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首页> 外文期刊>Neural regeneration research >A tissue-engineered rostral migratory stream for directed neuronal replacement
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A tissue-engineered rostral migratory stream for directed neuronal replacement

机译:组织工程的延髓ros游流,用于定向神经元置换

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摘要

New neurons are integrated into the circuitry of the olfactory bulb throughout the lifespan in the mammalian brain—including in humans. These new neurons are born in the subventricular zone and subsequently mature as they are guided over long distances via the rostral migratory stream through mechanisms we are only just beginning to understand. Regeneration after brain injury is very limited, and although some neuroblasts from the rostral migratory stream will leave the path and migrate toward cortical lesion sites, this neuronal replacement is generally not sustained and therefore does not provide enough new neurons to alleviate functional deficits. Using newly discovered microtissue engineering techniques, we have built the first self-contained, implantable constructs that mimic the architecture and function of the rostral migratory stream. This engineered microtissue emulates the dense cord-like bundles of astrocytic somata and processes that are the hallmark anatomical feature of the glial tube. As such, our living microtissue-engineered rostral migratory stream can serve as an in vitro test bed for unlocking the secrets of neuroblast migration and maturation, and may potentially serve as a living transplantable construct derived from a patient's own cells that can redirect their own neuroblasts into lesion sites for sustained neuronal replacement following brain injury or neurodegenerative disease. In this paper, we summarize the development of fabrication methods for this microtissue-engineered rostral migratory stream and provide proof-of-principle evidence that it promotes and directs migration of immature neurons.
机译:在整个哺乳动物大脑(包括人类)的整个生命周期中,新的神经元都被整合到嗅球的电路中。这些新的神经元出生在脑室下区域,随后随着它们通过我们刚刚才开始了解的机制通过鼻尖tral游流经长距离引导而成熟。脑损伤后的再生非常有限,尽管一些来自延髓迁徙流的成神经细胞会离开该路径并向皮损部位迁移,但这种神经元替代通常无法持续,因此不能提供足够的新神经元来减轻功能障碍。使用新发现的微组织工程技术,我们构建了第一个自成体系的,可植入的构建体,该构建体模仿了鸟嘴迁移流的结构和功能。这种经过工程改造的微组织模仿了星形胶质细胞的密集束状束和过程,这是神经胶质管的标志性解剖特征。因此,我们的活体由微组织工程化的延髓部迁移流可以用作体外试验床,以解开神经母细胞迁移和成熟的秘密,并且可以潜在地用作源自患者自身细胞的活体可移植构建体,该细胞可以重定向自己的神经母细胞进入病变部位,以在脑损伤或神经退行性疾病后持续进行神经元置换。在本文中,我们总结了这种由微组织工程化的鸟嘴迁徙流的制造方法的发展,并提供了原理证据,证明其促进并指导了未成熟神经元的迁移。

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