NMDA对stausporine诱导的小鼠新皮质和海马细胞caspase-3激活和LDH释放的影响

Malgorzata Kajta , Andreas Trotter , Wladyslaw Lasoń , Cordian Beyer
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引用次数: 35

摘要

为了更好地了解发育调节的NMDA-和staurosporine诱导的凋亡过程,我们研究了这些药物在体外不同阶段对新皮层和海马细胞培养(DIV)中caspase-3活性和LDH释放的协同作用。另外采用Hoechst 33342和MAP-2染色观察细胞凋亡变化和细胞损伤。新皮质细胞对NMDA的易感性在培养后期更为突出,而海马神经元在培养早期更容易受到NMDA的影响。在所有的实验阶段,都发现staurosporine持续激活caspase-3。尽管对NMDA和staurosporine的敏感性存在一定差异,但两种组织对NMDA对stausporine激活的caspase-3的调节作用的反应方式相似。NMDA和staurosporine联合治疗导致2 DIV的新皮质和海马神经元中caspase-3活性显著增加。在12 DIV的新皮质培养中也观察到累加效应。相反,NMDA在新皮质和海马培养中显著抑制staurosporine诱导的7 DIV的caspase-3活性。此外,NMDA可减弱17β-雌二醇对7 DIV的促凋亡作用。NMDA和staurosporine介导的caspase-3活化的易损性变化与LDH释放没有严格相关。我们的数据显示,NMDA可以增强和抑制staurosporine诱导的神经元细胞凋亡。NMDA的促凋亡作用表现在培养早期和后期,而抗凋亡作用仅发生在7 DIV上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of NMDA on staurosporine-induced activation of caspase-3 and LDH release in mouse neocortical and hippocampal cells

To achieve a better understanding of developmentally regulated NMDA- and staurosporine-induced apoptotic processes, we investigated the concerted action of these agents on caspase-3 activity and LDH release in neocortical and hippocampal cell cultures at different stages in vitro (DIV). Hoechst 33342 and MAP-2 stainings were additionally employed to visualize apoptotic changes and cell damage. The vulnerability of neocortical cells to NMDA was more prominent at later culture stages, whereas hippocampal neurons were more susceptible to NMDA treatment at earlier stages. A persistent activation of caspase-3 by staurosporine was found at all experimental stages. Despite of certain differences in susceptibility to NMDA and staurosporine, both tissues responded to regulatory action of NMDA towards staurosporine-activated caspase-3 in a similar way. Combined treatment with NMDA and staurosporine resulted in a substantial increase in caspase-3 activity in neocortical and hippocampal neurons on 2 DIV. Additive effects were also observed in neocortical cultures on 12 DIV. In contrast, NMDA substantially inhibited staurosporine-induced caspase-3 activity on 7 DIV in neocortical and hippocampal cultures. Additionally, pro-apoptotic effects of 17β-estradiol were attenuated by NMDA on 7 DIV. Changes in vulnerability to NMDA- and staurosporine-mediated activation of caspase-3 were not strictly related to LDH release. Our data revealed that NMDA can both enhance and inhibit the staurosporine-induced neuronal cell apoptosis. The pro-apoptotic effect of NMDA was exhibited at early and late culture stages, whereas the anti-apoptotic effect was transient occurring on 7 DIV only.

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