Comparison of cyclofructan-, cyclodextrin-, and polysaccharide-based chiral stationary phases for the separation of pharmaceuticals

被引:0
作者
Eliana A. Agathokleous
Ioannis J. Stavrou
Constantina Kapnissi-Christodoulou
机构
[1] University of Cyprus,Department of Chemistry
[2] European University Cyprus,Department of Life Sciences
来源
Analytical and Bioanalytical Chemistry | 2022年 / 414卷
关键词
Chiral stationary phase; Enantioseparation; Cyclofructan; Cyclodextrin; Cellulose; Complementary enantioselectivity;
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中图分类号
学科分类号
摘要
In this study, cyclofructan (CF)-, cyclodextrin (CD)-, and polysaccharide-based chiral stationary phases (CSPs) were exploited in high-performance liquid chromatography (HPLC) for the chiral separations of different clinically and pharmaceutically important compounds. In particular, R-naphthylethyl carbamate CF6 (RN–CF6), 3,5-dimethylphenyl carbamate CF7 (DMP–CF7), neutral beta cyclodextrin (β–CD), 3,5-dimethylphenyl carbamate β–CD (DMP–β–CD), and cellulose tris-(3,5-dimethylphenylcarbamate) (Cellulose–Tris DMP) columns were utilized under isocratic elution. The performance of these CSPs as chiral separation media was evaluated by use of nine analytes: acidic, basic, and amphiprotic. A possible correlation between the functional groups of these analytes and the chiral-recognition ability of each chiral column was also examined. The enantioseparations were optimized by varying different parameters, such as mobile phase additives, column temperature, and flow rate. Finally, a comparison was made between all CSPs, and it was expressed in terms of resolution (RS), efficiency (N), selectivity (α), retention factors (k1′, k2′) and analysis time (tR1, tR2). It was observed that RN–CF6 was the most suitable and efficient CSP for the chiral separation of various types of analytes, including acids, primary and tertiary amines, alcohols, and many neutral compounds. It was the only CSP that provided baseline enantioseparation of thyroxine (RS = 1.6) and cetirizine (RS = 2.0).
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页码:1323 / 1333
页数:10
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共 112 条
[1]  
Björkman S(1985)Determination of the enantiomers of indoprofen in blood plasma by high-performance liquid chromatography after rapid derivatization by means of ethyl chloroformate J Chromatogr B Biomed Sci Appl 339 339-346
[2]  
Stavrou IJ(2017)Chiral selectors in CE: recent development and applications (mid-2014 to mid-2016) Electrophoresis 38 786-819
[3]  
Agathokleous EA(1984)Cyclodextrin bonded phases for the liquid chromatographic separation of optical, geometrical, and structural isomers J Chromatogr Sci 22 411-415
[4]  
Kapnissi-Christodoulou CP(2012)Development of chiral stationary phases for high-performance liquid chromatographic separation TrAC, Trends Anal Chem 39 180-194
[5]  
Armstrong DW(2015)Gone in seconds: praxis, performance, and peculiarities of ultrafast chiral liquid chromatography with superficially porous particles Anal Chem 87 9137-9148
[6]  
DeMond W(2016)Hydroxypropyl beta cyclodextrin bonded superficially porous particle-based HILIC stationary phases J Liq Chromatogr Rel Technol 39 459-464
[7]  
Tang M(2017)Chromatographic separation of racemic praziquantel and its residual determination in perch by LC-MS/MS Talanta 174 380-386
[8]  
Zhang J(2009)Development of new HPLC chiral stationary phases based on native and derivatized cyclofructans Anal Chem 81 10215-10226
[9]  
Zhuang S(2015)Enantiomeric separations of ruthenium (II) polypyridyl complexes using HPLC with cyclofructan chiral stationary phases Chirality 27 64-70
[10]  
Liu W(2011)Evaluation of aromatic-derivatized cyclofructans 6 and 7 as HPLC chiral selectors Analyst 136 787-800