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Quantitative proteome analysis of doxorubicin resistance in ovarian cancer cells using SILAC

机译:硅酸卵巢癌细胞在卵巢癌细胞中的多柔明素抗性的定量蛋白质组分析

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Multiple signal path ways may participate in the doxorubicin-resistance of ovarian cell, such as DNA synthesis, RNA synthesis and protein metabolism. Mitotracker staining of mitochondria in the two cell lines and observation with confocal laser scanning microscopy revealed that the shape and subcellular distribution of mitochondria were greatly changed in the doxorubicin resistance cell line, which indicated that mitochondria were main targets of doxorubicin resistance in ovarian cells.
机译:多个信号路径方式可以参与卵巢细胞的多柔比蛋白抗性,例如DNA合成,RNA合成和蛋白质代谢。 MitoTracker染色在两种细胞系中的线粒体和共聚焦激光扫描显微镜的观察显示,在多柔比蛋白抗性细胞系中大大变化了线粒体的形状和亚细胞分布,表明线粒体是卵巢细胞中的多柔比蛋白抗性的主要靶标。

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