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Inhibition of caspase mediated apoptosis restores muscle function after crush injury in rat skeletal muscle

机译:抑制半胱天冬酶介导的细胞凋亡可恢复大鼠骨骼肌挤压伤后的肌肉功能

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摘要

Although muscle regeneration after injury is accompanied by apoptotic cell death, prolonged apoptosis inhibits muscle restoration. The goal of our study was to provide evidence that inhibition of apoptosis improves muscle function following blunt skeletal muscle injury. Therefore, 24 rats were used for induction of injury to the left soleus muscle using an instrumented clamp. All animals received either 3.3 mg/kg i.p. of the pan-caspase inhibitor Z-valinyl-alanyl-dl-aspartyl-fluoromethylketone (z-VAD.fmk) (n = 12 animals) or equivalent volumes of the vehicle solution DMSO (n = 12 animals) at 0 and 48 h after trauma. After assessment of the fast twitch and tetanic contraction capacity of the muscle at days 4 and 14 post injury, sampling of muscle tissue served for analysis of cell apoptosis (cleaved caspase 3 immunohistochemistry), cell proliferation (BrdU immunohistochemistry) as well as of muscle tissue area and myofiber diameter (HE planimetric analysis). Muscle strength analysis after 14 days in the z-VAD.fmk treated group revealed a significant increase in relative muscle strength when compared to the DMSO treated group. In contrast to the DMSO treated injured muscle, showing a transient switch towards a fast-twitching muscle phenotype (significant increase of the twitch-to-tetanic force ratio), z-VAD.fmk treated animals showed an enhanced healing process with a faster restoration of the twitch-to-tetanic force ratio towards the physiological slow-twitching muscle phenotype. This enhancement of muscle function was accompanied by a significant decrease of cell apoptosis and cell proliferation at day 4 as well as by a significant increase of muscle tissue area at day 4. At day 14 after injury z-VAD.fmk treated animals presented with a significant increase of myofiber diameter compared to the DMSO treated animals. Thus, z-VAD.fmk could provide a promising option in the anti-apoptotic therapy of muscle injury.
机译:尽管损伤后的肌肉再生伴随着凋亡细胞的死亡,但是延长的凋亡却抑制了肌肉的恢复。我们研究的目的是提供证据,证明钝性骨骼肌损伤后细胞凋亡的抑制可改善肌肉功能。因此,使用仪器夹将24只大鼠用于诱导对左比目鱼肌的损伤。所有动物腹膜内均接受3.3 mg / kg。半胱氨酸蛋白酶抑制剂Z-缬氨酰-丙氨酰-dl-天冬氨酰-氟甲基酮(z-VAD.fmk)(n = 12只动物)或等体积的媒介溶液DMSO(n = 12只动物)在0和48小时后外伤。在评估受伤后第4天和第14天时肌肉的快速抽搐和破伤风收缩能力后,对肌肉组织进行采样以分析细胞凋亡(裂解的caspase 3免疫组织化学),细胞增殖(BrdU免疫组织化学)以及肌肉组织面积和肌纤维直径(HE平面分析)。与DMSO治疗组相比,z-VAD.fmk治疗组14天后的肌肉强度分析显示相对肌肉强度显着增加。与DMSO处理的受伤肌肉相反,其显示了向快速抽搐的肌肉表型的短暂切换(抽搐与强直肌力量之比的显着增加),而z-VAD.fmk处理的动物则显示出愈合过程加快,恢复更快的特点。抽搐与强直肌力量之比对生理缓慢抽搐的肌肉表型的影响。肌肉功能的这种增强伴随着在第4天的细胞凋亡和细胞增殖的显着减少,以及在第4天的肌肉组织面积的显着增加。在损伤后的14天,z-VAD.fmk处理的动物表现出了一种与DMSO处理的动物相比,肌纤维直径显着增加。因此,z-VAD.fmk可以在抗细胞凋亡的肌肉损伤治疗中提供有希望的选择。

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