Oroboros Instruments, Schöpfstrasse 18, 6020, Innsbruck, Austria.
Dept Physiological Sciences, Univ Barcelona and Bellvitge Biomedical Research Inst, Spain.
Free Radic Biol Med. 2024 Oct;223:384-397. doi: 10.1016/j.freeradbiomed.2024.07.039. Epub 2024 Aug 2.
High-resolution respirometry in human permeabilized muscle fibers is extensively used for analysis of mitochondrial adaptions to nutrition and exercise interventions, and is linked to athletic performance. However, the lack of standardization of experimental conditions limits quantitative inter- and intra-laboratory comparisons.
In our study, an international team of investigators measured mitochondrial respiration of permeabilized muscle fibers obtained from three biopsies (vastus lateralis) from the same healthy volunteer to avoid inter-individual variability. High-resolution respirometry assays were performed together at the same laboratory to assess whether the heterogenity in published results are due to the effects of respiration media (MiR05 versus Z) with or without the myosin inhibitor blebbistatin at low- and high-oxygen regimes.
Our findings reveal significant differences between respiration media for OXPHOS and ETcapacities supported by NADH&succinate-linked substrates at different oxygen concentrations. Respiratory capacities were approximately 1.5-fold higher in MiR05 at high-oxygen regimes compared to medium Z near air saturation. The presence or absence of blebbistatin in human permeabilized muscle fiber preparations was without effect on oxygen flux.
Our study constitutes a basis to harmonize and establish optimum experimental conditions for respirometric studies of permeabilized human skeletal muscle fibers to improve reproducibility.
高分辨率呼吸测量技术在人类通透性肌纤维中的广泛应用,使其能够分析营养和运动干预对线粒体的适应,以及与运动表现的关系。然而,由于实验条件缺乏标准化,限制了定量的实验室间和实验室内部的比较。
在我们的研究中,一个国际研究小组对同一位健康志愿者的三个活检样本(股外侧肌)进行了通透性肌纤维的线粒体呼吸测量,以避免个体间的差异。高分辨率呼吸测量实验在同一实验室进行,以评估在不同氧浓度下,使用呼吸介质(MiR05 与 Z)是否有肌球蛋白抑制剂 blebbistatin 时,发表结果的异质性是否是由于呼吸介质的影响造成的。
我们的研究结果表明,在不同氧浓度下,使用 NADH 和琥珀酸连接的底物支持 OXPHOS 和 ETcapacities 的呼吸介质之间存在显著差异。在高氧条件下,MiR05 中的呼吸能力比介质 Z 高约 1.5 倍,接近空气饱和度。在人类通透性肌纤维制剂中添加或不添加 blebbistatin 对氧气通量没有影响。
我们的研究为协调和建立通透性人类骨骼肌纤维呼吸测量研究的最佳实验条件奠定了基础,以提高重复性。