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Isolation of Human Neural Stem Cells from the Amniotic Fluid with Diagnosed Neural Tube Defects

机译:从羊水中分离出具有神经管缺陷的人神经干细胞

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摘要

Human neural stem cells (NSCs) are particularly valuable for the study of neurogenesis process and have a therapeutic potential in treating neurodegenerative disorders. However, current progress in the use of human NSCs is limited due to the available NSC sources and the complicated isolation and culture techniques. In this study, we describe an efficient method to isolate and propagate human NSCs from the amniotic fluid with diagnosed neural tube defects (NTDs), specifically, anencephaly. These amniotic fluid-derived NSCs (AF-NSCs) formed neurospheres and underwent long-term expansion in vitro. In addition, these cells showed normal karyotypes and telomerase activity and expressed NSC-specific markers, including Nestin, Sox2, Musashi-1, and the ATP-binding cassette G2 (ABCG2). AF-NSCs displayed typical morphological patterns and expressed specific markers that were consistent with neurons, astrocytes, oligodendrocytes, and dopaminergic neurons after proper induction conditions. Furthermore, grafted AF-NSCs improved the physiological functions in a rat stroke model. The ability to isolate and bank human NSCs from this novel source provides a unique opportunity for translational studies of neurological disorders.
机译:人神经干细胞(NSC)对于神经发生过程的研究特别有价值,并且在治疗神经退行性疾病方面具有治疗潜力。然而,由于可用的NSC来源以及复杂的分离和培养技术,目前在人类NSC的使用方面的进展受到限制。在这项研究中,我们描述了一种从羊水中分离和繁殖人类NSC的有效方法,该方法可诊断为神经管缺损(NTD),尤其是无脑。这些来自羊水的NSC(AF-NSC)形成了神经球,并在体外进行了长期扩展。此外,这些细胞显示出正常的核型和端粒酶活性,并表达了NSC特异性标记,包括Nestin,Sox2,Musashi-1和ATP结合盒G2(ABCG2)。 AF-NSCs在适当的诱导条件下表现出典型的形态学模式,并表达与神经元,星形胶质细胞,少突胶质细胞和多巴胺能神经元一致的特异性标记。此外,嫁接的AF-NSCs改善了大鼠中风模型的生理功能。从这种新颖来源分离和保存人类NSC的能力为神经系统疾病的转化研究提供了独特的机会。

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