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红细胞缗钱状形成的动力学。II. 可逆反应。

Kinetics of rouleau formation. II. Reversible reactions.

作者信息

Samsel R W, Perelson A S

出版信息

Biophys J. 1984 Apr;45(4):805-24. doi: 10.1016/S0006-3495(84)84225-3.

Abstract

Red blood cells aggregate face-to-face to form long, cylindrical, straight chains and sometimes branched structures called rouleaux. Here we extend a kinetic model developed by R. W. Samsel and A. S. Perelson (1982, Biophys. J. 37:493-514) to include both the formation and dissociation of rouleaux. We examine thermodynamic constraints on the rate constants of the model imposed by the principle of detailed balance. Incorporation of reverse reactions allows us to compute mean sizes of rouleaux and straight chain segments within rouleaux, as functions of time and at equilibrium. Using the Flory - Stockmayer method from polymer chemistry, we obtain a closed-form solution for the size distribution of straight chain segments within rouleaux at any point in the evolution of the reaction. The predictions of our theory compare favorably with data collected by D. Kernick , A.W.L. Jay , S. Rowlands , and L. Skibo (1973, Can. J. Physiol. Pharmacol. 51:690-699) on the kinetics of rouleau formation. When rouleaux grow large, they may contain rings or loops and take on the appearance of a network. We demonstrate the importance of including the kinetics of ring closure in the development of realistic models of rouleaux formation.

摘要

红细胞面对面聚集形成长的、圆柱形的、直链,有时还会形成称为缗钱状的分支结构。在这里,我们扩展了由R. W. Samsel和A. S. Perelson(1982年,《生物物理学杂志》37:493 - 514)开发的动力学模型,以包括缗钱状的形成和解离。我们研究了由细致平衡原理对模型速率常数施加的热力学约束。纳入逆向反应使我们能够计算缗钱状的平均大小以及缗钱状内直链段的平均大小,作为时间和平衡状态的函数。使用高分子化学中的Flory - Stockmayer方法,我们得到了反应演化过程中任何时刻缗钱状内直链段大小分布的封闭形式解。我们理论的预测与D. Kernick、A.W.L. Jay、S. Rowlands和L. Skibo(1973年,《加拿大生理学与药理学杂志》51:690 - 699)收集的关于缗钱状形成动力学的数据相比具有优势。当缗钱状变得很大时,它们可能包含环或圈,并呈现出网络的外观。我们证明了在开发缗钱状形成的现实模型时纳入闭环动力学的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b45/1434900/247e489a7c88/biophysj00206-0156-a.jpg

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