Miura R M, Pernarowski M
Department of Mathematics, University of British Columbia, Vancouver, Canada.
Bull Math Biol. 1995 Mar;57(2):229-46. doi: 10.1007/BF02460617.
Pancreatic beta-cells in intact islets of Langerhans perfused with various glucose concentrations exhibit periodic bursting electrical activity (BEA) consisting of active and silent phases. The fraction of the time spent in the active phase is called the plateau fraction and appears to be strongly correlated with the rate of release of insulin from islets as glucose concentration is varied. Here this correlation is quantified and a theoretical development is presented in detail. Experimental rates of insulin release are correlated with "effective" plateau fractions over a range of glucose concentrations. There are a number of different models for BEA in pancreatic beta-cells and a method is developed here to quantify the dependence of a glucose dependent parameter on glucose concentration. As an example, the plateau fractions computed from the Sherman-Rinzel-Keizer model are matched with experimental plateau fractions to obtain a relationship between the model's glucose-dependent parameter, beta, and glucose concentration. Knowledge of the relationships between beta and glucose concentration and between experimental measurements of rates of insulin release and plateau fractions permits the determination of theoretical rates of insulin release from the model.
在灌注不同葡萄糖浓度的完整胰岛朗格汉斯细胞中的胰腺β细胞,表现出由活跃期和静止期组成的周期性爆发式电活动(BEA)。处于活跃期的时间占比称为平台期分数,并且当葡萄糖浓度变化时,它似乎与胰岛胰岛素释放速率密切相关。在此对这种相关性进行了量化,并详细阐述了理论推导。在一系列葡萄糖浓度范围内,胰岛素释放的实验速率与“有效”平台期分数相关。胰腺β细胞中存在多种不同的BEA模型,本文开发了一种方法来量化葡萄糖依赖性参数对葡萄糖浓度的依赖性。例如,将根据谢尔曼 - 林泽尔 - 凯泽模型计算出的平台期分数与实验平台期分数进行匹配,以获得该模型的葡萄糖依赖性参数β与葡萄糖浓度之间的关系。了解β与葡萄糖浓度之间的关系以及胰岛素释放速率的实验测量值与平台期分数之间的关系,有助于确定该模型的胰岛素理论释放速率。