Marley S B, Amos T A, Gordon M Y
LRF Centre for Adult Leukaemia, Royal Postgraduate Medical School, London.
Br J Haematol. 1996 Mar;92(3):559-61. doi: 10.1046/j.1365-2141.1996.372908.x.
Colony formation by erythroid burst-forming units (BFU-E) involves a variable number of cell divisions before individual 'subcolonies' begin to appear. Consequently the numbers of subcolonies vary amongst individual bursts. If this observation is interpreted as a reflection of a stochastic process, the number of subcolonies in each individual burst represents the number of divisions by the BFU-E prior to commitment to terminal differentiation. This provides a means for quantitating the probability of erythroid differentiation (pD) and the probability of renewal (1 - pD). In order to determine whether these kinetics of burst formation can be influenced by exogenous factors we used three commercially available media designed for the growth of BFU-E. We found that subcolony numbers per burst ranged from one to 64 and that the cumulative distributions of subcolonies per burst followed a logarithmic curve (r > 0.90). Differences were observed in the distribution of subcolonies per burst when BFU-E were grown in different media (P=0.03; Kruskall-Wallis test). The probability of immediate terminal differentiation (i.e. committment to form a subcolony) was 0.25 for two of the media and 0.7 for the third. The corresponding renewal probabilities were O.75 and O.3. These data indicate that the proliferation kinetics of BFU-E are susceptible to regulation by exogenous factors.
红系爆式集落形成单位(BFU-E)形成集落的过程涉及在各个“亚集落”开始出现之前进行数量可变的细胞分裂。因此,各个爆式集落中的亚集落数量各不相同。如果将这一观察结果解释为随机过程的反映,那么每个个体爆式集落中的亚集落数量就代表了BFU-E在 commitment to terminal differentiation 之前的分裂次数。这提供了一种量化红系分化概率(pD)和更新概率(1 - pD)的方法。为了确定这些爆式集落形成动力学是否会受到外源性因素的影响,我们使用了三种市售的用于BFU-E生长的培养基。我们发现每个爆式集落的亚集落数量范围为1到64,并且每个爆式集落的亚集落累积分布遵循对数曲线(r > 0.90)。当BFU-E在不同培养基中生长时,观察到每个爆式集落的亚集落分布存在差异(P = 0.03;Kruskal-Wallis检验)。两种培养基中立即进行终末分化(即 commitment to form a subcolony)的概率为0.25,第三种培养基为0.7。相应的更新概率分别为0.75和0.3。这些数据表明BFU-E的增殖动力学易受外源性因素的调节。