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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Synthesis of UV-absorbing and fluorescent carrier ampholyte mixtures and their application for the determination of the operational pH values of buffering membranes used in isoelectric trapping separations
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Synthesis of UV-absorbing and fluorescent carrier ampholyte mixtures and their application for the determination of the operational pH values of buffering membranes used in isoelectric trapping separations

机译:吸收紫外线和荧光的载体两性电解质混合物的合成及其在测定等电阱分离中使用的缓冲膜的pH值中的应用

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Success in isoelectric trapping separations critically depends on the knowledge of the accurate operational pH value of the buffering membranes used. Currently, due to a lack of easy, rapid, accurate methods that can be used for the post-synthesis determination of the operational pH value of a buffering membrane, only nominal pH values calculated from the amounts of the reagents used in the synthesis of the membranes and their acid-base dissociation constants are available. To rectify this problem, UV-absorbing and fluorescent carrier ampholyte mixtures were prepared by alkylating pentacthylenehexamine with a chromophore and a fluorophore, followed by Michael addition of acrylic acid and itaconic acid to the resulting oligoamine. Carrier ampholyte mixtures, with evenly distributed absorbance values across the 3 < pI < 10 range, were prepared by blending. The master blend served as the feed mixture in binary isoelectric trapping separations that used the buffering membrane to be characterized. The pI value of the most basic UV-absorbing or fluorescent carrier ampholyte collected in the anodic separation compartment, determined by full-column imaging capillary isoelectric focusing analysis, indicates the operational pH value of the separation membrane. Published by Elsevier B.V.
机译:等电阱分离的成功与否,关键取决于对所用缓冲膜的准确操作pH值的了解。当前,由于缺乏可用于合成后测定缓冲膜的pH值的简便,快速,准确的方法,因此仅从用于合成DNA的试剂量中计算出标称pH值。膜及其酸碱解离常数是可用的。为了解决这个问题,通过将戊乙撑六胺与生色团和荧光团烷基化,然后将丙烯酸和衣康酸迈克尔加成到所得的低聚胺中来制备紫外线吸收剂和荧光载体两性混合物。通过混合制备在2 I <10范围内吸光度值分布均匀的载体两性电解质混合物。主混合物在二元等电阱分离中用作进料混合物,该分离过程使用了缓冲膜进行表征。通过全柱成像毛细管等电聚焦分析确定的,在阳极分离室中收集的最基本的吸收紫外线或荧光的载体两性电解质的pI值指示分离膜的工作pH值。由Elsevier B.V.发布

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