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Publication : Selective Spatiotemporal Vulnerability of Central Nervous System Neurons to Pathologic TAR DNA-Binding Protein 43 in Aged Transgenic Mice.

First Author  van Hummel A Year  2018
Journal  Am J Pathol Volume  188
Issue  6 Pages  1447-1456
PubMed ID  29577934 Mgi Jnum  J:264748
Mgi Id  MGI:6193187 Doi  10.1016/j.ajpath.2018.03.002
Citation  van Hummel A, et al. (2018) Selective Spatiotemporal Vulnerability of Central Nervous System Neurons to Pathologic TAR DNA-Binding Protein 43 in Aged Transgenic Mice. Am J Pathol 188(6):1447-1456
abstractText  Amyotrophic lateral sclerosis (ALS) is a rapidly progressing and fatal disease characterized by muscular atrophy because of loss of upper and lower motor neurons. Histopathologically, most patients with ALS have abnormal cytoplasmic accumulation and aggregation of the nuclear RNA-regulating protein TAR DNA-binding protein 43 (TDP-43). Pathogenic mutations in the TARDBP gene that encode TDP-43 have been identified in familial ALS. We have previously reported transgenic mice with neuronal expression of human TDP-43 carrying the pathogenic A315T mutation (iTDP-43(A315T) mice), presenting with early-onset motor deficits in adolescent animals. Here, we analyzed aged iTDP-43(A315T) mice, focusing on the spatiotemporal profile and progression of neurodegeneration in upper and lower motor neurons. Magnetic resonance imaging and histologic analysis revealed a differential loss of upper motor neurons in a hierarchical order as iTDP-43(A315T) mice aged. Furthermore, we report progressive gait problems, profound motor deficits, and muscle atrophy in aged iTDP-43(A315T) mice. Despite these deficits and TDP-43 pathologic disorders in lower motor neurons, stereological analysis did not show cell loss in spinal cords. Taken together, neuronal populations in aging iTDP-43(A315T) mice show differential susceptibility to the expression of human TDP-43(A315T).
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