运动神经元疾病的动物模型。

Laboratory animal science Pub Date : 1999-10-01
S L Green, R J Tolwani
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引用次数: 0

摘要

运动神经元疾病是一个通用术语,适用于广泛的一类神经退行性疾病,其特征是可归因于运动神经元丧失的致命性进行性肌肉无力、萎缩和瘫痪。目前,大多数运动神经元疾病都无法治愈,包括肌萎缩性侧索硬化症(ALS),这是最常见的人类运动神经元疾病,其病因在很大程度上仍然未知。运动神经元疾病(MND)的动物模型在理解这类人类神经退行性疾病的病因、遗传因素和病理机制方面取得了显著进展。在ALS研究的推动下,MND的动物模型已经证明了它们在阐明潜在原因和特定致病机制方面的有用性,并有助于推进有希望的新治疗方法从“实验室到床边”。本文综述了选定的已建立的MND动物模型的重要特征:基因工程小鼠和小鼠、犬和马的遗传性或自发发生的MND。
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Animal models for motor neuron disease.

Motor neuron disease is a general term applied to a broad class of neurodegenerative diseases that are characterized by fatally progressive muscular weakness, atrophy, and paralysis attributable to loss of motor neurons. At present, there is no cure for most motor neuron diseases, including amyotrophic lateral sclerosis (ALS), the most common human motor neuron disease--the cause of which remains largely unknown. Animal models of motor neuron disease (MND) have significantly contributed to the remarkable recent progress in understanding the cause, genetic factors, and pathologic mechanisms proposed for this class of human neurodegenerative disorders. Largely driven by ALS research, animal models of MND have proven their usefulness in elucidating potential causes and specific pathogenic mechanisms, and have helped to advance promising new treatments from "benchside to bedside." This review summarizes important features of selected established animal models of MND: genetically engineered mice and inherited or spontaneously occurring MND in the murine, canine, and equine species.

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