之下,一些因素,如适应潜力受损、运动强度不当或肌肉损伤易感性增加,可能导致老年大鼠缺乏改善。