首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Interleukin-15 Administration Improves Diaphragm Muscle Pathology and Function in Dystrophic mdx Mice
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Interleukin-15 Administration Improves Diaphragm Muscle Pathology and Function in Dystrophic mdx Mice

机译:白细胞介素15施用可改善营养不良mdx小鼠的Dia肌病理学和功能。

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摘要

Interleukin (IL)-15, a cytokine expressed in skeletal muscle, has been shown to have muscle anabolic effects >in vitro and to slow muscle wasting in rats with cancer cachexia. Whether IL-15 has therapeutic potential for diseases such as Duchenne muscular dystrophy (DMD) is unknown. We examined whether IL-15 administration could ameliorate the dystrophic pathology in the diaphragm muscle of the >mdx mouse, an animal model for DMD. Four weeks of IL-15 treatment improved diaphragm strength, a highly significant finding because respiratory function is a mortality predictor in DMD. Enhanced diaphragm function was associated with increased muscle fiber cross-sectional area and decreased collagen infiltration. IL-15 administration was not associated with changes in T-cell populations or alterations in specific components of the ubiquitin proteasome pathway. To determine the effects of IL-15 on myofiber regeneration, muscles of IL-15-treated and untreated wild-type mice were injured myotoxically, and their functional recovery was assessed. IL-15 had a mild anabolic effect, increasing fiber cross-sectional area after 2 and 6 days but not after 10 days. Our findings demonstrate that IL-15 administration improves the pathophysiology of dystrophic muscle and highlight a possible therapeutic role for IL-15 in the treatment of neuromuscular disorders especially in which muscle wasting is indicated.
机译:白细胞介素(IL)-15是骨骼肌中表达的一种细胞因子,已被证实具有>体外的肌肉合成代谢作用,并能减缓癌症恶病质大鼠的肌肉消耗。 IL-15是否对诸如杜氏肌营养不良症(DMD)等疾病具有治疗潜力尚不清楚。我们检查了IL-15的施用是否可以改善> mdx 小鼠(DMD的动物模型)的the肌的营养不良性病理。经过四周的IL-15治疗后,隔膜强度得以改善,这是一个非常重要的发现,因为呼吸功能是DMD中的死亡率预测指标。 diaphragm肌功能增强与肌纤维横截面积增加和胶原蛋白浸润减少有关。 IL-15的给药与T细胞群体的变化或遍在蛋白蛋白酶体途径特定成分的改变无关。为了确定IL-15对肌纤维再生的影响,对经过IL-15治疗和未经治疗的野生型小鼠的肌肉进行了肌肉毒性损伤,并对其功能恢复进行了评估。 IL-15具有轻微的合成代谢作用,在2天和6天后增加了纤维横截面积,但在10天后没有增加。我们的发现表明,IL-15的使用改善了营养不良性肌肉的病理生理,并突出了IL-15在治疗神经肌肉疾病(尤其是指示肌肉消瘦)中可能的治疗作用。

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