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Time-lapse analysis of cell death in mammalian and fungal cells.

机译:哺乳动物和真菌细胞中细胞死亡的延时分析。

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Time-lapse video microscopy was designed to follow the movement of single cells for an unlimited period of time under physiological conditions. The system is based on two inverted microscopes located in a CO(2) incubator and equipped with charge-coupled device cameras connected to the computer. Frames were recorded every minute and the subsequent video sequence was converted to database form. The system was applied to describe the movements of normal HaCaT cells and Pb-treated cells causing the so-called apoptotic dance during cell death. The apoptotic movement was also followed in high-osmolarity glycerol-type mitogen-activated protein kinase (MAPK) null mutant of Fusarium proliferatum, a filamentous fungus, during osmotic stress. The shortest (20 min) and most vigorous death movements were observed in apoptotic fungal cells subjected to salt stress. The necrotic process at higher Pb concentration (50 microM) took 2-3 h, whereas the apoptotic process at lower Pb concentrations lasted from minutes to days.
机译:延时视频显微镜旨在在生理条件下无限制地跟踪单个细胞的运动。该系统基于位于CO(2)培养箱中的两个倒置显微镜,并配备了与计算机相连的电荷耦合设备照相机。每分钟记录一次帧,随后的视频序列转换为数据库形式。该系统用于描述正常HaCaT细胞和Pb处理的细胞的运动,这些运动在细胞死亡期间引起了所谓的细胞凋亡。在渗透胁迫下,高渗透性甘油型丝状真菌Fusarium proliferatum的高渗透压甘油型促分裂原活化蛋白激酶(MAPK)无效突变体中也发生了凋亡运动。在遭受盐胁迫的凋亡真菌细胞中观察到最短的时间(20分钟)和最剧烈的死亡运动。在较高的Pb浓度(50 microM)下,坏死过程需要2-3小时,而在较低的Pb浓度下,凋亡过程则持续数分钟至数天。

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