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Computational chemical analysis of unconjugated bilirubin anions and insights into pKa values clarification

机译:非共轭胆红素阴离子的计算化学分析和对pKa值的了解

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The pKa, the negative logarithm of the acid dissociation equilibrium constant, of the carboxylic acid groups of unconjugated bilirubin in water is a discussed issue because there are quite different experimental values reported. Using quantum mechanical calculations we have studied the conformational behavior of unconjugated bilirubin species (in gas phase and in solution modeled implicitly and explicitly) to provide evidence that may clarify pKa values because of its pathophysiological relevance. Our results show that rotation of carboxylate group, which is not restricted, settles it in a suitable place to establish stronger interactions that stabilizes the monoanion and the dianion to be properly solvated, demonstrating that the rationalization used to justify the high pKa values of unconjugated bilirubin is inappropriate. Furthermore, low unconjugated bilirubin (UCB) pKa values were estimated from a linear regression analysis.
机译:水中未结合胆红素的羧酸基团的pKa(酸解离平衡常数的负对数)是一个讨论的问题,因为已报道了非常不同的实验值。使用量子力学计算,我们研究了未结合胆红素物质的构象行为(在气相和在溶液中隐式和显式建模),以提供可以阐明pKa值的证据,因为其病理生理相关性。我们的结果表明,不受限制的羧酸酯基团的旋转将其稳定在合适的位置,以建立更强的相互作用,从而稳定单阴离子和二阴离子以被适当地溶剂化,这表明合理化用于证明未结合胆红素的高pKa值是合理的是不合适的。此外,根据线性回归分析估计了较低的未结合胆红素(UCB)pKa值。

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