Fendrik A J, Romanelli L, Rotondo E
Instituto de Ciencias, Universidad Nacional de General Sarmiento-J.M.Gutierrez 1150, (1613) Los Polvorines, Buenos Aires, Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas- Buenos Aires, Argentina. Author to whom any correspondence should be addressed.
Phys Biol. 2018 Mar 1;15(3):036003. doi: 10.1088/1478-3975/aaab9f.
The self renewal process in colonic crypts is the object of several studies. We present here a new compartment model with the following characteristics: (a) we distinguish different classes of cells: stem cells, six generations of transit amplifying cells and the differentiated cells; (b) in order to take into account the monoclonal character of crypts in homeostatic regimes we include symmetric divisions of the stem cells. We first consider the dynamic differential equations that describe the evolution of the mean values of the populations, but the small observed value of the total number of cells involved plus the huge dispersion of experimental data found in the literature leads us to study the stochastic discrete process. This analysis allows us to study fluctuations, the neutral drift that leads to monoclonality, and the effects of the fixation of mutant clones.
结肠隐窝中的自我更新过程是多项研究的对象。我们在此提出一种具有以下特征的新隔间模型:(a)我们区分不同类型的细胞:干细胞、六代过渡增殖细胞和分化细胞;(b)为了考虑稳态状态下隐窝的单克隆特性,我们纳入了干细胞的对称分裂。我们首先考虑描述种群平均值演变的动态微分方程,但所涉及细胞总数的观测值较小,再加上文献中发现的实验数据存在巨大离散性,这促使我们研究随机离散过程。这种分析使我们能够研究波动、导致单克隆性的中性漂移以及突变克隆固定的影响。