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对胚胎期小鸡视网膜细胞群体生长的分析,得出增殖比率、增殖细胞与非增殖细胞数量以及连续几代细胞周期的细胞周期时间。

An analysis of the growth of the retinal cell population in embryonic chicks yielding proliferative ratios, numbers of proliferative and non-proliferative cells and cell-cycle times for successive generations of cell cycles.

作者信息

Morris V B, Cowan R

机构信息

School of Biological Sciences, University of Sydney, NSW, Australia.

出版信息

Cell Prolif. 1995 Jul;28(7):373-91. doi: 10.1111/j.1365-2184.1995.tb00079.x.

Abstract

Growth curves of the retinal cell population of embryonic chicks were fitted by a branching-process model of cell population growth, thereby estimating the proliferative ratios and mean cell-cycle times of the generations of cell cycles that underlie retinal growth. The proliferative ratio determines the proportion of cells that divides in the next generation, so the numbers of proliferative and non-proliferative cells in each generation of cell cycles were obtained. The mean cell-cycle times determine the times over which the generations are extant. Assuming growth starts from one cell in generation 0, the proliferative cells reach 3.6 x 10(6) and the non-proliferative cells reach 1.1 x 10(6) by generation 23. The next four generations increase the proliferative cell numbers to 13.9 x 10(6) and produce 20.1 x 10(6) non-proliferative cells. In the next five generations in the end phase of growth, non-proliferative cells are produced in large numbers at an average of 13.9 x 10(6) cells per generation as the retinal lineages are completed. The retinal cell population reaches a maximum estimated here at 98.2 x 10(6) cells. The mean cell-cycle time estimates range between 6.8 and 10.1 h in generations before the end phase of growth and between 10.6 and 17.2 h in generations in the end phase. The retinal cell population growth is limited by the depletion of the proliferative cell population that the production of non-proliferative cells entails. The proliferative ratios and the cell-cycle-time distribution parameters are the likely determinants of retinal growth rates. The results are discussed in relation to other results of spatial and temporal patterns of the cessation of cell cycling in the embryonic chick retina.

摘要

通过细胞群体生长的分支过程模型拟合胚胎小鸡视网膜细胞群体的生长曲线,从而估计构成视网膜生长基础的细胞周期各代的增殖率和平均细胞周期时间。增殖率决定了下一代中分裂细胞的比例,因此可以得到每个细胞周期代中增殖细胞和非增殖细胞的数量。平均细胞周期时间决定了各代细胞的存在时间。假设生长从第0代的一个细胞开始,到第23代时,增殖细胞达到3.6×10⁶个,非增殖细胞达到1.1×10⁶个。接下来的四代将增殖细胞数量增加到13.9×10⁶个,并产生20.1×10⁶个非增殖细胞。在生长末期的接下来五代中,随着视网膜谱系的完成,大量产生非增殖细胞,平均每代产生13.9×10⁶个细胞。视网膜细胞群体在此处估计达到最大值98.2×10⁶个细胞。在生长末期之前的各代中,平均细胞周期时间估计在6.8至10.1小时之间,而在生长末期的各代中,平均细胞周期时间在10.6至17.2小时之间。视网膜细胞群体的生长受到非增殖细胞产生所必需的增殖细胞群体耗竭的限制。增殖率和细胞周期时间分布参数可能是视网膜生长速率的决定因素。结合胚胎小鸡视网膜细胞周期停止的空间和时间模式的其他结果对这些结果进行了讨论。

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