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Single Muscle Fibre Contractile Properties in Young and Old Men and Women

机译:老年男女的单肌纤维收缩特性

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摘要

The purpose of this study was to determine whether there was an age-related decline in the isometric and isotonic contractile function of permeabilized slow (MHC I) and fast (MHC IIa) single muscle fibres. Vastus lateralis muscle fibres from six young men (YM; 25 ± 1 years), six young women (YW; 25 ± 1 years), six old men (OM; 80 ± 4 years) and six old women (OW; 78 ± 2 years) were studied at 15 °C for in vitro force-velocity properties, peak force and contractile velocity. Peak power was 23-28 % lower (P < 0.05) in MHC I fibres of YW compared to the other three groups. MHC IIa peak power was 25–40 % lower (P < 0.05) in OW compared to the other three groups. No difference was found in MHC I and IIa normalized peak power among any of the groups. Peak force was lower (P < 0.05) in the YW (MHC I fibres) and OW (MHC IIa fibres) compared to the other groups. Differences in peak force with ageing were negated when normalized to cell size. No age-related differences were observed in single fibre contractile velocity of MHC I and IIa fibres. These data show that YW (MHC I) and OW (MHC IIa) have lower single fibre absolute peak power and peak force compared to men; however, these differences are negated when normalized to cell size. General muscle protein concentrations (i.e. total, sarcoplasmic and myofibrillar) from the same biopsies were lower (4–9 %, P < 0.05) in the OM and OW. However, myosin and actin concentrations were not different (P > 0.05) among the four groups. These data suggest that differences in whole muscle strength and function that are often observed with ageing appear to be regulated by quantitative rather than qualitative parameters of single muscle fibre contractile function.
机译:这项研究的目的是确定透化的慢速(MHC I)和快速(MHC IIa)单根肌纤维的等距和等张收缩功能是否存在与年龄相关的下降。六名年轻男性(YM; 25±1岁),六名年轻女性(YW; 25±1岁),六名老年男人(OM; 80±4岁)和六名老年女性(OW; 78±2)的外侧外侧肌纤维在15°C下研究了体外力-速度特性,峰值力和收缩速度。与其他三组相比,YW的MHC I纤维的峰值功率降低了23-28%(P <0.05)。与其他三组相比,OW中的MHC IIa峰值功率低25–40%(P <0.05)。在任何组中,MHC I和IIa归一化峰值功率均无差异。与其他组相比,YW(MHC I纤维)和OW(MHC IIa纤维)的峰值力更低(P <0.05)。当归一化为细胞大小时,峰值力随老化的差异被消除。在MHC I和IIa纤维的单纤维收缩速度中未观察到与年龄相关的差异。这些数据表明,与男性相比,YW(MHC I)和OW(MHC IIa)具有较低的单纤维绝对峰值功率和峰值力。但是,当标准化为像元大小时,这些差异将被消除。在OM和OW中,来自相同活检组织的一般肌肉蛋白浓度(即总,肌浆和肌原纤维)较低(4–9%,P <0.05)。然而,四组中肌球蛋白和肌动蛋白浓度没有差异(P> 0.05)。这些数据表明,随着年龄的增长,经常观察到的整个肌肉力量和功能的差异似乎受单条肌纤维收缩功能的定量而非定性参数的调节。

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