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TDP-43-based animal models of neurodegeneration: new insights into ALS pathology and pathophysiology.

机译:基于TDP-43的神经变性动物模型:ALS病理学和病理生理学的新见解。

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The clinical and pathological overlap between amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD) suggests these diseases share common underlying mechanisms, a suggestion underscored by the discovery that TDP-43 inclusions are a key pathologic feature in both ALS and FTLD. This finding, combined with the identification of TDP-43 mutations in ALS, directly implicates this DNA/RNA binding protein in disease pathogenesis in ALS and FTLD. However, many key questions remain, including what is the normal function of TDP-43, and whether disease-associated mutations produce toxicity in the nucleus, cytoplasm or both. Furthermore, although pathologic TDP-43 inclusions are clearly associated with many forms of neurodegeneration, whether TDP-43 aggregation is a key step in the pathogenesis in ALS, FTLD and other disorders remains to be proven. This review will compare the features of numerous recently developed animal models of TDP-43-related neurodegeneration, and discuss how they contribute to our understanding of the pathogenesis of human ALS and FTLD.
机译:肌萎缩性侧索硬化症(ALS)和额颞叶变性(FTLD)之间的临床和病理学重叠表明,这些疾病具有共同的潜在机制,这一发现突显了TDP-43夹杂物是ALS和FTLD的关键病理特征。这一发现与ALS中TDP-43突变的鉴定相结合,直接将这种DNA / RNA结合蛋白牵连到ALS和FTLD的疾病发病中。但是,仍然存在许多关键问题,包括TDP-43的正常功能是什么,以及与疾病相关的突变是否会在细胞核,细胞质或两者中产生毒性。此外,尽管病理性TDP-43内含物显然与许多形式的神经退行性疾病有关,但TDP-43聚集是否是ALS,FTLD和其他疾病发病机理中的关键步骤仍有待证明。这篇综述将比较最近开发的TDP-43相关的神经变性动物模型的特征,并讨论它们如何促进我们对人类ALS和FTLD发病机理的理解。

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