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转录和形态响应后明显肌肉收缩协议斯奈尔矮( Pit1 )小鼠。

Transcriptional and morphological responses following distinct muscle contraction protocols for Snell dwarf (Pit1) mice.

机构信息

Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Morgantown, West Virginia, USA.

出版信息

Physiol Rep. 2024 Sep;12(17):e70027. doi: 10.14814/phy2.70027.

Abstract

The Snell dwarf mouse (Pit1), an animal model of congenital combined pituitary hormone deficiency, displays skeletal muscle weakness. While enhanced responsivity to repeated exposures of muscle contractions have been documented for Snell dwarf mice, the response following single exposure to distinct contraction protocols remained uncharacterized. The purpose of this study was to investigate the muscle recovery of Snell dwarf and control littermate mice following a single exposure to two separate protocols-an intermittent slow velocity (30°/s) contraction protocol or a continuous rapid velocity (500°/s) contraction protocol. Following both protocols for control mice, torque values were 30% and 80% of pre-protocol values at 5 min and 3 days, respectively. At 10 days, performance returned to baseline for the 30°/s protocol and were depressed for the 500°/s protocol. For Snell dwarf mice following both protocols, torques were depressed to 5% of pre-protocol values at 5 min and returned to baseline by 3 days. Recovery following the 30°/s protocol for control mice and both protocols for Snell dwarf mice coincided with increased transcriptional output, upregulation of cytokine-mediated signaling genes, and a distribution shift to smaller muscle fibers with reduced area per nucleus. These features represent efficacious remodeling ubiquitous across distinct contraction paradigms in the context of the Pit1 mutation.

摘要

斯奈尔矮小鼠(Pit1)是一种先天性联合垂体激素缺乏症的动物模型,表现出骨骼肌无力。虽然已经记录了斯奈尔矮小鼠对重复肌肉收缩暴露的反应增强,但对单次接触不同收缩方案的反应仍未得到描述。本研究的目的是研究斯奈尔矮小鼠和对照同窝小鼠在单次暴露于两种不同方案后的肌肉恢复情况:一种是间歇性慢速度(30°/s)收缩方案,另一种是连续快速速度(500°/s)收缩方案。对于对照小鼠,在两种方案之后,扭矩值在 5 分钟和 3 天时分别为预方案值的 30%和 80%。在 10 天时,30°/s 方案的性能恢复到基线水平,而 500°/s 方案的性能则降低。对于斯奈尔矮小鼠,在两种方案之后,扭矩值在 5 分钟时降低到预方案值的 5%,并在 3 天内恢复到基线水平。对照小鼠的 30°/s 方案和斯奈尔矮小鼠的两种方案的恢复与转录输出增加、细胞因子介导的信号基因上调以及核内面积减少的较小肌纤维分布转移相吻合。这些特征代表了在 Pit1 突变的背景下,不同收缩范式中普遍存在的有效重塑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57d4/11371489/0f2df89c794e/PHY2-12-e70027-g002.jpg

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