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去神经支配导致的骨骼肌萎缩不受小鼠麻木程度的影响。

Denervation Atrophy of Skeletal Muscle is Not Influenced by Numb Levels in Mice.

机构信息

National Center for the Medical Consequences of Spinal Cord Injury, James J. Peters VA.

Department of Medicine, Icahn School of Medicine at Mount Sinai.

出版信息

Int J Med Sci. 2023 Jan 31;20(3):376-384. doi: 10.7150/ijms.77603. eCollection 2023.

Abstract

Skeletal muscle undergoes rapid and extensive atrophy following nerve transection though the underlying mechanisms remain incompletely understood. We previously showed transiently elevated Notch 1 signaling in denervated skeletal muscle that was abrogated by administration of nandrolone (an anabolic steroid) combined with replacement doses of testosterone. Numb is an adaptor molecule present in myogenic precursors and skeletal muscle fibers that is vital for normal tissue repair after muscle injury and for skeletal muscle contractile function. It is unclear whether the increase in Notch signaling observed in denervated muscle contributes to denervation and whether expression of Numb in myofibers slows denervation atrophy. To address these questions, the degree of denervation atrophy, Notch signaling, and Numb expression was studied over time after denervation in C57B6J mice treated with nandrolone, nandrolone plus testosterone or vehicle. Nandrolone increased Numb expression and reduced Notch signaling. Neither nandrolone alone nor nandrolone plus testosterone changed the rate of denervation atrophy. We next compared rates of denervation atrophy between mice with conditional, tamoxifen-inducible knockout of Numb in myofibers and genetically identical mice treated with vehicle. Numb cKO had no effect on denervation atrophy in this model. Taken together, the data indicate that loss of Numb in myofibers does not alter the course of denervation atrophy and that upregulation of Numb and blunting of the denervation-atrophy induced activation of Notch do not change the course of denervation atrophy.

摘要

骨骼肌在神经切断后会迅速广泛萎缩,但其潜在机制尚不完全清楚。我们之前曾表明,失神经骨骼肌中 Notch1 信号短暂升高,而给予雄激素结合替代剂量的雄激素(一种合成代谢类固醇)可消除这种升高。Numb 是一种存在于成肌前体细胞和骨骼肌纤维中的衔接分子,对于肌肉损伤后的正常组织修复和骨骼肌收缩功能至关重要。目前尚不清楚失神经肌肉中观察到的 Notch 信号增加是否有助于失神经,以及肌纤维中 Numb 的表达是否会减缓失神经萎缩。为了解决这些问题,研究了 C57B6J 小鼠在失神经后不同时间点的去神经萎缩程度、Notch 信号和 Numb 表达,这些小鼠用雄激素结合替代剂量的雄激素(一种合成代谢类固醇)、雄激素结合替代剂量的雄激素(一种合成代谢类固醇)或载体处理。雄激素增加了 Numb 的表达并降低了 Notch 信号。雄激素单独或雄激素结合替代剂量的雄激素均未改变去神经萎缩的速度。接下来,我们比较了肌纤维中条件性、他莫昔芬诱导型 Numb 敲除的小鼠与用载体处理的遗传上相同的小鼠之间去神经萎缩的速度。在这种模型中,Numb cKO 对去神经萎缩没有影响。总之,这些数据表明,肌纤维中 Numb 的缺失不会改变去神经萎缩的进程,而上调 Numb 并钝化去神经-萎缩诱导的 Notch 激活并不能改变去神经萎缩的进程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c776/9969502/644529dcfe49/ijmsv20p0376g001.jpg

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