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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Polymeric alkenoxy amino acid surfactants: V. Comparison of carboxylate and sulfate head group polymeric surfactants for enantioseparation in MEKC.
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Polymeric alkenoxy amino acid surfactants: V. Comparison of carboxylate and sulfate head group polymeric surfactants for enantioseparation in MEKC.

机译:聚合的链烯氧基氨基酸表面活性剂:V.在MEKC中用于对映体分离的羧酸盐和硫酸盐头基聚合表面活性剂的比较。

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In this work, six amino acid derived (L-leucinol, L-leucine, L-isoleucinol, L-isoleucine, L-valinol, and L-valine) polymeric chiral surfactants with carboxylate and sulfate head groups that were recently synthesized in our laboratory [30, 33, 35] are compared for the simultaneous enantioseparation of several groups of structurally similar analytes under neutral and basic pH conditions. The physicochemical properties of the monomers and polymers of both classes of sulfated and carboxylated surfactants are compared. In addition, cryogenic high-resolution electron microscopy showed tubular structures with distinct order of the tubes of 50-100 nm width. A Plackett-Burmann experimental design is used to study the factors that influence the chiral resolution and analysis time of ten structurally related phenylethylamines (PEAs). It is observed that increasing the number of hydroxy groups on the benzene ring of the PEAs resulted in deterioration of enantioseparation using any of the six polymeric surfactants.For all three classes of PEAs, polysodium N-undecenoxycarbonyl-L-amino acidate (poly-L-SUCAA)-type surfactants provided enhanced resolution compared to that of polysodium N-undecenoxycarbonyl-L-amino acid sulfates (poly-L-SUCAASS). Several classes of basic and neutral chiral compounds (e.g., beta-blockers benzoin derivatives, PTH-amino acids, and benzodiazepines) also provided improved chiral separations with poly-L-SUCAA. Among the poly-L-SUCAAs, polysodium N-undecenoxycarbonyl-L-isoleucine sulfate (poly--SUCL) exhibited overall the best enantioseparation capability for the investigated basic and neutral compounds, while among the poly-L-SUCAASs, polysodium N-undecenoxycarbonyl-L-isoleucine sulfate (poly-L-SUCILS), and polysodium N-undecenoxycarbonyl-L-valine sulfate (poly-L-SUCVS) proved to be equally effective for enantioseparation. This work clearly demonstrates that variation in the head group of polymeric alkenoxy amino acid surfactants has a significant effect on chiral separations.
机译:在这项工作中,我们实验室最近合成了具有羧酸根和硫酸根基团的六种氨基酸衍生的(L-亮氨酸,L-亮氨酸,L-异亮氨酸,L-异亮氨酸,L-缬氨酸和L-缬氨酸)聚合物手性表面活性剂[30,33,35]比较了在中性和碱性pH条件下几组结构相似的分析物的同时对映体分离。比较了两类硫酸化和羧化表面活性剂的单体和聚合物的物理化学性质。此外,低温高分辨率电子显微镜显示管状结构,其管的阶数明显不同,宽度为50-100 nm。 Plackett-Burmann实验设计用于研究影响十种结构相关的苯乙胺(PEA)的手性拆分和分析时间的因素。观察到,使用六种聚合表面活性剂中的任何一种,增加PEA苯环上的羟基数量会导致对映体分离变差。对于所有三类PEA,聚N-十一碳氧羰基-L-氨基酸钠(poly-L -SUCAA)型表面活性剂与聚N-十一碳氧羰基-L-氨基酸硫酸盐(poly-L-SUCAASS)相比,具有更高的分离度。几类碱性和中性手性化合物(例如,β-阻滞剂苯偶姻衍生物,PTH-氨基酸和苯并二氮杂)也可以通过聚L-SUCAA改善手性分离。在聚-L-SUCAAS中,对于所研究的碱性和中性化合物,聚N-十一碳氧羰基-L-异亮氨酸硫酸钠(poly-SUCL)总体上表现出最佳的对映体分离能力,而在聚-L-SUCAAS中,聚N-十一碳氧羰基钠-L-异亮氨酸硫酸盐(poly-L-SUCILS)和N-十一碳氧羰基-L-缬氨酸硫酸钠(poly-L-SUCVS)被证明对映体分离同样有效。这项工作清楚地表明,聚合的链烯氧基氨基酸表面活性剂的头部基团的变化对手性分离有重大影响。

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