| Literature DB >> 26149194 |
Antonio Lopalco1, Justin Douglas2, Nunzio Denora3, Valentino J Stella4.
Abstract
The determination of the acid-base dissociation constants, and thus the pKa values, of α-keto acids such as pyruvic acid is complex because of the existence of these acids in their hydrated and nonhydrated or oxo state. Equilibria involved in the hydration and dehydration of the α-keto group of pyruvic acid and three other α-keto acids, 3-methyl-2-oxobutanoic acid, 4-methyl-2-oxopentanoic acid, and 2-oxo-2-phenylacetic acid, were investigated by proton and carbon nuclear magnetic resonance spectrometry, at constant ionic strength, 0.15, and 25 °C. Dissociation constants for the oxo (pKa(oxo)) and hydrated (pKa(hyd)) acids of each compound were estimated from the change in the degree of hydration with changes in pH and directly from the changes in chemical shifts of various hydrogen and carbons nuclei with pH. α-Keto acids showed greater hydration in their acidic forms than their carboxylate forms. The degree of hydration was sensitive to steric and electronic/resonance factors. As expected, the oxo forms of the acids were stronger acids compared with their hydrated analogs, and their dissociation constants were also sensitive to steric and electronic factors.Entities:
Keywords: NMR spectroscopy; dissociation constants; hydration; non-linear regression; pyruvic acid; structure property relationship; α-keto carboxylic acids
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Year: 2016 PMID: 26149194 PMCID: PMC4703567 DOI: 10.1002/jps.24539
Source DB: PubMed Journal: J Pharm Sci ISSN: 0022-3549 Impact factor: 3.534