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A new model with internal variables for theoretical thermodynamic characterization of hemoglobin: Entropy determination and updates comparative study

机译:具有血红蛋白理论热力学表征的内部变量的新模型:熵测定和更新对比研究

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Hemolytic blood disorders such as hemoglobinopathies are one of the most widespread diseases in our country. This paper reports non equilibrium thermodynamic analysis of adult normal hemoglobin subjected to variable frequency of electric fields in the range 0.1-100 MHz, comparing with homozygous hemoglobin SS and heterozygous hemoglobin SC. This is done applying some results obtained in non equilibrium thermodynamic field with internal variables. After a brief introduction, the phenomenological and state coefficients are explicitly calculated for the three hemoglobins, in function of the perturbation frequency. These values allow to calculate the proper functions of non equilibrium thermodynamics with internal variables. By comparing the calculated values for each hemoglobin, a new characterization of the protein was possible. Results were synthesized in six tables. People with heterozygous hemoglobin SC result from the inheritance of a beta(S)-globin gene from one parent and a beta(C)-globin gene from the other parent. It is found that there is a significant variation in dielectric parameters, possibly due to the hemoglobin structures and percentage. (C) 2019 Elsevier B.V. All rights reserved.
机译:血压血管病毒如血液化血液疾病是我国最普遍的疾病之一。本文报告了在0.1-100MHz范围内的成人正常血红蛋白的成年正常血红蛋白的非平衡热力学分析,与纯合血红蛋白SS和杂合血红蛋白SC相比。这是在具有内部变量的非平衡热力学场中获得的一些结果。在简要介绍之后,在扰动频率的功能中明确计算三种血红蛋白的现象学和状态系数。这些值允许计算非平衡热力学与内部变量的适当功能。通过比较每个血红蛋白的计算值,可以进行蛋白质的新表征。结果在六个表中合成。杂合血红蛋白SC的人们因来自一个父母的β(s)葡萄糖基因的遗传和来自另一个母体的β(c)玻璃基因的遗传。发现介电参数存在显着变化,可能是由于血红蛋白结构和百分比。 (c)2019 Elsevier B.v.保留所有权利。

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