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首页> 外文期刊>Biological & pharmaceutical bulletin >Establishment of a Simple Method for Inducing Neuronal Differentiation of P19 EC Cells without Embryoid Body Formation and Analysis of the Role of Histone Deacetylase 8 Activity in This Differentiation
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Establishment of a Simple Method for Inducing Neuronal Differentiation of P19 EC Cells without Embryoid Body Formation and Analysis of the Role of Histone Deacetylase 8 Activity in This Differentiation

机译:建立一种诱导P19EC细胞神经元分化的简单方法,没有胚状体形成和分析组蛋白脱乙酰酶8活性在这种分化中的作用

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摘要

P19 pluripotent embryonic carcinoma (EC) stem cells are derived from pluripotent germ cell tumours and can differentiate into three germ layers. Treatment of these cells in suspension culture with retinoic acid induces their differentiation into neurons and glial cells. Hence, these cells are an excellent in vitro model to study the transition from the upper blastoderm to the neuroectoderm. However, because of the complex nature of the techniques involved, the results are highly dependent on the skills of the experimenter. Herein, we developed a simple method to induce neuronal differentiation of adherent P19 EC cells in TaKaRa NDiff (R) 227 serum-free medium (originally N2B27 medium). This medium markedly induced neuronal differentiation of P19 EC cells. The addition of retinoic acid to the NDiff (R) 227 medium further enhanced differentiation. Furthermore, cells differentiated by the conventional method, as well as the new method, showed identical expression of the mature neuronal marker, neuronal nuclei. To determine whether our approach could be applied for neuronal studies, we measured histone deacetylase 8 (HDAC8) activity using an HDAC8 inhibitor and HDAC8-knockout P19 EC cells. Inhibition of HDAC8 activity suppressed neuronal maturation. Additionally, HDAC8-knockout cell lines showed immature differentiation compared to the wild-type cell line. These results indicate that HDAC8 directly regulates the neuronal differentiation of P19 EC cells. Thus, our method involving P19 EC cells can be used as an experimental system to study the nervous system. Moreover, this method is suitable for screening drugs that affect the nervous system and cell differentiation.
机译:P19多能胚胎癌(EC)干细胞源自多能细胞肿瘤,可以分为三种胚层。用视黄酸处理悬浮培养物中的这些细胞诱导其分化为神经元和胶质细胞。因此,这些细胞是一种优异的体外模型,用于研究从上部胚泡到神经外胚层的过渡。然而,由于涉及技术的复杂性,结果高度依赖于实验者的技能。在此,我们开发了一种简单的方法,诱导Takara Ndiff(R)227血清培养基(最初N2B27培养基)中粘附P19EC细胞的神经元分化。该培养基明显诱导了P19EC细胞的神经元分化。将视黄酸加入NDIFF(R)227培养基进一步增强分化。此外,通过常规方法的细胞分化,以及新方法,显示出成熟神经元标记,神经元核的相同表达。为了确定我们的方法是否可以应用神经元研究,我们使用HDAC8抑制剂和HDAC8敲除P19EC细胞测量组蛋白脱乙酰酶8(HDAC8)活性。 HDAC8活性的抑制抑制了神经元成熟。另外,与野生型细胞系相比,HDAC8敲除细胞系显示不成熟的分化。这些结果表明HDAC8直接调节P19EC细胞的神经元分化。因此,我们涉及P19EC细胞的方法可以用作研究神经系统的实验系统。此外,该方法适用于筛选影响神经系统和细胞分化的药物。

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