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[通过水-生物聚合物-电解质模型系统揭示的临界现象、相平衡以及稳态的温度和结构最优值]

[Critical phenomena, phase equilibria, and the temperature and structural optimum of homeostasis, as revealed by a model system water-biopolymer-electrolyte].

作者信息

Rozhkov S P

出版信息

Biofizika. 2005 Mar-Apr;50(2):215-22.

Abstract

Equations of spinodal and two quasispinodals corresponding to critical and supercritical phase transitions leading to a rise of different dynamic structures of solution in the phase diagram of a model system water-biopolymer-electrolyte were obtained. The section of the phase diagram was considered where there exists the probability of quasi-equilibrium monomer-cluster and the principle of water-ion homeostasis is realized. Based on these results, a possible mechanism of origination of unspecific adaptation reactions of a biomolecular system at the stage of chemical evolution was suggested.

摘要

得到了对应于临界和超临界相变的旋节线方程以及两条准旋节线方程,这些相变导致模型系统水 - 生物聚合物 - 电解质相图中溶液的不同动态结构增加。考虑了相图中存在准平衡单体 - 聚集体的概率且水 - 离子稳态原理得以实现的部分。基于这些结果,提出了在化学进化阶段生物分子系统非特异性适应反应起源的一种可能机制。

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