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OLIGOMERIC SEPARATION OF IONIC AND NONIONIC ETHOXYLATED POLYMERS BY CAPILLARY GEL ELECTROPHORESIS

机译:毛细管凝胶电泳低聚分离离子型和非离子型乙氧基化聚合物

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摘要

Capillary gel electrophoresis (CGE) has proven itself as a superior, high-resolution technique for separating proteins, peptides, oligonucleotides, and other naturally occurring molecules. In the years since its inception, few applications of CGE to nonbiological synthetic polymers have been reported. CGE has been applied to the separation of ionic and nonionic ethoxylated surfactants and poly(ethylene glycol) (PEG) oligomers. Oligomer distributions of several sulfated and phosphated alkylphenol ethoxylate surfactants have been baseline resolved with CGE on commercial cross-linked polyacrylamide gel columns. Nonionic surfactants and PEG oligomers were derivatized with phthalic anhydride in order to provide charge and detectability. PEG oligomers ranging from ethylene glycol to species containing more than 120 ethylene oxide units have been resolved. A linear relationship between migration time and molecular weight was found, which indicates that the separation mechanism is not simply based on molecular size but is also influenced by the electrophoretic mobility of the oligomers. The main drawbacks of CGE include relatively long analysis times and somewhat fragile and expensive columns.
机译:毛细管电泳(CGE)已被证明是一种出色的高分辨率技术,可分离蛋白质,肽,寡核苷酸和其他天然分子。自成立以来的几年中,几乎没有报道将CGE应用于非生物合成聚合物。 CGE已应用于离子和非离子乙氧基化表面活性剂与聚(乙二醇)(PEG)低聚物的分离。几种硫酸化和磷酸化的烷基酚乙氧基化物表面活性剂的低聚物分布已通过CGE在商业交联的聚丙烯酰胺凝胶柱上进行了基线解析。非离子表面活性剂和PEG低聚物用邻苯二甲酸酐衍生化,以提供电荷和可检测性。已解决了从乙二醇到含有120多个环氧乙烷单元的PEG低聚物。发现迁移时间与分子量之间存在线性关系,这表明分离机理不仅是基于分子大小,而且还受到低聚物电泳迁移率的影响。 CGE的主要缺点包括相对较长的分析时间和有些脆弱且昂贵的色谱柱。

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