The traditional MTT assay requires destructive analyses and is not convenient in continuous monitory of cell viability. However, a new cell model was developed in this research, by using the oxidation-reduction (redox...The traditional MTT assay requires destructive analyses and is not convenient in continuous monitory of cell viability. However, a new cell model was developed in this research, by using the oxidation-reduction (redox) indicator alamarblue? instead of the MTT assay. The alamarblue?does no harm to cells and provide a much more safe and convenient methods of measurement. Firstly, cell apoptosis was induced by different concentration of 6-OHDA, then the cell viability was tested by the alamarblue?at a serial of time points. Finally, the optimism cells density, 6-OHDA concentration and testing time point were gained to set a wonderful SH-SY5Y cell model in our research. And when it is applied in the study of neuroprotection effects of NAC, GSH and Catalase, the new model reveals undeniable advantages.展开更多
目的:探讨用RNAi干扰技术下调第10号染色体同源丢失性磷酸酶张力蛋白基因(Phosphatase and tensin homology deleted on chromosome ten,PTEN)对缺氧损伤引起的神经元NR2B受体表达调控机制。方法:建立海马神经元培养缺氧缺糖(Oxygen-glu...目的:探讨用RNAi干扰技术下调第10号染色体同源丢失性磷酸酶张力蛋白基因(Phosphatase and tensin homology deleted on chromosome ten,PTEN)对缺氧损伤引起的神经元NR2B受体表达调控机制。方法:建立海马神经元培养缺氧缺糖(Oxygen-glucose deprivation,OGD)损伤模型,转染shRNAspten-GFP质粒,采用细胞比色分析(Colorimetric assay)法观察神经元膜表面NR2B含量,RT-PCR测定NR2B受体的mRNA的表达,采用Fura2-AM法测定胞内Ca2+浓度,AlamarBlue进行神经元活力分析。结果:shRNAspten-GFP能成功转染到神经元中;细胞比色法显示神经元膜表面有大量NR2B表达,与PshGFP对照组相比shRNAspten治疗组NR2B含量明显降低(P<0.05),RT-PCR测定结果与细胞比色法结果基本一致;OGD损伤组比正常组胞内Ca2+浓度显著升高(P<0.05),转染PTEN基因后胞内Ca2+浓度比PshGFP对照组明显降低(P<0.05);无关对照PshGFP组神经元活力较正常对照组和治疗组均有显著下降(P<0.05)。结论:下调PTEN基因可降低NR2B的表达,阻断Ca2+内流,增加细胞活力,从而保护神经元损伤。展开更多
文摘The traditional MTT assay requires destructive analyses and is not convenient in continuous monitory of cell viability. However, a new cell model was developed in this research, by using the oxidation-reduction (redox) indicator alamarblue? instead of the MTT assay. The alamarblue?does no harm to cells and provide a much more safe and convenient methods of measurement. Firstly, cell apoptosis was induced by different concentration of 6-OHDA, then the cell viability was tested by the alamarblue?at a serial of time points. Finally, the optimism cells density, 6-OHDA concentration and testing time point were gained to set a wonderful SH-SY5Y cell model in our research. And when it is applied in the study of neuroprotection effects of NAC, GSH and Catalase, the new model reveals undeniable advantages.
文摘目的:探讨用RNAi干扰技术下调第10号染色体同源丢失性磷酸酶张力蛋白基因(Phosphatase and tensin homology deleted on chromosome ten,PTEN)对缺氧损伤引起的神经元NR2B受体表达调控机制。方法:建立海马神经元培养缺氧缺糖(Oxygen-glucose deprivation,OGD)损伤模型,转染shRNAspten-GFP质粒,采用细胞比色分析(Colorimetric assay)法观察神经元膜表面NR2B含量,RT-PCR测定NR2B受体的mRNA的表达,采用Fura2-AM法测定胞内Ca2+浓度,AlamarBlue进行神经元活力分析。结果:shRNAspten-GFP能成功转染到神经元中;细胞比色法显示神经元膜表面有大量NR2B表达,与PshGFP对照组相比shRNAspten治疗组NR2B含量明显降低(P<0.05),RT-PCR测定结果与细胞比色法结果基本一致;OGD损伤组比正常组胞内Ca2+浓度显著升高(P<0.05),转染PTEN基因后胞内Ca2+浓度比PshGFP对照组明显降低(P<0.05);无关对照PshGFP组神经元活力较正常对照组和治疗组均有显著下降(P<0.05)。结论:下调PTEN基因可降低NR2B的表达,阻断Ca2+内流,增加细胞活力,从而保护神经元损伤。