双变量BrdUrd/DNA流式细胞术直接测量小鼠表皮细胞周期阶段进展的昼夜节律变化。

Epithelial cell biology Pub Date : 1992-01-01
B Kirkhus, O P Clausen
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引用次数: 0

摘要

在体内研究了小鼠表皮细胞周期穿越的昼夜节律阶段依赖性变化。用分离表皮基底细胞的双变量BrdUrd/DNA流式细胞术研究了在一天中不同时间用溴脱氧尿苷(BrdUrd)脉冲标记的基底细胞群的命运。在0800和2000时腹腔注射BrdUrd后,对基底细胞的细胞周期进行了长达96小时的跟踪,或在0400、1200、1600和2400时注射BrdUrd后进行了6小时的跟踪。结果证实了我们之前的假设,即与白天相比,细胞周期通过S期和G2期的进程在晚上明显延迟,即从1600点到0400点。结果表明G1期也存在差异。这些数据有力地支持了有丝分裂活动昼夜波动的主要参数是S期和G2期持续时间的变化的假设。这些数据也与分级增殖模型所描述的基底细胞间增殖异质性的概念一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circadian variations in cell cycle phase progression of mouse epidermal cells measured directly by bivariate BrdUrd/DNA flow cytometry.

Circadian stage-dependent variations in cell cycle traverse of mouse epidermal cells in vivo were investigated. The fate of cohorts of basal cells pulse-labelled with bromodeoxyuridine (BrdUrd) at different times of the day were studied by bivariate BrdUrd/DNA flow cytometry of isolated epidermal basal cells. Basal cells were tracked through the cell cycle up to 96 h after intraperitoneal injection of BrdUrd at 0800 and 2000, or followed for 6 h after BrdUrd injection at 0400, 1200, 1600 and 2400. The results confirmed our previous assumption that the cell cycle progression through S phase and G2 phase is considerably delayed at night, i.e. from 1600 to 0400, compared with daytime. The results indicate variations in G1 phase as well. The data strongly support the hypothesis that the main parameters responsible for circadian fluctuations in mitotic activity are variations in the S and G2 phase durations. The data are also consistent with the notion of proliferative heterogeneity among basal cells as described by a hierarchical proliferation model.

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