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首页> 外文期刊>BMC Developmental Biology >Developmental cues and persistent neurogenic potential within an in vitro neural niche
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Developmental cues and persistent neurogenic potential within an in vitro neural niche

机译:体外神经环境中的发育线索和持续的神经源性潜力

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Background Neurogenesis, the production of neural cell-types from neural stem cells (NSCs), occurs during development as well as within select regions of the adult brain. NSCs in the adult subependymal zone (SEZ) exist in a well-categorized niche microenvironment established by surrounding cells and their molecular products. The components of this niche maintain the NSCs and their definitive properties, including the ability to self-renew and multipotency (neuronal and glial differentiation). Results We describe a model in vitro NSC niche, derived from embryonic stem cells, that produces many of the cells and products of the developing subventricular zone (SVZ) and adult SEZ NSC niche. We demonstrate a possible role for apoptosis and for components of the extracellular matrix in the maintenance of the NSC population within our niche cultures. We characterize expression of genes relevant to NSC self-renewal and the process of neurogenesis and compare these findings to gene expression produced by an established neural-induction protocol employing retinoic acid. Conclusions The in vitro NSC niche shows an identity that is distinct from the neurally induced embryonic cells that were used to derive it. Molecular and cellular components found in our in vitro NSC niche include NSCs, neural progeny, and ECM components and their receptors. Establishment of the in vitro NSC niche occurs in conjunction with apoptosis. Applications of this culture system range from studies of signaling events fundamental to niche formation and maintenance as well as development of unique NSC transplant platforms to treat disease or injury.
机译:背景神经发生是由神经干细胞(NSC)产生的神经细胞类型,发生在发育过程中以及成年大脑的选定区域内。成年表皮下区(SEZ)中的NSC存在于由周围细胞及其分子产物建立的分类良好的利基微环境中。这种利基的组成部分保持了NSC及其确定的特性,包括自我更新和多能性(神经元和神经胶质分化)的能力。结果我们描述了一种源自胚胎干细胞的体外NSC生态位模型,该模型可产生许多细胞和发育中的脑室下区(SVZ)和成年SEZ NSC生态位的产物。我们证明了在我们的利基文化中,细胞凋亡和细胞外基质成分在维持NSC种群中的作用。我们表征与NSC自我更新和神经发生过程有关的基因的表达,并将这些发现与通过使用视黄酸建立的神经诱导方案产生的基因表达进行比较。结论体外NSC生态位显示出与用于诱导它的神经诱导胚胎细胞不同的身份。在我们的体外NSC领域中发现的分子和细胞成分包括NSC,神经后代和ECM成分及其受体。体外NSC生态位的建立与细胞凋亡有关。该培养系统的应用范围从对基础生态位形成和维持的信号传导事件的研究到独特的NSC移植平台的开发,以治疗疾病或损伤。

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