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PNAS Plus: Novel combinatorial screening identifies neurotrophic factors for selective classes of motor neurons

机译:PNAS Plus:新颖的组合筛选可识别选择性运动神经元类别的神经营养因子

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摘要

Numerous neurotrophic factors promote the survival of developing motor neurons but their combinatorial actions remain poorly understood; to address this, we here screened 66 combinations of 12 neurotrophic factors on pure, highly viable, and standardized embryonic mouse motor neurons isolated by a unique FACS technique. We demonstrate potent, strictly additive, survival effects of hepatocyte growth factor (HGF), ciliary neurotrophic factor (CNTF), and Artemin through specific activation of their receptor complexes in distinct subsets of lumbar motor neurons: HGF supports hindlimb motor neurons through c-Met; CNTF supports subsets of axial motor neurons through CNTFRα; and Artemin acts as the first survival factor for parasympathetic preganglionic motor neurons through GFRα3/Syndecan-3 activation. These data show that neurotrophic factors can selectively promote the survival of distinct classes of embryonic motor neurons. Similar studies on postnatal motor neurons may provide a conceptual framework for the combined therapeutic use of neurotrophic factors in degenerative motor neuron diseases such as amyotrophic lateral sclerosis, spinal muscular atrophy, and spinobulbar muscular atrophy.
机译:许多神经营养因子促进发育中的运动神经元的存活,但它们的组合作用仍然知之甚少。为了解决这个问题,我们在这里通过独特的FACS技术筛选了纯净,高度可行和标准化的胚胎小鼠运动神经元上的12种神经营养因子的66种组合。我们通过在腰椎运动神经元的不同子集中通过受体复合物的特异性激活来证明肝细胞生长因子(HGF),睫状神经营养因子(CNTF)和Artemin的有效,严格加和的生存作用:HGF通过c-Met支持后肢运动神经元; CNTF通过CNTFRα支持轴运动神经元的子集。 Artemin通过GFRα3/ Syndecan-3激活,成为副交感神经节前运动神经元的第一个存活因子。这些数据表明神经营养因子可以选择性地促进不同类别的胚胎运动神经元的存活。产后运动神经元的类似研究可能为退行性运动神经元疾病(如肌萎缩性侧索硬化,脊髓性肌萎缩和脊髓球肌萎缩)中神经营养因子的联合治疗应用提供一个概念框架。

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