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β 冠状病毒感染小鼠后的神经肌肉缺陷。

Neuromuscular defects after infection with a beta coronavirus in mice.

机构信息

Department of Morphology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.

Departamento de Ciências Básicas da Vida, Universidade Federal de Juiz de Fora, Campus Governador Valadares, MG, Brazil.

出版信息

Neurochem Int. 2023 Oct;169:105567. doi: 10.1016/j.neuint.2023.105567. Epub 2023 Jun 20.

Abstract

COVID-19 affects primarily the lung. However, several other systemic alterations, including muscle weakness, fatigue and myalgia have been reported and may contribute to the disease outcome. We hypothesize that changes in the neuromuscular system may contribute to the latter symptoms observed in COVID-19 patients. Here, we showed that C57BL/6J mice inoculated intranasally with the murine betacoronavirus hepatitis coronavirus 3 (MHV-3), a model for studying COVID-19 in BSL-2 conditions that emulates severe COVID-19, developed robust motor alterations in muscle strength and locomotor activity. The latter changes were accompanied by degeneration and loss of motoneurons that were associated with the presence of virus-like particles inside the motoneuron. At the neuromuscular junction level, there were signs of atrophy and fragmentation in synaptic elements of MHV-3-infected mice. Furthermore, there was muscle atrophy and fiber type switch with alteration in myokines levels in muscles of MHV-3-infected mice. Collectively, our results show that acute infection with a betacoronavirus leads to robust motor impairment accompanied by neuromuscular system alteration.

摘要

新型冠状病毒主要影响肺部。然而,已经报道了其他几种全身改变,包括肌肉无力、疲劳和肌痛,这些可能会影响疾病的结果。我们假设,神经系统的改变可能会导致新型冠状病毒患者出现上述症状。在这里,我们表明,用鼠β冠状病毒肝炎冠状病毒 3(MHV-3)经鼻腔接种的 C57BL/6J 小鼠,这是一种在 BSL-2 条件下研究新型冠状病毒的模型,可模拟严重的新型冠状病毒,会导致肌肉力量和运动活动的强大运动改变。后者的变化伴随着运动神经元的变性和丧失,这与运动神经元内存在病毒样颗粒有关。在神经肌肉接头水平,MHV-3 感染小鼠的突触元件有萎缩和碎片化的迹象。此外,MHV-3 感染小鼠的肌肉出现萎缩和纤维类型转换,肌细胞因子水平也发生改变。总之,我们的研究结果表明,β冠状病毒的急性感染会导致强大的运动障碍,并伴有神经肌肉系统的改变。

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