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Cytoplasmic Signaling Involved in Sonoporation-Induced Apoptosis and Mitosis Repression of Myeloid Leukemia Cells

机译:粘膜诱导的细胞凋亡和粘液粘膜抑制的细胞质信号传导粘蛋白白血病细胞

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Sonoporation is known to be a transient phenomenon that may disrupt the homeostasis of living cells. In this work, we showed that sonoporation may bear time-lapse impact on cellular viability through up-regulation of cytoplasmic signaling proteins related to apoptosis and cell-cycle arrest. Our experiments were done on HL-60 leukemia cells (10~(6) cells/ml), and sonoporation was induced via the use of 1percent v/v microbubbles and 1-min. pulsed ultrasound exposure (0.5MPa peak negative pressure, 1MHz center frequency, 10percent duty cycle, 1 kHz pulse repetition frequency). The transient nature of sonoporation in these cells was confirmed by performing scanning electron microscopy on selected cell samples that were fixed respectively after a few seconds into the ultrasound exposure and one minute after the end of exposure. Cytoplasmic signaling changes of these cells were studied at four post-sonoporation time points (4h, 8h, 12h, 24h) using western blot analysis. Five signaling proteins related to apoptosis and mitosis were analyzed in this work: 1) PARP (for DNA repair); 2) cleaved-PARP (fragments due to cleavage by pro-apoptotic caspase proteins); 3) Bcl-2 (inhibitor for mitochrondrial release of pro-apoptotic molecules); 4) Bax (complement of Bcl-2); 5) Cdc-2 (regulator for cell mitosis). Three key results were found from the cytoplasmic signaling analysis. First, PARP levels were reduced over the monitoring period whilst cleaved-PARP had increased in expression, and in turn they indicate that the cells' anti-apoptotic responses were dampened following sonoporation and pro-apoptotic caspase proteins were likely activated. Second, drop in Bcl-2 and rise in Bax were observed, and these suggest that the mitochondrion was involved in apoptotic signal transduction inside sonoporated cells. Third, Cdc-2 was seen to decrease, implying that mitosis was repressed in sonoporated cells.
机译:众所周知,声孔是一种可能破坏活细胞稳态的瞬态现象。在这项工作中,我们表明,Sonoporation可以通过与细胞凋亡和细胞周期停止相关的细胞质信号蛋白的上调来承受对细胞活力的时间流逝影响。我们的实验是在HL-60白血病细胞(10〜(6)个细胞/ mL)上进行的,通过使用1percent v / v微泡和1分钟诱导声孔。脉冲超声曝光(0.5MPa峰值负压,1MHz中心频率,10个占空比,1 kHz脉冲重复频率)。通过在分别在几秒钟后分别固定的细胞样品上进行扫描电子显微镜来确认这些细胞中声孔的瞬态性质通过分别在超声暴露中和暴露结束后一分钟。在使用Western印迹分析的四个后声孔时间点(4h,8h,12h,24h)下研究这些细胞的细胞质信号传导变化。在这项工作中分析了与细胞凋亡和有丝分裂相关的五种信号蛋白:1)PARP(用于DNA修复); 2)切割-PARP(促凋亡Caspase蛋白引起的碎片); 3)Bcl-2(促凋亡分子的线粒体释放的抑制剂); 4)BAX(BCL-2的补充); 5)CDC-2(细胞有丝分裂的调节剂)。从细胞质信号分析中发现了三个关键结果。首先,在监测期间减少PARP水平,而裂解-PARP在表达中增加,并且又表明细胞的抗凋亡反应抑制了超声厌孔,并且促凋亡的胱天蛋白酶蛋白可能被活化。其次,观察到Bcl-2中的下降并观察到BAX升高,并且这些表明,线粒体参与了声波孔的细胞内的凋亡信号转导。第三,被视为降低CDC-2,这意味着在超级孔的细胞中抑制了有丝分裂。

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