Hyrien O, Peslak S A, Yanev N M, Palis J
Department of Biostatistics and Computational Biology, University of Rochester, Rochester, NY, 14642, USA,
J Math Biol. 2015 Jun;70(7):1485-521. doi: 10.1007/s00285-014-0803-x. Epub 2014 Jul 3.
The erythroid lineage is a particularly sensitive target of radiation injury. We model the dynamics of immature (BFU-E) and mature (CFU-E) erythroid progenitors, which have markedly different kinetics of recovery, following sublethal total body irradiation using a two-type reducible age-dependent branching process with immigration. Properties of the expectation and variance of the frequencies of both types of progenitors are presented. Their explicit expressions are derived when the process is Markovian, and their asymptotic behavior is identified in the age-dependent (non-Markovian) case. Analysis of experimental data on the kinetics of BFU-E and CFU-E reveals that the probability of self-renewal increases transiently for both cell types following sublethal irradiation. In addition, the probability of self-renewal increased more for CFU-E than for BFU-E. The strategy adopted by the erythroid lineage ensures replenishment of the BFU-E compartment while optimizing the rate of CFU-E recovery. Finally, our analysis also indicates that radiation exposure causes a delay in BFU-E recovery consistent with injury to the hematopoietic stem/progenitor cell compartment that give rise to BFU-E. Erythroid progenitor self-renewal is thus an integral component of the recovery of the erythron in response to stress.
红系谱系是辐射损伤的一个特别敏感的靶点。我们使用具有迁入的两类型可约年龄依赖性分支过程,对亚致死性全身照射后未成熟(BFU-E)和成熟(CFU-E)红系祖细胞的动力学进行建模,这两种祖细胞具有明显不同的恢复动力学。给出了两种祖细胞频率的期望和方差的性质。当过程为马尔可夫过程时,推导出它们的显式表达式,并在年龄依赖性(非马尔可夫)情况下确定它们的渐近行为。对BFU-E和CFU-E动力学的实验数据分析表明,亚致死照射后两种细胞类型的自我更新概率均短暂增加。此外,CFU-E的自我更新概率比BFU-E增加得更多。红系谱系所采用的策略确保了BFU-E区室的补充,同时优化了CFU-E的恢复速率。最后,我们的分析还表明,辐射暴露导致BFU-E恢复延迟,这与产生BFU-E的造血干/祖细胞区室的损伤一致。因此,红系祖细胞的自我更新是应激反应中红细胞生成恢复的一个不可或缺的组成部分。