Rizvi Syed Asad Ali, Zheng Jie, Apkarian Robert P, Dublin Steven N, Shamsi Shahab A
Department of Chemistry, Center of Biotechnology and Drug Design, Georgia State University, Atlanta, Georgia 30303, USA.
Anal Chem. 2007 Feb 1;79(3):879-98. doi: 10.1021/ac061228t.
In this work, three amino acid-derived (l-leucinol, l-isoleucinol, l-valinol) sulfated chiral surfactants are synthesized and polymerized. These chiral sulfated surfactants are thoroughly characterized to determine critical micelle concentration, aggregation number, polarity, optical rotation, and partial specific volume. For the first time the morphological behavior of polymeric sulfated surfactants is revealed using cryogenic high-resolution electron microscopy. The polysodium N-undecenoyl-l-leucine sulfate shows distinct tubular structure, while polysodium N-undecenoyl-l-valine sulfate also shows tubular morphology but without any distinct order of the tubes. On the other hand, polysodium N-undecenoyl-l-isoleucine sulfate (poly-l-SUCILS) displays random distribution of coiled/curved filaments with heavy association of tightly and loosely bound water. All three polymeric sulfated surfactants are compared for enantioseparation of a broad range of structurally diverse racemic compounds at very acidic, neutral, and basic pH conditions in micellar electrokinetic chromatography (MEKC). A small combinatorial library of 10 structurally related phenylethylamines (PEAs) is investigated for chiral separation under acidic and moderately acidic to neutral pH conditions using an experimental design. In contrast to neutral pH conditions, at acidic pH, significantly enhanced chiral resolution is obtained for class I and class II PEAs due to the compact structure of polymeric sulfated surfactants. It is observed that the presence of a hydroxy group on the benzene ring of PEAs resulted in deterioration of enantioseparation. A sensitive MEKC-mass spectrometry (MS) method is developed for one of the PEAs (e.g., (+/-)-pseudoephedrine) in human urine. Very low limit of detection (LOD) is obtained at pH 2.0 (LOD 325 ng/mL), which is approximately 16 times better compared to pH 8.0 (LOD 5.2 microg/mL). Another broad range of chiral analytes (beta-blockers, phenoxypropionic acid, benzoin derivatives, PTH-amino acids, benzodiazepinones) studied also provided improved chiral separation at low pH compared to high-pH conditions. Among the three polymeric sulfated surfactants, poly-l-SUCILS with two chiral centers on the polymer head group provided overall higher enantioresolution for the investigated acidic, basic, and neutral compounds. This work clearly demonstrates for the first time the superiority of chiral separation and sensitive MS detection at low pH over conventional high-pH chiral separation and detection employing anionic chiral polymeric surfactants in MEKC and MEKC-MS.
在本研究中,合成并聚合了三种氨基酸衍生的(L-亮氨醇、L-异亮氨醇、L-缬氨醇)硫酸化手性表面活性剂。对这些手性硫酸化表面活性剂进行了全面表征,以确定临界胶束浓度、聚集数、极性、旋光度和比容。首次使用低温高分辨率电子显微镜揭示了聚合硫酸化表面活性剂的形态行为。N-十一碳烯酰-L-亮氨酸硫酸多糖钠呈现出明显的管状结构,而N-十一碳烯酰-L-缬氨酸硫酸多糖钠也呈现出管状形态,但管的排列没有任何明显规律。另一方面,N-十一碳烯酰-L-异亮氨酸硫酸多糖钠(聚-L-SUCILS)显示出卷曲/弯曲细丝的随机分布,紧密结合水和松散结合水大量缔合。在胶束电动色谱(MEKC)中,在非常酸性、中性和碱性pH条件下,比较了所有三种聚合硫酸化表面活性剂对多种结构多样的外消旋化合物的对映体分离能力。使用实验设计研究了一个由10种结构相关的苯乙胺(PEA)组成的小型组合文库在酸性和中等酸性至中性pH条件下的手性分离。与中性pH条件相比,在酸性pH下,由于聚合硫酸化表面活性剂的紧密结构,I类和II类PEA的手性拆分得到显著增强。观察到PEA苯环上羟基的存在导致对映体分离变差。针对人尿中的一种PEA(例如,(±)-伪麻黄碱)开发了一种灵敏的MEKC-质谱(MS)方法。在pH 2.0时获得了非常低的检测限(LOD)(LOD 325 ng/mL),与pH 8.0(LOD 5.2 μg/mL)相比,约好16倍。研究的另一大类手性分析物(β-阻滞剂、苯氧基丙酸、安息香衍生物、PTH-氨基酸、苯并二氮杂酮)在低pH条件下与高pH条件相比也提供了更好的手性分离。在这三种聚合硫酸化表面活性剂中,聚合物头部基团带有两个手性中心的聚-L-SUCILS对所研究的酸性、碱性和中性化合物总体上提供了更高的对映体拆分率。这项工作首次清楚地证明了在MEKC和MEKC-MS中,与使用阴离子手性聚合物表面活性剂的传统高pH手性分离和检测相比,低pH下的手性分离和灵敏MS检测具有优越性。