Muscle Research Group, Murdoch Children's Research Institute , Parkville, Victoria, Australia.
School of Medicine, Western Sydney University , Campbelltown, New South Wales, Australia.
J Gen Physiol. 2023 Feb 6;155(2). doi: 10.1085/jgp.202213208. Epub 2023 Jan 18.
The absence of dystrophin hypersensitizes skeletal muscle of lower and higher vertebrates to eccentric contraction (ECC)-induced strength loss. Loss of strength can be accompanied by transient and reversible alterations to sarcolemmal excitability and disruption, triad dysfunction, and aberrations in calcium kinetics and reactive oxygen species production. The degree of ECC-induced strength loss, however, appears dependent on several extrinsic and intrinsic factors such as vertebrate model, skeletal muscle preparation (in vivo, in situ, or ex vivo), skeletal muscle hierarchy (single fiber versus whole muscle and permeabilized versus intact), strength production, fiber branching, age, and genetic background, among others. Consistent findings across research groups show that dystrophin-deficient fast(er)-twitch muscle is hypersensitive to ECCs relative to wildtype muscle, but because preparations are highly variable and sensitivity to ECCs are used repeatedly to determine efficacy of many preclinical treatments, it is critical to evaluate the impact of skeletal muscle preparations on sensitivity to ECC-induced strength loss in dystrophin-deficient skeletal muscle. Here, we review and discuss variations in skeletal muscle preparations to evaluate the factors responsible for variations and discrepancies between research groups. We further highlight that dystrophin-deficiency, or loss of the dystrophin-glycoprotein complex in skeletal muscle, is not a prerequisite for accelerated strength loss-induced by ECCs.
肌营养不良蛋白的缺失会使低等和高等脊椎动物的骨骼肌对离心收缩(ECC)引起的力量损失变得敏感。力量的丧失可能伴随着肌细胞膜兴奋性的短暂和可逆改变、破坏、三联体功能障碍以及钙动力学和活性氧产生的异常。然而,ECC 引起的力量损失程度似乎取决于几个外在和内在因素,如脊椎动物模型、骨骼肌准备(体内、原位或离体)、骨骼肌层次(单纤维与整块肌肉以及通透与完整)、力量产生、纤维分支、年龄和遗传背景等。不同研究小组的一致发现表明,与野生型肌肉相比,缺乏肌营养不良蛋白的快速(收缩)肌对 ECC 更为敏感,但由于准备工作高度可变,并且敏感性 ECC 被反复用于确定许多临床前治疗的疗效,因此评估骨骼肌准备对 ECC 引起的力量损失的敏感性的影响至关重要在肌营养不良蛋白缺乏的骨骼肌中。在这里,我们回顾和讨论了骨骼肌准备的变化,以评估导致不同研究小组之间变化和差异的因素。我们进一步强调,肌营养不良蛋白缺乏或骨骼肌中肌营养不良蛋白聚糖复合物的丧失,并不是 ECC 引起的力量损失加速的先决条件。