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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Astrocyte-neurone communication following oxygen-glucose deprivation.
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Astrocyte-neurone communication following oxygen-glucose deprivation.

机译:氧葡萄糖剥夺后的星形胶质细胞-神经元通讯。

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We looked at the possible interactions between astrocytes and neurones during reperfusion using an in vitro model of ischaemia-reperfusion injury, as a controlled environment that lends itself easily to manipulation of the numerous variables involved in such an insult. We constructed a chamber in which O2 can be lowered to a concentration of 1 microm and developed a primary cortical neuronal culture that is 99% pure and can survive to at least 10 days in vitro. We also established a novel system for the co-culture of astrocytes and neurones in order to study the communication between these cells in a manner that allows the complete separation of one cell type from another. Neurone cultures showed profound cell death following an ischaemic period of only 15 min. We co-cultured neurones that had been subjected to a 15-min ischaemic insult with either non-insulted astrocytes or astrocyte-conditioned medium during the reperfusion stage. Both astrocytes and astrocyte-conditioned medium enhanced neuronal survival. Our data also suggest that astrocyte-sourced neuronal glutathione synthesis may play a role in preventing neuronal death.
机译:我们使用局部缺血-再灌注损伤的体外模型研究了再灌注过程中星形胶质细胞与神经元之间可能的相互作用,因为这种受控环境很容易使其自身可以操纵涉及这种损伤的众多变量。我们构建了一个可将O2降低至1微米浓度的腔室,并开发了纯度为99%且可在体外存活至少10天的初级皮层神经元培养物。我们还建立了用于星形胶质细胞和神经元共培养的新型系统,以便以一种允许将一种细胞类型与另一种细胞类型完全分离的方式研究这些细胞之间的通讯。神经元培养物在仅15分钟的缺血期后显示出严重的细胞死亡。我们在再灌注阶段与未感染的星形胶质细胞或星形胶质细胞条件培养基共培养了经过15分钟缺血性损伤的神经元。星形胶质细胞和星形胶质细胞条件培养基均增强神经元存活。我们的数据还表明,星形胶质细胞来源的神经元谷胱甘肽合成可能在预防神经元死亡中起作用。

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