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Poloxamer 188 reduces the contraction-induced force decline in lumbrical muscles from mdx mice

机译:泊洛沙姆188减轻mdx小鼠收缩肌肉引起的收缩力下降

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摘要

Duchenne Muscular Dystrophy is a genetic disease caused by the lack of the protein dystrophin. Dystrophic muscles are highly susceptible to contraction-induced injury, and following contractile activity, have disrupted plasma membranes that allow leakage of calcium ions into muscle fibers. Because of the direct relationship between increased intracellular calcium concentration and muscle dysfunction, therapeutic outcomes may be achieved through the identification and restriction of calcium influx pathways. Our purpose was to determine the contribution of sarcolemmal lesions to the force deficits caused by contraction-induced injury in dystrophic skeletal muscles. Using isolated lumbrical muscles from dystrophic (mdx) mice, we demonstrate for the first time that poloxamer 188 (P188), a membrane-sealing poloxamer, is effective in reducing the force deficit in a whole mdx skeletal muscle. A reduction in force deficit was also observed in mdx muscles that were exposed to a calcium-free environment. These results, coupled with previous observations of calcium entry into mdx muscle fibers during a similar contraction protocol, support the interpretation that extracellular calcium enters through sarcolemmal lesions and contributes to the force deficit observed in mdx muscles. The results provide a basis for potential therapeutic strategies directed at membrane stabilization of dystrophin-deficient skeletal muscle fibers.
机译:Duchenne肌营养不良症是一种由于缺乏蛋白营养不良蛋白引起的遗传性疾病。营养不良的肌肉对收缩引起的损伤高度敏感,并且在收缩活动之后,已经破坏了质膜,从而使钙离子泄漏到肌肉纤维中。由于增加的细胞内钙浓度和肌肉功能障碍之间的直接关系,可以通过识别和限制钙内流途径来达到治疗效果。我们的目的是确定肌膜病变对营养不良性骨骼肌收缩引起的损伤所引起的力量不足的贡献。使用营养不良(mdx)小鼠的孤立腰肌,我们首次证明了膜密封性泊洛沙姆poloxamer 188(P188)有效减少整个mdx骨骼肌的力量不足。在暴露于无钙环境的mdx肌肉中也观察到力量不足的减少。这些结果,加上先前在类似的收缩方案中钙进入mdx肌肉纤维的观察结果,支持了细胞外钙通过肌膜病变进入并导致mdx肌肉中观察到的力不足的解释。该结果为针对肌营养不良蛋白缺陷的骨骼肌纤维的膜稳定化的潜在治疗策略提供了基础。

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