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小鼠比目鱼肌纤维束在重复性向心和离心收缩过程中的激活代谢成本及机械效率

Metabolic Cost of Activation and Mechanical Efficiency of Mouse Soleus Muscle Fiber Bundles During Repetitive Concentric and Eccentric Contractions.

作者信息

Lemaire Koen K, Jaspers Richard T, Kistemaker Dinant A, van Soest A J Knoek, van der Laarse Willem J

机构信息

Amsterdam Movement Science, Vrije Universiteit Amsterdam, Amsterdam, Netherlands.

Laboratory for Myology, Amsterdam Movement Science, Vrije Universiteit Amsterdam, Amsterdam, Netherlands.

出版信息

Front Physiol. 2019 Jun 21;10:760. doi: 10.3389/fphys.2019.00760. eCollection 2019.

Abstract

Currently available data on the energetics of isolated muscle preparations are based on bouts of less than 10 muscle contractions, whereas metabolic energy consumption is mostly relevant during steady state tasks such as locomotion. In this study we quantified the energetics of small fiber bundles of mouse soleus muscle during prolonged (2 min) series of contractions. Bundles ( = 9) were subjected to sinusoidal length changes, while measuring force and oxygen consumption. Stimulation (five pulses at 100 Hz) occurred either during shortening or during lengthening. Movement frequency (2-3 Hz) and amplitude (0.25-0.50 mm; corresponding to ± 4-8% muscle fiber strain) were close to that reported for mouse soleus muscle during locomotion. The experiments were performed at 32°C. The contributions of cross-bridge cycling and muscle activation to total metabolic energy expenditure were separated using blebbistatin. The mechanical work per contraction cycle decreased sharply during the first 10 cycles, emphasizing the importance of prolonged series of contractions. The mean ± SD fraction of metabolic energy required for activation was 0.37 ± 0.07 and 0.56 ± 0.17 for concentric and eccentric contractions, respectively (both 0.25 mm, 2 Hz). The mechanical efficiency during concentric contractions increased with contraction velocity from 0.12 ± 0.03 (0.25 mm 2 Hz) to 0.15 ± 0.03 (0.25 mm, 3 Hz) and 0.16 ± 0.02 (0.50 mm, 2 Hz) and was -0.22 ± 0.08 during eccentric contractions (0.25 mm, 2 Hz). The percentage of type I fibers correlated positively with mechanical efficiency during concentric contractions, but did not correlate with the fraction of metabolic energy required for activation.

摘要

目前关于分离肌肉制剂能量学的现有数据是基于少于10次肌肉收缩的情况,而代谢能量消耗在诸如运动等稳态任务中最为相关。在本研究中,我们量化了小鼠比目鱼肌小纤维束在长时间(2分钟)收缩系列中的能量学。对纤维束(n = 9)施加正弦长度变化,同时测量力和耗氧量。刺激(100 Hz的五个脉冲)在缩短或延长期间发生。运动频率(2 - 3 Hz)和幅度(0.25 - 0.50 mm;对应于±4 - 8%的肌纤维应变)接近小鼠比目鱼肌在运动时报道的数值。实验在32°C下进行。使用blebbistatin分离了横桥循环和肌肉激活对总代谢能量消耗的贡献。每个收缩周期的机械功在前10个周期中急剧下降,强调了长时间收缩系列的重要性。对于向心收缩和离心收缩(均为0.25 mm,2 Hz),激活所需代谢能量的平均±标准差分数分别为0.37 ± 0.07和0.56 ± 0.17。向心收缩期间的机械效率随着收缩速度从0.12 ± 0.03(0.25 mm,2 Hz)增加到0.15 ± 0.03(0.25 mm,3 Hz)和0.16 ± 0.02(0.50 mm,2 Hz),而在离心收缩(0.25 mm,2 Hz)期间为 - 0.22 ± 0.08。I型纤维的百分比与向心收缩期间的机械效率呈正相关,但与激活所需代谢能量的分数无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b0c/6599155/cb1784da24d0/fphys-10-00760-g001.jpg

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