Fitting Parameters of a Modified Hill’s Equation and Their Influence on the Shape of the Model Hemoglobin Oxygenation Curve

Igor A. Lavrinenko, G. Vashanov, J. L. Hernández Cáceres, Y. Nechipurenko
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引用次数: 1

Abstract

Oxygen binds to hemoglobin cooperatively, and a correct description of this binding is relevant not only for understanding the mechanisms of involved molecular processes but also for clinical purposes. Hill’s equation, derived over a hundred years ago, is still the simplest and most efficient way to perform this description. However, in terms of accuracy, it is inferior to Adair´s equation, which contains more parameters. We proposed to use a modified Hill equation and showed that it allows a more accurate description of the binding of oxygen to hemoglobin than Adair’s equation. At the same time, unlike Adair’s equation, our model retains the physical meaning given to the original Hill equation. We considered and analyzed the influence of the equation parameters on the course of the oxygenation curve and presented the relationship between the fitting parameters and other parameters derived from them in the form of a diagram-graph, which, in our opinion, simplifies the perception of these estimates and can be useful in solving a number of problems for which the traditional way of analyzing the degree of cooperative interaction was via the Hill equation. We suggest that the newly proposed parameter hmax introduced in our model should be regarded as crucial for a better description of the oxygenation curve.
修正Hill方程的拟合参数及其对模型血红蛋白氧合曲线形状的影响
氧与血红蛋白是协同结合的,正确描述这种结合不仅对理解相关分子过程的机制有重要意义,而且对临床也有重要意义。一百多年前推导出来的希尔方程,仍然是最简单、最有效的描述方法。但在准确性方面,它不如Adair的方程,后者包含更多的参数。我们建议使用修改后的Hill方程,并证明它比Adair方程更准确地描述了氧与血红蛋白的结合。同时,与Adair的方程不同,我们的模型保留了原Hill方程的物理意义。我们考虑并分析了方程参数对氧合曲线过程的影响,并以图表的形式给出了拟合参数与由它们导出的其他参数之间的关系,我们认为,这简化了这些估计的感知,并且可以用于解决一些传统的分析合作相互作用程度的方法是通过Hill方程的问题。我们建议,在我们的模型中引入的新提出的参数hmax应该被视为更好地描述氧合曲线的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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