Schofield R, Lord B I, Kyffin S, Gilbert C W
J Cell Physiol. 1980 May;103(2):355-62. doi: 10.1002/jcp.1041030221.
The numbers of CFU-S which developed in spleen colonies were measured 11 days after injection of irradiated mice with marrow from normal mice or mice which had been treated in one of a variety of ways. The broad spread of CFU-S numbers, seen by other authors, in colonies derived from normal marrow was confirmed. However, the range and distribution of CFU-S per colony was generally different in colonies derived from the marrow of mice which were recovering or had recovered from some form of depopulation. From the data obtained, the mean CFU-S/colony, M1, and the probability of self-renewal, p, of the CFU-S were calculated. These values are used to calculate the number of cell cycles undergone during development of the colony and, by making certain assumptions, the cell cycle time of the CFU-S. The plot of p against log M for the various samples measured should be linear if all CFU-S proliferate at the same rate in a growing colony. It is not linear, however, so that CFU-S obtained under different experimental conditions do not all undergo the same number of cycles. In general, treatments given to the mice result in a lowering of the capacity for self-renewal of their CFU-S and also to a shortening of their cell cycle time. Some of the possible implications of these findings are discussed.
在给受照射小鼠注射来自正常小鼠或经过各种方式处理的小鼠的骨髓11天后,测量脾脏集落中形成的脾集落形成单位(CFU-S)数量。其他作者在源自正常骨髓的集落中观察到的CFU-S数量的广泛分布得到了证实。然而,在源自正在恢复或已从某种形式的细胞减少中恢复的小鼠骨髓的集落中,每个集落的CFU-S范围和分布通常有所不同。根据获得的数据,计算了每个集落的平均CFU-S(M1)和CFU-S的自我更新概率(p)。这些值用于计算集落发育过程中经历的细胞周期数,并通过做出某些假设来计算CFU-S的细胞周期时间。如果所有CFU-S在生长的集落中以相同的速率增殖,那么对于所测量的各种样品,p对log M的图应该是线性的。然而,它不是线性的,因此在不同实验条件下获得的CFU-S并非都经历相同数量的周期。一般来说,对小鼠进行的处理会导致其CFU-S自我更新能力降低,同时也会缩短其细胞周期时间。讨论了这些发现的一些可能含义。