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Disease Mechanisms and Therapeutic Approaches in Spinal Muscular Atrophy

机译:脊髓性肌萎缩症的发病机制和治疗方法

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摘要

Motor neuron diseases are neurological disorders characterized primarily by the degeneration of spinal motor neurons, skeletal muscle atrophy, and debilitating and often fatal motor dysfunction. Spinal muscular atrophy (SMA) is an autosomal-recessive motor neuron disease of high incidence and severity and the most common genetic cause of infant mortality. SMA is caused by homozygous mutations in the survival motor neuron 1 (SMN1) gene and retention of at least one copy of the hypomorphic gene paralog SMN2. Early studies established a loss-of-function disease mechanism involving ubiquitous SMN deficiency and suggested SMN upregulation as a possible therapeutic approach. In recent years, greater knowledge of the central role of SMN in RNA processing combined with deep characterization of animal models of SMA has significantly advanced our understanding of the cellular and molecular basis of the disease. SMA is emerging as an RNA disease not limited to motor neurons, but one that involves dysfunction of motor circuits that comprise multiple neuronal subpopulations and possibly other cell types. Advances in SMA research have also led to the development of several potential therapeutics shown to be effective in animal models of SMA that are now in clinical trials. These agents offer unprecedented promise for the treatment of this still incurable neurodegenerative disease.
机译:运动神经元疾病是主要以脊柱运动神经元退化,骨骼肌萎缩,使人虚弱且常常致命的运动功能障碍为特征的神经系统疾病。脊髓性肌萎缩症(SMA)是一种常染色体隐性运动神经元疾病,发生率高,严重度高,是婴儿死亡的最常见遗传原因。 SMA是由存活运动神经元1(SMN1)基因的纯合突变和至少一个拷贝的亚同型基因para​​log SMN2的保留引起的。早期研究建立了涉及普遍存在的SMN缺乏的功能丧失性疾病机制,并建议将SMN上调作为一种可能的治疗方法。近年来,对SMN在RNA加工中的核心作用的进一步了解与SMA动物模型的深入表征相结合,大大提高了我们对该疾病的细胞和分子基础的了解。 SMA逐渐成为一种RNA疾病,不仅限于运动神经元,还涉及一种涉及多个神经元亚群以及可能其他细胞类型的运动回路功能障碍。 SMA研究的进展还导致开发了几种潜在疗法,这些疗法在SMA动物模型中显示出了有效性,目前正在临床试验中。这些药物为这种仍然无法治愈的神经退行性疾病的治疗提供了空前的希望。

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