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Human developing motor neurons as a tool to study ALS

机译:人类发育的运动神经元作为研究ALS的工具

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Defining the basis of the selective cell vulnerability of human motor neurons (hMNs) represents a crucial step in revealing the pathogenesis of amyotrophic lateral sclerosis (ALS). Tissue culture models offer an ideal system for identification of the hMN-specific features at the single cell level. Purified hMNs and astrocytes can today be isolated from the anterior horn of the human embryonic spinal cord. Cultures can be studied at the single cell level using cDNA/mRNA amplification techniques. The effects of molecules affecting hMN survival, neurite extension, and metabolism can be tested in vitro and the expression of selective genes assayed using DNA microarray technology. Crucial information of immediate clinical application for the treatment of patients affected by ALS can be derived after testing the efficacy of candidate pharmaceutical molecules using in vitro cell models. Adult nervous tissue or progenitor cells derived from different regions of the nervous system may be used as an alternative source of human neuronal cells. HMNs in culture, combined with the application of adequate technology, can contribute greatly to identifying the primitive critical events responsible for the cell degeneration observed in ALS, bypassing the intrinsic limitations of the non-human models of the disease.
机译:定义人类运动神经元(hMNs)选择性细胞脆弱性的基础代表揭示肌萎缩性侧索硬化症(ALS)发病机理的关键步骤。组织培养模型为在单个细胞水平鉴定hMN特异性特征提供了理想的系统。如今,可以从人类胚胎脊髓的前角分离出纯化的hMN和星形胶质细胞。可以使用cDNA / mRNA扩增技术在单细胞水平上研究培养物。可以在体外测试影响hMN存活,神经突延伸和代谢的分子的作用,并使用DNA微阵列技术分析选择性基因的表达。在使用体外细胞模型测试候选药物分子的功效后,可以得出立即临床应用治疗受ALS影响的患者的重要信息。来自神经系统不同区域的成人神经组织或祖细胞可以用作人类神经元细胞的替代来源。文化中的HMN与适当技术的应用相结合,可以绕开非人类疾病模型的固有局限性,极大地有助于确定导致ALS中观察到的细胞变性的原始关键事件。

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