脊髓性肌萎缩
形状记忆合金*
医学
神经科学
转化研究
相关性(法律)
疾病
运动神经元
动物模型
物理医学与康复
平移运动
临床意义
肌肉萎缩
萎缩
理想(伦理)
运动活动
治疗窗口
神经生理学
作者
Markus Leo,Linda-Isabell Schmitt,Kai Christine Liebig,Stefanie Hezel,Svenja Neuhoff,A. Roos,C Kleinschnitz,M. Weiler,Günther René,Ulrike Schara-Schmidt,Peter Claus,Tim Hagenacker
标识
DOI:10.1177/22143602251405151
摘要
Spinal muscular atrophy (SMA) comprises a spectrum of clinical severities, yet the pathomechanisms of late-onset forms (Type III) remain insufficiently understood. While severe early-onset SMA has been extensively investigated using existing models, their translational relevance to adult disease is limited. Here, we recommend the 4-copy SMN2 mouse (FVB.Cg- Smn1 tm1Hung Tg( SMN2 )2Hung/J) as the most appropriate model for late-onset SMA. This model exhibits delayed onset, progressive motor dysfunction, and extended survival, enabling the study of chronic neurodegenerative processes, including astrocyte-mediated motor neuron pathology. Its prolonged therapeutic window makes the model suitable for mechanistic and translational investigations of late-onset SMA.
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