Karatza C, Stein W D, Shall S
J Cell Sci. 1984 Jan;65:163-75. doi: 10.1242/jcs.65.1.163.
The kinetics of ageing of normal mouse embryo fibroblast cells in culture have been determined. The growth pattern during every passage was established. It was observed that the growth pattern was not exponential, but that the growth rate declined progressively both within and with every passage. We also estimated the cell cycle parameters using the Fraction of Labelled Mitoses method at every passage. We found that the cell cycle duration was constant throughout the lifespan of this cell strain; the median value of the cell cycle duration was found to be 15.5 +/- 0.5 h (S.D., n = 8). From these two sets of observations we infer that the fraction of dividing cells declines smoothly from the beginning of the culture. Our data exclude quite positively any description of ageing of the fibroblast population in terms of a catastrophe or any abrupt change in the population. Our data are also inconsistent with a linear decline in growth fraction. On the contrary, we observed that there was a gradual and smooth decline in the growth rate of the strain, due to a smoothly declining growth fraction. This smooth change in the growth behaviour of this cell strain is accurately described by the mortalization theory of Shall & Stein in which the single parameter gamma (gamma), describes the change in reproductive potential over the entire lifespan. The parameter gamma describes the rate at which the doubling time of the culture increases. It is the number of generations at which half of the newborn cells are themselves reproductively sterile. Our present data provided an estimate of gamma for this cell strain, which was consistent during the entire lifespan of the strain; the best estimate of gamma for this cell strain was 20.3 +/- 0.6 generations (S.D., n = 19).
已测定培养的正常小鼠胚胎成纤维细胞的衰老动力学。确定了每次传代期间的生长模式。观察到生长模式并非指数型,而是在每次传代期间及传代过程中生长速率逐渐下降。我们还在每次传代时使用标记有丝分裂分数法估计细胞周期参数。我们发现,在该细胞株的整个寿命期内,细胞周期持续时间是恒定的;细胞周期持续时间的中位数为15.5±0.5小时(标准差,n = 8)。从这两组观察结果我们推断,从培养开始,分裂细胞的比例就平稳下降。我们的数据明确排除了用群体中的灾难或任何突然变化来描述成纤维细胞群体衰老的任何说法。我们的数据也与生长分数的线性下降不一致。相反,我们观察到由于生长分数的平稳下降,该细胞株的生长速率逐渐且平稳地下降。这种细胞株生长行为的平稳变化由Shall和Stein的衰老理论准确描述,其中单个参数γ描述了整个寿命期内生殖潜能的变化。参数γ描述了培养物倍增时间增加的速率。它是新生细胞中有一半自身生殖不育时的代数。我们目前的数据提供了该细胞株γ的估计值,在该细胞株的整个寿命期内是一致的;该细胞株γ的最佳估计值为20.3±0.6代(标准差,n = 19)。