Department of Diagnostic Radiology and Nuclear Medicine, University of Maryland School of Medicine, Baltimore, Maryland, USA
J Appl Physiol (1985). 2012 Sep 1;113(5):808-16. doi: 10.1152/japplphysiol.00530.2012. Epub 2012 Jun 28.
Skeletal muscle injury is often assessed by clinical findings (history, pain, tenderness, strength loss), by imaging, or by invasive techniques. The purpose of this work was to determine if in vivo proton magnetic resonance spectroscopy ((1)H MRS) could reveal metabolic changes in murine skeletal muscle after contraction-induced injury. We compared findings in the tibialis anterior muscle from both healthy wild-type (WT) muscles (C57BL/10 mice) and dystrophic (mdx mice) muscles (an animal model for human Duchenne muscular dystrophy) before and after contraction-induced injury. A mild in vivo eccentric injury protocol was used due to the high susceptibility of mdx muscles to injury. As expected, mdx mice sustained a greater loss of force (81%) after injury compared with WT (42%). In the uninjured muscles, choline (Cho) levels were 47% lower in the mdx muscles compared with WT muscles. In mdx mice, taurine levels decreased 17%, and Cho levels increased 25% in injured muscles compared with uninjured mdx muscles. Intramyocellular lipids and total muscle lipid levels increased significantly after injury but only in WT. The increase in lipid was confirmed using a permeable lipophilic fluorescence dye. In summary, loss of torque after injury was associated with alterations in muscle metabolite levels that may contribute to the overall injury response in mdx mice. These results show that it is possible to obtain meaningful in vivo (1)H MRS regarding skeletal muscle injury.
骨骼肌损伤通常通过临床发现(病史、疼痛、压痛、力量丧失)、影像学或侵入性技术进行评估。这项工作的目的是确定体内质子磁共振波谱((1)H MRS)是否可以揭示收缩诱导损伤后小鼠骨骼肌的代谢变化。我们比较了来自健康野生型(WT)肌肉(C57BL/10 小鼠)和营养不良型(mdx 肌肉)(人类杜氏肌营养不良症的动物模型)的比目鱼肌在收缩诱导损伤前后的发现。由于 mdx 肌肉对损伤非常敏感,因此使用了轻度体内偏心损伤方案。不出所料,与 WT(42%)相比,mdx 小鼠在受伤后力量损失更大(81%)。在未受伤的肌肉中,与 WT 肌肉相比,mdx 肌肉中的胆碱(Cho)水平低 47%。在 mdx 小鼠中,与未受伤的 mdx 肌肉相比,受伤肌肉中的牛磺酸水平下降了 17%,Cho 水平升高了 25%。受伤后肌内脂质和总肌肉脂质水平显著增加,但仅在 WT 中增加。使用亲脂性荧光染料证实了脂质的增加。总之,损伤后扭矩的丧失与肌肉代谢物水平的改变有关,这些改变可能有助于 mdx 小鼠的整体损伤反应。这些结果表明,获得关于骨骼肌损伤的有意义的体内(1)H MRS 是可能的。