Ganusov Vitaly V, Milutinović Dejan, De Boer Rob J
Theoretical Biology, Utrecht University, Utrecht, The Netherlands.
J Immunol. 2007 Jul 15;179(2):950-7. doi: 10.4049/jimmunol.179.2.950.
It is generally accepted that IL-2 influences the dynamics of populations of T cells in vitro and in vivo. However, which parameters for cell division and/or death are affected by IL-2 is not well understood. To get better insights into the potential ways of how IL-2 may influence the population dynamics of T cells, we analyze data on the dynamics of CFSE-labeled polyclonal CD4(+) T lymphocytes in vitro after anti-CD3 stimulation at different concentrations of exogenous IL-2. Inferring cell division and death rates from CFSE-delabeling experiments is not straightforward and requires the use of mathematical models. We find that to adequately describe the dynamics of T cells at low concentrations of exogenous IL-2, the death rate of divided cells has to increase with the number of divisions cells have undergone. IL-2 hardly affects the average interdivision time. At low IL-2 concentrations 1) fewer cells are recruited into the response and successfully complete their first division; 2) the stochasticity of cell division is increased; and 3) the rate, at which the death rate increases with the division number, increases. Summarizing, our mathematical reinterpretation suggests that the main effect of IL-2 on the in vitro dynamics of naive CD4(+) T cells occurs by affecting the rate of cell death and not by changing the rate of cell division.
人们普遍认为,白细胞介素 - 2(IL - 2)在体外和体内均会影响T细胞群体的动态变化。然而,IL - 2影响细胞分裂和/或死亡的哪些参数尚不清楚。为了更好地了解IL - 2可能影响T细胞群体动态变化的潜在方式,我们分析了在不同浓度外源性IL - 2存在下,抗CD3刺激后体外CFSE标记的多克隆CD4(+) T淋巴细胞动态变化的数据。从CFSE去标记实验推断细胞分裂和死亡率并非易事,需要使用数学模型。我们发现,为了充分描述低浓度外源性IL - 2条件下T细胞的动态变化,分裂细胞的死亡率必须随着细胞经历的分裂次数增加而升高。IL - 2几乎不影响平均分裂间隔时间。在低IL - 2浓度下:1)较少的细胞被募集到反应中并成功完成首次分裂;2)细胞分裂的随机性增加;3)死亡率随分裂次数增加的速率升高。总之,我们的数学重新解释表明,IL - 2对幼稚CD4(+) T细胞体外动态变化的主要影响是通过影响细胞死亡率,而非改变细胞分裂率。