Sherratt J A, Murray J D
Department of Applied Mathematics FS-20, University of Washington, Seattle 98195.
Proc Biol Sci. 1990 Jul 23;241(1300):29-36. doi: 10.1098/rspb.1990.0061.
The spreading of cells across the surface of an epidermal wound enables epidermal migration to be studied independently of the wound contraction that occurs in deeper wounds. In particular, the stimulus for the increase in epidermal mitosis during would healing is uncertain. Our modelling suggests that biochemical regulation of mitosis is fundamental to the process, and that a single chemical with a simple regulatory effect can account for the healing of circular epidermal wounds. The model results compare well with experimental data.
细胞在表皮伤口表面的扩散使得表皮迁移能够独立于较深伤口中发生的伤口收缩进行研究。特别是,伤口愈合过程中表皮有丝分裂增加的刺激因素尚不确定。我们的模型表明,有丝分裂的生化调节是该过程的基础,并且一种具有简单调节作用的单一化学物质可以解释圆形表皮伤口的愈合情况。模型结果与实验数据吻合良好。