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首页> 外文期刊>Biomaterials >The long-term survival of in vitro engineered nervous tissue derived from the specific neural differentiation of mouse embryonic stem cells.
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The long-term survival of in vitro engineered nervous tissue derived from the specific neural differentiation of mouse embryonic stem cells.

机译:源自小鼠胚胎干细胞特定神经分化的体外工程神经组织的长期存活。

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摘要

Embryonic stem cells (ESCs) offer attractive prospective as potential source of neurons for cell replacement therapy in human neurodegenerative diseases. Besides, ESCs neural differentiation enables in vitro tissue engineering for fundamental research and drug discovery aimed at the nervous system. We have established stable and long-term three-dimensional (3D) culture conditions which can be used to model long latency and complex neurodegenerative diseases. Mouse ESCs-derived neural progenitor cells generated by MS5 stromal cells induction, result in strictly neural 3D cultures of about 120-mum thick, whose cells expressed mature neuronal, astrocytes and myelin markers. Neurons were from the glutamatergic and gabaergic lineages. This nervous tissue was spatially organized in specific layers resembling brain sub-ependymal (SE) nervous tissue, and was maintained in vitro for at least 3.5 months with great stability. Electron microscopy showed the presence of mature synapses and myelinated axons, suggesting functional maturation. Electrophysiological activity revealed biological signals involving action potential propagation along neuronal fibres and synaptic-like release of neurotransmitters. The rapid development and stabilization of this 3D cultures model result in an abundant and long-lasting production that is compatible with multiple and productive investigations for neurodegenerative diseases modeling, drug and toxicology screening, stress and aging research.
机译:胚胎干细胞(ESCs)具有潜在的吸引力,可作为人类神经退行性疾病中细胞替代疗法的神经元潜在来源。此外,ESCs的神经分化功能使体外组织工程能够针对神经系统进行基础研究和药物发现。我们已经建立了稳定的长期三维(3D)培养条件,可用于建模长时间潜伏期和复杂的神经退行性疾病。由MS5基质细胞诱导产生的小鼠ESCs衍生的神经祖细胞,导致严格的神经3D培养,厚度约为120微米,其细胞表达成熟的神经元,星形胶质细胞和髓磷脂标记。神经元来自谷氨酸能和γ能的谱系。该神经组织在空间上被组织成类似于脑下室管膜(SE)神经组织的特定层,并在体外至少维持了3.5个月的稳定性。电子显微镜显示成熟突触和髓鞘轴突的存在,表明功能成熟。电生理活动揭示了涉及动作电位沿神经元纤维传播和神经递质类似突触释放的生物信号。这种3D培养模型的快速发展和稳定,导致了丰富而持久的生产,可与神经退行性疾病建模,药物和毒理学筛查,压力和衰老研究的多项研究和生产研究相兼容。

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