Barbosa J, Bergés R, Toro I, Sanz-Nebot V
Department of Analytical Chemistry, Diagonal 647, 08028, Barcelond, Spain.
Talanta. 1997 Jul;44(7):1271-83. doi: 10.1016/s0039-9140(96)02188-1.
Ionization constants of nine quinolone antibacterials in acetonitrile-water mixtures containing 0, 5.5, 10, 16.3, 25, 30, 40, 50 and 70% (w/w) acetonitrile were obtained and assignment of these pK values to the several potentially ionizable functional groups was made. The variation of the pK values obtained over the whole composition range studied can be explained by consideration of the preferential solvation of electrolytes in acetonitrile-water mixtures. In order to obtain pK values in any of the unlimited number of possible binary solvent acetonitrile-water mixtures, relationships between pK values and different bulk properties (such as dielectric constant) were examined. The linear solvation energy relationships method, LSER, was applied to study the correlation of pK values with the solvatochromic parameters of acetonitrile-water mixtures. The equations obtained allow calculation of the pK values of the quinolone antimicrobials in any acetonitrile-water mixtures up to 70% (w/w) and thus permit the knowledge of the acid-base behaviour of these important antimicrobials in the widely used acetonitrile-water media.
获得了9种喹诺酮类抗菌剂在含有0、5.5、10、16.3、25、30、40、50和70%(w/w)乙腈的乙腈 - 水混合物中的电离常数,并将这些pK值分配给了几个潜在可电离的官能团。通过考虑电解质在乙腈 - 水混合物中的优先溶剂化作用,可以解释在所研究的整个组成范围内获得的pK值的变化。为了在任意数量的可能的二元溶剂乙腈 - 水混合物中获得pK值,研究了pK值与不同本体性质(如介电常数)之间的关系。应用线性溶剂化能关系方法(LSER)来研究pK值与乙腈 - 水混合物的溶剂化显色参数之间的相关性。所得到的方程允许计算喹诺酮类抗菌剂在高达70%(w/w)的任何乙腈 - 水混合物中的pK值,从而使人们了解这些重要抗菌剂在广泛使用的乙腈 - 水介质中的酸碱行为。