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首页> 外文期刊>Stem cells translational medicine. >Directed Differentiation of Human Embryonic Stem Cells Toward Placode‐Derived Spiral Ganglion‐Like Sensory Neurons
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Directed Differentiation of Human Embryonic Stem Cells Toward Placode‐Derived Spiral Ganglion‐Like Sensory Neurons

机译:人类胚胎干细胞定向分化为Placode衍生的螺旋神经节样感觉神经元

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The ability to generate spiral ganglion neurons (SGNs) from stem cells is a necessary prerequisite for development of cell‐replacement therapies for sensorineural hearing loss. We present a protocol that directs human embryonic stem cells (hESCs) toward a purified population of otic neuronal progenitors (ONPs) and SGN‐like cells. Between 82% and 95% of these cells express SGN molecular markers, they preferentially extend neurites to the cochlear nucleus rather than nonauditory nuclei, and they generate action potentials. The protocol follows an in vitro stepwise recapitulation of developmental events inherent to normal differentiation of hESCs into SGNs, resulting in efficient sequential generation of nonneuronal ectoderm, preplacodal ectoderm, early prosensory ONPs, late ONPs, and cells with cellular and molecular characteristics of human SGNs. We thus describe the sequential signaling pathways that generate the early and later lineage species in the human SGN lineage, thereby better describing key developmental processes. The results indicate that our protocol generates cells that closely replicate the phenotypic characteristics of human SGNs, advancing the process of guiding hESCs to states serving inner‐ear cell‐replacement therapies and possible next‐generation hybrid auditory prostheses. ? S tem C ells T ranslational M edicine 2017;6:923–936
机译:从干细胞产生螺旋神经节神经元(SGN)的能力是开发用于感觉神经性听力损失的细胞替代疗法的必要先决条件。我们提出了一个协议,该协议将人类胚胎干细胞(hESCs)导向耳神经元祖细胞(ONPs)和SGN样细胞的纯化群体。这些细胞中有82%至95%表达SGN分子标记,它们优先将神经突延伸至耳蜗核而不是非听觉核,并产生动作电位。该协议遵循hESCs正常分化为SGN所固有的体外发育事件的体外逐步概括,从而有效地顺序生成非神经外胚层,斑前外胚层,早期感官ONP,晚期ONP以及具有人类SGNs细胞和分子特征的细胞。因此,我们描述了在人类SGN谱系中生成早期和后期谱系物种的顺序信号通路,从而更好地描述了关键的发育过程。结果表明,我们的方案产生的细胞能紧密复制人类SGN的表型特征,从而促进将hESC引导至服务于内耳细胞置换疗法和可能的下一代混合听觉假体的状态的过程。 ? STEM STEEL跨国翻译医学杂志2017; 6:923–936

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