Model M A, Omann G M
Biophysics Research Division, University of Michigan, Ann Arbor 48105, USA.
Biophys J. 1995 Nov;69(5):1712-20. doi: 10.1016/S0006-3495(95)80041-X.
The rate of binding of a ligand to receptors on the cell surface can be diffusion limited. We analyze the kinetics of binding, diffusion-limited in a stationary liquid, in the presence of convective mass transport. We derive a formula that expresses the reaction kinetics in terms of the mass transfer coefficient. A moderately transport-limited kinetics is not readily recognizable from the shape of the binding curve and may lead to erroneous estimates of the rate coefficients. We apply our results to practically important cases: a cell suspension in a stirred volume of liquid and a confluent cell colony under a laminar stream. Using typical numbers characterizing the ligand-receptor interactions, we show that stirring and perfusion can be important factors determining the reaction rates. With the confluent colony, the early reaction kinetics requires a different treatment, and we provide it for the case of low receptor occupancy. We show that, even with a fast perfusion, a cell monolayer can transiently generate a zone of depletion of the ligand, and that would affect the early stages of the reaction. Our results are expressed in a simple analytical form and can be used for the design and interpretation of experimental data.
配体与细胞表面受体的结合速率可能受扩散限制。我们分析了在存在对流质量传输的情况下,配体在静止液体中受扩散限制的结合动力学。我们推导了一个用传质系数表示反应动力学的公式。从结合曲线的形状不容易识别适度的传输限制动力学,这可能导致速率系数的错误估计。我们将结果应用于实际重要的情况:搅拌液体体积中的细胞悬浮液和层流作用下的汇合细胞集落。使用表征配体 - 受体相互作用的典型数值,我们表明搅拌和灌注可能是决定反应速率的重要因素。对于汇合集落,早期反应动力学需要不同的处理方法,我们针对低受体占有率的情况给出了处理方法。我们表明,即使有快速灌注,细胞单层也会瞬时产生配体耗尽区,这将影响反应的早期阶段。我们的结果以简单的解析形式表示,可用于实验数据的设计和解释。