Valentini L, Gianazza E, Righetti P G
J Biochem Biophys Methods. 1980 Dec;3(6):323-38. doi: 10.1016/0165-022x(80)90041-x.
Basic equations have been derived linking the electrophoretic migration in a stationary pH gradient of simple, singly charged cations or anions and of mono- mono- valent ampholytes with the pKs of their ionizable groups. In the case of diprotic ampholytes, an equation and a curve are described calculating a correction factor to be applied to the mobility measurements, accounting for the influence of the opposite charge species on the mobility curve of the ion being measured. This correction factor is a function of delta pK and increases exponentially with decreasing values of delta pK. These theoretical considerations have been experimentally verified by running pH-mobility curves of colored compounds, such as methyl red, neutral red and dexorubicin. The pKs thus measured were in excellent agreement with the pKs obtained independently by spectrophotometric titrations.
已经推导了基本方程,将简单的单电荷阳离子或阴离子以及单价两性电解质在固定pH梯度中的电泳迁移与它们可电离基团的pK值联系起来。对于二元两性电解质,描述了一个方程和一条曲线,用于计算应用于迁移率测量的校正因子,该因子考虑了相反电荷物种对被测离子迁移率曲线的影响。这个校正因子是ΔpK的函数,并且随着ΔpK值的减小呈指数增加。通过绘制有色化合物(如甲基红、中性红和阿霉素)的pH-迁移率曲线,对这些理论考虑进行了实验验证。由此测得的pK值与通过分光光度滴定法独立获得的pK值非常吻合。