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Transit times through the cycle phases of jejunal crypt cells of the mouse

机译:通过小鼠空肠隐窝细胞的周期阶段的转运时间

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摘要

Mean transit times as well as variances of the transit times through the individual phases of the cell cycle have been determined for the crypt epithelial cells of the jejunum of the mouse. To achieve this the fraction of labelled mitoses (FLM) technique has been modified by double labelling with [3H] and [14C]thymidine. Mice were given a first injection of [3H]thymidine, and 2 hr later a second injection of [14C]thymidine. This produces a narrow subpopulation of purely 3H-labelled cells at the beginning of G2-phase and a corresponding subpopulation of purely 14C-labelled cells at the beginning of the S-phase. When these two subpopulations progress through the cell cycle, one obtains FLM waves of purely 3H- and purely 14C-labelled mitoses. These waves have considerably better resolution than the conventional FLM-curves. From the temporal positions of the observed maxima the mean transit times of the cells through the individual phases of the cycle can be determined. Moreover one obtains from the width of the individual waves the variances of the transit times through the individual phases. It has been found, that the variances of the transit times through successive phases are additive. This indicates that the transit times of cells through successive phases are independently distributed. This statistical independence is an implicit assumption in most of the models applied to the analysis of FLM curves, however there had previously been no experimental support of this assumption. A further result is, that the variance of the transit time through any phase of the cycle is proportional to the mean transit time. This implies that the progress of the crypt epithelial cells is subject to an equal degree of randomness in the various phases of the cycle.
机译:对于小鼠空肠的隐窝上皮细胞,已经确定了通过细胞周期各个阶段的平均运输时间以及运输时间的方差。为了实现这一点,已通过[3H]和[14C]胸苷的双重标记对标记有丝分裂(FLM)技术的一部分进行了修改。给小鼠第一次注射[3 H]胸苷,然后2小时后第二次注射[14 C]胸苷。这会在G2期开始时产生纯3H标记细胞的狭窄亚群,并在S期开始时产生纯14C标记细胞的相应亚群。当这两个亚群在整个细胞周期中进行时,将获得纯3H和14C标记的有丝分裂的FLM波。这些波具有比常规FLM曲线更好的分辨率。从所观察到的最大值的时间位置,可以确定细胞通过循环的各个阶段的平均通过时间。此外,从各个波的宽度获得通过各个相位的渡越时间的方差。已经发现,通过连续相的渡越时间的变化是相加的。这表明细胞通过连续阶段的渡越时间是独立分布的。在大多数用于FLM曲线分析的模型中,这种统计独立性是一个隐含假设,但是以前没有实验支持该假设。进一步的结果是,通过周期的任何阶段的渡越时间的方差与平均渡越时间成正比。这意味着隐窝上皮细胞的进程在循环的各个阶段都受到同等程度的随机性。

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