Mosher Richard A, Thormann Wolfgang
RAM Software Solutions, Tucson, AZ, USA.
Electrophoresis. 2008 Mar;29(5):1036-47. doi: 10.1002/elps.200700453.
The impact of the systematic variation of either DeltapK(a) or mobility of 140 biprotic carrier ampholytes on the conductivity profile of a pH 3-10 gradient was studied by dynamic computer simulation. A configuration with the greatest DeltapK(a) in the pH 6-7 range and uniform mobilities produced a conductivity profile consistent with that which is experimentally observed. A similar result was observed when the neutral (pI = 7) ampholyte is assigned the lowest mobility and mobilities of the other carriers are systematically increased as their pI's recede from 7. When equal DeltapK(a) values and mobilities are assigned to all ampholytes a conductivity plateau in the pH 5-9 region is produced which does not reflect what is seen experimentally. The variation in DeltapK(a) values is considered to most accurately reflect the electrochemical parameters of commercially available mixtures of carrier ampholytes. Simulations with unequal mobilities of the cationic and anionic species of the carrier ampholytes show either cathodic (greater mobility of the cationic species) or anodic (greater mobility of the anionic species) drifts of the pH gradient. The simulated cationic drifts compare well to those observed experimentally in a capillary in which the focusing of three dyes was followed by whole column optical imaging. The cathodic drift flattens the acidic portion of the gradient and steepens the basic part. This phenomenon is an additional argument against the notion that focused zones of carrier ampholytes have no electrophoretic flux.
通过动态计算机模拟研究了140种两性载体两性电解质的ΔpK(a)或迁移率的系统变化对pH 3 - 10梯度电导率分布的影响。在pH 6 - 7范围内具有最大ΔpK(a)且迁移率均匀的配置产生的电导率分布与实验观察到的一致。当将中性(pI = 7)两性电解质的迁移率设为最低,且其他载体的迁移率随着它们的pI从7降低而系统地增加时,观察到了类似的结果。当给所有两性电解质赋予相等的ΔpK(a)值和迁移率时,在pH 5 - 9区域会产生一个电导率平台,这与实验观察结果不符。ΔpK(a)值的变化被认为最准确地反映了市售载体两性电解质混合物的电化学参数。对载体两性电解质的阳离子和阴离子物种迁移率不相等的模拟显示了pH梯度的阴极(阳离子物种迁移率更大)或阳极(阴离子物种迁移率更大)漂移。模拟的阳离子漂移与在毛细管中通过全柱光学成像跟踪三种染料聚焦时实验观察到的结果相当。阴极漂移使梯度的酸性部分变平,碱性部分变陡。这种现象进一步证明了反对载体两性电解质聚焦区没有电泳通量这一观点的论据。