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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Large-scale generation of highly enriched neural stem-cell-derived oligodendroglial cultures: maturation-dependent differences in insulin-like growth factor-mediated signal transduction.
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Large-scale generation of highly enriched neural stem-cell-derived oligodendroglial cultures: maturation-dependent differences in insulin-like growth factor-mediated signal transduction.

机译:大规模生成高度丰富的神经干细胞衍生的少突胶质细胞培养物:胰岛素样生长因子介导的信号转导中的成熟依赖差异。

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摘要

Multipotent neural stem cells (NSCs) are competent for commitment to the oligodendrocyte (OL) lineage both in vitro and in vivo. We exploited this property to develop a rat neurospheres (NS)/oligospheres (OS)-based culture system to generate large numbers of highly enriched late OL progenitors (preOLs) and mature OLs (MatOLs). CNS neuroblastoma cell line B104-derived conditioned medium promoted the generation of nearly pure populations of preOLs from dissociated OS. The subsequent culture of preOLs with ciliary neurotrophic factor (CNTF) and 3,3',5'-triiodo-L-thyronine (T(3)) generated nearly pure populations of MatOLs. OL lineage specificity was confirmed by immunocytochemistry, quantitative RT-PCR and gene expression profiling, which demonstrated large differences between preOLs and MatOLs. The insulin-like growth factors (IGFs) are potent neuro-protective agents required for OL survival. We used this system to systematically define maturation-dependent changes in IGF signaling during the course of OL differentiation. The IGF-I and insulin receptors, insulin receptor substrate-1 (IRS-1) and IRS-2, protein kinase B (PKB)/Akt and Janus kinase (JNK) were expressed at higher levels in NS and preOLs compared with OS and MatOLs. Erk expression increased markedly from NS to OS, decreased only partially upon commitment to preOLs, and, in MatOLs, returned to a low level similar to NS. IGF activation of the generally proliferative Erk pathway was gradually acquired during NSC differentiation, whereas IGF activation of the generally pro-survival, anti-apoptotic PI3K/PKB pathway was consistently robust at each developmental stage.
机译:多能神经干细胞(NSC)能够在体外和体内对少突胶质细胞(OL)谱系作出承诺。我们利用这一特性来开发基于大鼠神经球(NS)/寡球(OS)的培养系统,以生成大量高度富集的晚期OL祖细胞(preOL)和成熟的OL(MatOL)。中枢神经系统神经母细胞瘤细胞系B104衍生的条件培养基促进了离解OS产生近乎纯正的preOL群体的生成。 preOLs与睫状神经营养因子(CNTF)和3,3',5'-triiodo-L-甲状腺素(T(3))的随后培养产生了几乎纯的MatOLs群体。通过免疫细胞化学,定量RT-PCR和基因表达谱证实了OL谱系特异性,这表明preOL和MatOL之间存在很大差异。胰岛素样生长因子(IGF)是OL生存所需的有效神经保护剂。我们使用该系统来系统地定义在OL分化过程中IGF信号传导的成熟依赖性变化。与OS和OS相比,NS和preOLs中IGF-I和胰岛素受体,胰岛素受体底物1(IRS-1)和IRS-2,蛋白激酶B(PKB)/ Akt和Janus激酶(JNK)的表达较高。 MatOLs。从NS到OS,Erk表达显着增加,仅因对preOL的承诺而部分降低,而在MatOL中,Erk表达恢复到与NS相似的低水平。在NSC分化过程中,逐渐获得了一般增殖性Erk途径的IGF激活,而在每个发育阶段,通常对存活,抗凋亡的PI3K / PKB途径的IGF激活一直很稳定。

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