Hernández Julio A
Sección Biofísica, Facultad de Ciencias, Universidad de la República, Iguá esq. Mataojo, 11400 Montevideo, Uruguay.
J Biophys. 2013;2013:654543. doi: 10.1155/2013/654543. Epub 2013 Feb 28.
Most models developed to represent transport across epithelia assume that the cell interior constitutes a homogeneous compartment, characterized by a single concentration value of the transported species. This conception differs significantly from the current view, in which the cellular compartment is regarded as a highly crowded media of marked structural heterogeneity. Can the finding of relatively simple dynamic properties of transport processes in epithelia be compatible with this complex structural conception of the cell interior? The purpose of this work is to contribute with one simple theoretical approach to answer this question. For this, the techniques of model reduction are utilized to obtain a two-state reduced model from more complex linear models of transcellular transport with a larger number of intermediate states. In these complex models, each state corresponds to the solute concentration in an intermediate intracellular compartment. In addition, the numerical studies reveal that it is possible to approximate a general two-state model under conditions where strict reduction of the complex models cannot be performed. These results contribute with arguments to reconcile the current conception of the cell interior as a highly complex medium with the finding of relatively simple dynamic properties of transport across epithelial cells.
大多数为描述物质跨上皮细胞转运而建立的模型都假定细胞内部构成一个均匀的隔室,其特征是被转运物质具有单一浓度值。这一概念与当前观点有显著差异,在当前观点中,细胞隔室被视为具有明显结构异质性的高度拥挤介质。上皮细胞转运过程相对简单动力学特性的发现能否与细胞内部这种复杂的结构概念相兼容?这项工作的目的是通过一种简单的理论方法来回答这个问题。为此,利用模型简化技术从具有更多中间状态的跨细胞转运复杂线性模型中获得一个双态简化模型。在这些复杂模型中,每个状态对应于一个中间细胞内隔室中的溶质浓度。此外,数值研究表明,在无法对复杂模型进行严格简化的条件下,也有可能近似得到一个通用的双态模型。这些结果为调和当前将细胞内部视为高度复杂介质的概念与上皮细胞跨膜转运相对简单动力学特性的发现提供了论据。