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首页> 外文期刊>The FASEB Journal >Rapamycin nanoparticles target defective autophagy in muscular dystrophy to enhance both strength and cardiac function
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Rapamycin nanoparticles target defective autophagy in muscular dystrophy to enhance both strength and cardiac function

机译:雷帕霉素纳米粒子靶向肌营养不良症中的缺陷自噬,以增强强度和心脏功能

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Duchenne muscular dystrophy in boys progresses rapidly to severe impairment of muscle function and death in the second or third decade of life. Current supportive therapy with corticosteroids results in a modest increase in strength as a consequence of a general reduction in inflammation, albeit with potential untoward long-term side effects and ultimate failure of the agent to maintain strength. Here, we demonstrate that alternative approaches that rescue defective autophagy in mdx mice, a model of Duchenne muscular dystrophy, with the use of rapamycin-loaded nanoparticles induce a reproducible increase in both skeletal muscle strength and cardiac contractile performance that is not achievable with conventional oral rapamycin, even in pharmacological doses. This increase in physical performance occurs in both young and adult mice, and, surprisingly, even in aged wild-type mice, which sets the stage for consideration of systemic therapies to facilitate improved cell function by autophagic disposal of toxic byproducts of cell death and regeneration.—Bibee, K. P., Cheng, Y.-J., Ching, J. K., Marsh, J. N., Li, A. J., Keeling, R. M., Connolly, A. M., Golumbek, P. T., Myerson, J. W., Hu, G., Chen, J., Shannon, W. D., Lanza, G. M., Weihl, C. C., Wickline, S. A. Rapamycin nanoparticles target defective autophagy in muscular dystrophy to enhance both strength and cardiac function.
机译:Duchenne在男孩的肌肉营养不良症迅速进展到生命的第二个或第三十年的肌肉功能和死亡的严重损害。目前具有皮质类固醇的支持性治疗导致强度的温度增加,因此由于炎症的一般性降低,虽然具有潜在的长期副作用和药剂的最终失效以保持强度。在这里,我们证明了在MDX小鼠中拯救缺陷的替代方法,Duchenne肌营养不良的模型,使用雷帕霉素负载的纳米颗粒诱导骨骼肌强度和心脏收缩性能的可重复性增加,这些性能不可能与常规口服无法实现雷帕霉素,即使在药理剂量。这种物理性能的增加发生在年轻和成年小鼠中,并且令人惊讶的是,即使在老年的野生型小鼠中,也可以通过自噬处理来促进细胞死亡和再生的毒性副产品的自噬处理来促进改善细胞功能的阶段。 。-Bibee,KP,Cheng,Y.-j.,Ching,JK,Marsh,JN,Li,AJ,Keeling,RM,Connolly,AM,Golumbek,PT,Myerson,JW,Hu,G.,Chen,J 。,香农,WD,LANZA,GM,WEIH1,CC,Wickline,SA雷帕霉素纳米粒子靶向肌营养不良症的缺陷自噬,以增强强度和心脏功能。

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