Dynamics and stability analysis of enzymatic cooperative chemical reactions in biological systems with time-delayed effects

Akhtar Jan , Rehan Ali Shah , Hazrat Bilal , Bandar Almohsen , Rashid Jan , Bhupendra K. Sharma
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Abstract

The mathematical modeling and dynamic analysis of time-delayed enzymatic chemical reactions in biological systems are presented in this research. The objective is to examine the function of time lags in these reactions and to get a complete knowledge of the behavior of biological systems in a reaction to modifications in the quantity present of reactants and products. The model, which is based on delay differential equations, includes a time delay term to account for the lag between changes in the concentration of reactants, reaction rate constants and product responses. The findings give insight into how enzymatic processes behave dynamically and how stability is impacted by time lags, oscillation and general efficiency of the system. These results have significant importance for our comprehension of how biological processes are regulated and for the creation of biological control structures.

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具有时间延迟效应的生物系统中酶协同化学反应的动力学和稳定性分析
本研究介绍了生物系统中延时酶化学反应的数学建模和动态分析。目的是研究时滞在这些反应中的作用,并全面了解生物系统在反应中对反应物和生成物数量变化的行为。该模型以延迟微分方程为基础,包括一个时间延迟项,用于解释反应物浓度、反应速率常数和产物反应之间的滞后变化。研究结果让我们深入了解了酶促过程的动态行为,以及系统的稳定性如何受到时滞、振荡和一般效率的影响。这些结果对于我们理解生物过程的调控方式和创建生物控制结构具有重要意义。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
138
审稿时长
14 weeks
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