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首页> 外文期刊>Growth hormone and IGF research: Official journal of the Growth Hormone Research Society and the International IGF Research Society >Transgenic overexpression of pregnancy-associated plasma protein-A in skeletal muscle of mice increases myofiber size and central nucleation in sedentary muscle and promotes muscle regeneration in the injured muscle
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Transgenic overexpression of pregnancy-associated plasma protein-A in skeletal muscle of mice increases myofiber size and central nucleation in sedentary muscle and promotes muscle regeneration in the injured muscle

机译:妊娠肌肉骨骼肌肉骨骼蛋白-A的转基因过表达增加了久坐肌肉肌的肌纤维大小和中央成核,并促进受伤肌肉中的肌肉再生

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摘要

Objective: While there is compelling evidence for an anabolic role of PAPP-A, an IGFBP protease, in muscle development, its effect on dynamic regulation of muscle regeneration has not been investigated. In this study, we evaluated the effect of transgenic PAPP-A overexpression in skeletal muscle of mice on myofiber formation in intact and crush-injured tibialus anterior muscle. Design: Skeletal muscle in transgenic mice overexpressing human PAPP-A in skeletal muscle was subjected to crush-injury. Myofiber formation and myogenic gene expression were then evaluated in injured or intact muscle of PAPP-A transgenic mice and wild-type mice. Results: In the intact muscle, aging PAPP-A transgenic (Tg.) mice (age of 12. months) showed more than a 2-fold increase in both myofiber size and number of nuclei per myofiber compared with their wild-type (Wt.) littermates. Myofibers with centered nuclei, a hallmark of muscle regeneration, were increased from < 1% in Wt. mice to 65% in Tg. muscle. In the injured muscle, reduced inflammatory cell infiltration and increased new myofiber size and the area occupied by new myofibers were observed in PAPP-A transgenic mice compared to wild-type littermates. MyoD and creatine kinase in the injured muscle was also significantly increased in the Tg. mice. Although TNF-α induced PAPP-A expression in skeletal myoblast culture and its expression increased upon injury, abrogation of TNF-α signaling in TNF-α receptor knockout mice had no impact on the extent of injury induction of PAPP-A. We also found that TGF-β expression was significantly increased following muscle injury in vivo and treatment with recombinant TGF-β in vitro significantly enhanced PAPP-A expression in skeletal myoblasts. Conclusion: Our findings demonstrate that exogenous PAPP-A can promote recovery of muscle injury in aging mice albeit the expression of endogenous PAPP-A had already been increased dramatically upon muscle injury.
机译:目的:虽然PAPP-A的合成代谢作用的令人信服的证据,但在肌肉发育中,它对肌肉再生动态调节的影响尚未研究。在这项研究中,我们评估了转基因PAPP-A在完整和粉碎伤害胫骨前肌肉中肌纤维形成的骨骼肌中过表达的影响。设计:过表达人PAPP-A在骨骼肌中的转基因小鼠的骨骼肌进行挤压损伤。然后在PAPP-A转基因小鼠和野生型小鼠的损伤或完整肌肉中评估MyoFiber形成和肌致源性基因表达。结果:在完整的肌肉中,老化PAPP-A转基因(Tg。)小鼠(12岁)的小鼠(12.个月)表现出超过2倍的肌纤维尺寸和每个肌纤维的核数量增加(WT 。)凋落物。具有居中核的肌纤维,肌肉再生的标志,从wt中的1%增加。小鼠在TG中达到65%。肌肉。在受伤的肌肉中,与野生型凋落物相比,在PAPP-A转基因小鼠中观察到降低炎症细胞浸润和增加的新肌纤维尺寸和新的肌纤维所占据的面积。在受伤肌肉中的Myod和肌酸激酶在Tg中也显着增加。老鼠。虽然TNF-α诱导的PAPP-A在骨骼肌细胞培养物中的表达及其表达在损伤时增加,TNF-α受体敲除小鼠中的TNF-α信号传导对PAPP-A的损伤程度没有影响。我们还发现,在体内肌肉损伤和重组TGF-β的体外治疗后,TGF-β表达显着增加,显着增强了骨肌细胞中的表达。结论:我们的研究结果表明,外源性PAPP-A可以促进衰老小鼠肌肉损伤的恢复,尽管肌肉损伤的内源性PAPP-A的表达已经增加。

著录项

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  • 作者单位

    Division of Regenerative Medicine Department of Medicine Loma Linda University Loma Linda CA;

    Division of Regenerative Medicine Department of Medicine Loma Linda University Loma Linda CA;

    Division of Regenerative Medicine Department of Medicine Loma Linda University Loma Linda CA;

    Musculoskeletal Disease Center Jerry L. Pettis Memorial Veterans Affairs Medical Center Loma;

    Division of Regenerative Medicine Department of Medicine Loma Linda University Loma Linda CA;

    Department of Biochemistry University of California Riverside CA United States;

    Musculoskeletal Disease Center Jerry L. Pettis Memorial Veterans Affairs Medical Center Loma;

    Musculoskeletal Disease Center Jerry L. Pettis Memorial Veterans Affairs Medical Center Loma;

    Division of Regenerative Medicine Department of Medicine Loma Linda University Loma Linda CA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 R34;
  • 关键词

    IGF-I; Muscle; Muscle regeneration; PAPP-A;

    机译:IGF-I;肌肉;肌肉再生;PAPP-A;

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