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首页> 外文期刊>Acta Neuropathologica >The ultrastructure of peripheral nerve, motor end-plate and skeletal muscle in patients suffering from spinal muscular atrophy with respiratory distress type 1 (SMARD1)
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The ultrastructure of peripheral nerve, motor end-plate and skeletal muscle in patients suffering from spinal muscular atrophy with respiratory distress type 1 (SMARD1)

机译:患有1型呼吸窘迫(SMARD1)的脊髓性肌萎缩症患者的周围神经,运动终板和骨骼肌的超微结构

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摘要

Spinal muscular atrophy with respiratory distress type 1 (SMARD1) is genetically and clinically distinct from classic spinal muscular atrophy (SMA1). It results from mutations in the gene encoding immunoglobulin μ-binding protein 2 (IGHMBP2) on chromosome 11q13. Patients develop distally pronounced muscular weakness and early involvement of the diaphragm, resulting in respiratory failure. Sensory and autonomic nerves are also affected at later stages of the disease. We investigated peripheral nerves, skeletal muscles and neuromuscular junctions (NMJ) ultrastructurally in five unrelated patients and three siblings with genetically confirmed SMARD1. In mixed motor and sensory nerves we detected Wallerian degeneration and axonal atrophy similar to the ultrastructural findings described in SMA1. Isolated axonal atrophy was evident in purely sensory nerves. All investigated NMJ of patients with SMARD1 were dysmorphic and lacked a terminal axon. Moreover, we also observed characteristics of neuropathies, such as abnormalities in myelination, that have not been described in spinal muscular atrophies so far. Based on these findings we conclude that impairment of IGHMBP2 function leads to axonal degeneration, abnormal myelin formation, and motor end-plate degeneration.
机译:遗传性和临床上与经典型脊髓性肌萎缩症(SMA1)在遗传和临床上不同,患有1型呼吸窘迫的脊髓性肌萎缩症。它是由11q13染色体上编码免疫球蛋白μ结合蛋白2(IGHMBP2)的基因突变引起的。患者出现远端明显的肌肉无力和and肌早期受累,导致呼吸衰竭。感觉神经和自主神经在疾病的后期也受到影响。我们调查了五名无亲缘关系的患者和三名经遗传学证实为SMARD1的兄弟姐妹的超微结构的周围神经,骨骼肌和神经肌肉接头(NMJ)。在运动和感觉神经混合中,我们检测到了Wallerian变性和轴突萎缩,类似于SMA1中描述的超微结构发现。单纯的感觉神经中可见轴突萎缩。所有调查的SMARD1患者的NMJ都是畸形的,并且缺乏终末轴突。此外,我们还观察了迄今为止尚未在脊髓性肌萎缩症中描述的神经病变的特征,例如髓鞘形成异常。基于这些发现,我们得出结论,IGHMBP2功能受损会导致轴突变性,异常髓鞘形成和运动终板变性。

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