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Enhancement of microvessel tortuosity in the vastus lateralis muscle of old men in response to endurance training

机译:耐力训练增强老年人外侧外侧肌微血管曲折性

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摘要

Muscle microvascularization is usually quantified in transverse sections, in absolute terms (capillaries around fibres, CAF, or capillary-to-fibre ratio, C/F) or as CAF related to fibre area (CAF/area, CAFA). The capillary-to-fibre perimeter exchange ratio (CFPE) has been introduced in order to assess the role of the capillary-to-fibre interface in resistance to O2 diffusion. The ratio between the length of capillaries in contact with fibres and fibre perimeter (LC/PF) has also been used as an index for capillary tortuosity. The possibility of change in capillary tortuosity with endurance training was not considered in previous studies. Consequently, this study investigated the effect of 14 weeks of endurance training on muscle microvascularization, including microvessel tortuosity, in 11 elderly men (8th decade). Microvessels were analysed using the CD31 antibody. Together with the significant increase in peak oxygen exchange and citrate synthase activity, there was a significant increase in C/F. While CFPE and CAFA remained unchanged, an important finding was the clear increase in LC/PF (56%; P < 0.001) for a same sarcomere length. We also found a strong correlation between oxidative enzyme activity and LC/PF both before and after training. These results indicate that endurance training induces significant remodelling in the microvessel network in elderly men and that an increase in the degree of microvessel tortuosity would be an important mechanism of adaptation to endurance training.
机译:肌肉微血管化通常以绝对值(纤维周围的毛细血管,CAF,或毛细管与纤维的比率,C / F)或与纤维面积有关的CAF(CAF /面积,CAFA)量化。为了评估毛细管与纤维界面在抗O2扩散方面的作用,已经引入了毛细管与纤维的周长交换比(CFPE)。与纤维接触的毛细管长度与纤维周长之间的比率(LC / PF)也已用作毛细管曲折度的指标。先前的研究未考虑通过耐力训练改变毛细血管曲折的可能性。因此,本研究调查了11个老年男性(第8个十年)进行的14周耐力训练对肌肉微血管形成(包括微血管曲折)的影响。使用CD31抗体分析微血管。与峰值氧交换和柠檬酸合酶活性的显着增加一起,C / F也显着增加。当CFPE和CAFA保持不变时,一个重要发现是在相同的肌节长度下,LC / PF明显增加(56%; P <0.001)。我们还发现训练前后氧化酶活性与LC / PF之间存在很强的相关性。这些结果表明,耐力训练在老年男性的微血管网络中引起了显着的重塑,并且微血管弯曲度的增加将是适应耐力训练的重要机制。

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