Furusawa C, Kaneko K
Department of Pure and Applied Sciences, University of Tokyo, Japan.
Bull Math Biol. 1998 Jul;60(4):659-87. doi: 10.1006/bulm.1997.0034.
A dynamic model for cell differentiation, where cells with internal chemical reaction dynamics interact with each other and replicate was studied. It led to spontaneous differentiation of cells and determination, as discussed in the isologous diversification. The following features of the differentiation were obtained: (1) hierarchical differentiation from a 'stem' cell to other cell types, with the emergence of the interaction-dependent rules for differentiation; (2) global stability of an ensemble of cells consisting of several cell types, that were sustained by the emergent, autonomous control on the rate of differentiation; (3) existence of several cell colonies with different cell-type distributions. The results provide a novel viewpoint on the origin of a complex cell society, while relevance to some biological problems, especially to the hemopoietic system, is also discussed.
研究了一种细胞分化的动态模型,其中具有内部化学反应动力学的细胞相互作用并进行复制。如在同源多样化中所讨论的,这导致了细胞的自发分化和决定。获得了分化的以下特征:(1) 从 “干细胞” 到其他细胞类型的分层分化,并出现了依赖于相互作用的分化规则;(2) 由几种细胞类型组成的细胞集合体的全局稳定性,这种稳定性由分化速率的自发、自主控制维持;(3) 存在具有不同细胞类型分布的多个细胞集落。这些结果为复杂细胞社会的起源提供了新的观点,同时也讨论了其与一些生物学问题,特别是造血系统的相关性。