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Testing the efficacy of a human full-length OPG-Fc analog in a severe model of cardiotoxin-induced skeletal muscle injury and repair

机译:在心肌毒素诱导的骨骼肌损伤和修复中的严重模型中测试人全长OPG-FC模拟的疗效

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摘要

Although receptor-activator of nuclear factor κB (RANK), its ligand RANKL, and osteoprotegerin (OPG), which are members of the tumor necrosis factor (TNF) superfamily, were first discovered in bone cells, they are also expressed in other cells, including skeletal muscle. We previously showed that the RANK/RANKL/OPG pathway is involved in the physiopathology of Duchenne muscular dystrophy and that a mouse full-length OPG-Fc (mFL-OPG-Fc) treatment is superior to muscle-specific RANK deletion in protecting dystrophic muscles. Although mFL-OPG-Fc has a beneficial effect in the context of muscular dystrophy, the function of human FL-OPG-Fc (hFL-OPG-Fc) during muscle repair is not yet known. In the present study, we investigated the impacts of an hFL-OPG-Fc treatment following the intramuscular injection of cardiotoxin (CTX). We show that a 7-day hFL-OPG-Fc treatment improved force production of soleus muscle. hFL-OPG-Fc also improved soleus muscle integrity and regeneration by increasing satellite cell density and fiber cross-sectional area, attenuating neutrophil inflammatory cell infiltration at 3 and 7 days post-CTX injury, increasing the anti-inflammatory M2 macrophages 7 days post-CTX injury. hFL-OPG-Fc treatment also favored M2 over M1 macrophage phenotypic polarization in vitro. We show for the first time that hFL-OPG-Fc improved myotube maturation and fusion in vitro and reduced cytotoxicity and cell apoptosis. These findings demonstrate that hFL-OPG-Fc has therapeutic potential for muscle diseases in which repair and regeneration are impaired.
机译:尽管核因子κB(等级)的受体激活剂,其配体RANKL和骨蛋白酶(OPG)是肿瘤坏死因子(TNF)超家族的成员,但在骨细胞中首先发现它们在其他细胞中也表达,包括骨骼肌。我们以前表明,等级/ RANKL / OPG途径涉及Duchenne肌营养不良症的物理病理学,并且小鼠全长OPG-Fc(MFL-OPG-FC)处理优于保护营养不良肌肉中的肌肉特异性等级缺失。虽然MFL-OPG-FC在肌营养不良的背景下具有有益效果,但肌肉修复期间人FL-OPG-FC(HFL-OPG-FC)的功能尚不清楚。在本研究中,我们研究了HFL-OPG-FC治疗在肌内注射心肌毒素(CTX)后的影响。我们展示了7天的HFL-OPG-FC治疗改善了SOLEUS肌肉的力量。 HFL-OPG-FC还通过增加卫星细胞密度和纤维横截面积,在CTX后3和7天内衰减中性粒细胞炎性细胞浸润,增加抗炎M2巨噬细胞7天后CTX损伤。 HFL-OPG-FC治疗还在体外接受M1巨噬细胞表型极化。我们首次显示HFL-OPG-FC在体外改善肌管成熟和融合,并降低细胞毒性和细胞凋亡。这些研究结果表明,HFL-OPG-FC对修复和再生受损的肌肉疾病具有治疗潜力。

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