Evaluation and comparison of a methylated teicoplanin aglycone to teicoplanin aglycone and natural teicoplanin chiral stationary phases

被引:39
|
作者
Xiao, TL
Tesarova, E
Anderson, JL
Egger, M
Armstrong, DW [1 ]
机构
[1] Univ Texas, Dept Chem & Biochem, Arlington, TX 76019 USA
[2] Pfizer, St Louis Labs Q3A, Chesterfield, MO USA
[3] Charles Univ Prague, Dept Phys & Macromol Chem, Fac Sci, Prague, Czech Republic
[4] Univ Toledo, Dept Chem, Toledo, OH 43606 USA
[5] Iowa State Univ, Dept Chem, Ames, IA USA
关键词
chiral stationary phases; enantiomer separation; HPLC; macrocyclic glycopeptide; methylation;
D O I
10.1002/jssc.200500332
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
HPLC enantiomeric separations of a wide variety of racemic analytes was evaluated using chiral stationary phases (CSPs) based on the macrocyclic glycopeptides teicoplanin (T), teicoplanin aglycone (TAG), and methylated teicoplanin aglycone (Me-TAG) in two different mobile phase modes, i.e., the RP mode and the polar organic (PO) mode. Comparison of the enantiomeric separations using Chirobiotic T, Chirobiotic TAG, and the methylated form of TAG were conducted in order to gain a better understanding of the roles of the polar functional groups on the CSP. Substantial effects due to the cleavage of saccharides and/or methylation on chiral separations were observed in both separation modes. Improved separation efficiencies for many acidic analytes were obtained by methylating the H-bonding groups of TAG. These groups were believed to be a contributing factor to band broadening on TAG due to their negative effect on mass transfer between the stationary phase and mobile phase. Ionic/dipolar interactions between the carboxylate group of the analytes and the amine groups on T, TAG, or Me-TAG are important for chiral discrimination. Therefore, analytes possessing a carboxyl group are good candidates for successful separations on these CSPs. Hydrophobic interactions are important for enantiomeric separations in the RP mode where the H-bonding interactions between analytes and the chiral selectors are relatively weak. Me-TAG offers higher hydrophobicity, which can accentuate the interactions of analytes with hydrophobic moieties, but these interactions are not necessarily stereoselective. In the PO mobile phase, electrostatic/dipolar interactions between polar functional groups are the dominating interactions in chiral recognition. Another important factor is steric fit, which could be changed with every modification of the T structure. Therefore, substantial changes of enantioseparations were obtained within this studied group of CSPs. The PO mode was shown to be the most powerful mobile phase mode for enantiomeric separations on T-based stationary phases, mainly due to the improved efficiency. Methylation of the TAG proved to be a very useful tool for investigating the chiral recognition mechanism for this group of chiral selectors.
引用
收藏
页码:429 / 445
页数:17
相关论文
共 50 条
  • [1] Thermodynamic origin of the chiral recognition of tryptophan on teicoplanin and teicoplanin aglycone stationary phases
    Haroun, M
    Ravelet, C
    Ravel, A
    Grosset, C
    Villet, A
    Peyrin, E
    JOURNAL OF SEPARATION SCIENCE, 2005, 28 (05) : 409 - 420
  • [2] Enantioseparation of dipeptides by capillary electrochromatography on a teicoplanin aglycone chiral stationary phase
    Schmid, MG
    Grobuschek, N
    Pessenhofer, V
    Klostius, A
    Gübitz, G
    JOURNAL OF CHROMATOGRAPHY A, 2003, 990 (1-2) : 83 - 90
  • [3] Enantioseparation of β2-amino acids by liquid chromatography using core-shell chiral stationary phases based on teicoplanin and teicoplanin aglycone
    Tanacs, Daniel
    Berkecz, Robert
    Misicka, Aleksandra
    Tymecka, Dagmara
    Fulop, Ferenc
    Armstrong, Daniel W.
    Ilisz, Istvan
    Peter, Antal
    JOURNAL OF CHROMATOGRAPHY A, 2021, 1653
  • [4] Enantioseparation of ß2-amino acids by liquid chromatography using core-shell chiral stationary phases based on teicoplanin and teicoplanin aglycone
    Tanács, Dániel
    Berkecz, Róbert
    Misicka, Aleksandra
    Tymecka, Dagmara
    Fülöp, Ferenc
    Armstrong, Daniel W.
    Ilisz, István
    Péter, Antal
    Journal of Chromatography A, 2021, 1653
  • [5] Enantioseparation of dipeptides and tripeptides by micro-HPLC comparing teicoplanin and teicoplanin aglycone as chiral selectors
    Schmid, MG
    Hölbling, M
    Schnedlitz, N
    Gübitz, G
    JOURNAL OF BIOCHEMICAL AND BIOPHYSICAL METHODS, 2004, 61 (1-2): : 1 - 10
  • [6] Chiral resolution of cromakalim by HPLC on teicoplanin and teicoplanin aglycon chiral stationary phases
    Aboul-Enein, HY
    Ali, I
    JOURNAL OF LIQUID CHROMATOGRAPHY & RELATED TECHNOLOGIES, 2002, 25 (13-15) : 2337 - 2344
  • [7] Evaluation and Comparison of a 3,5-Dimethylphenyl Isocyanate Teicoplanin and Phenyl Isocyanate Teicoplanin Chiral Stationary Phases
    Shen Baochun
    Zhang Datong
    Yuan Jianyong
    Xu Beijia
    Xu Xiuzhu
    CHINESE JOURNAL OF CHEMISTRY, 2009, 27 (04) : 628 - 632
  • [8] Evaluation and Comparison of m-Tolyl Isocyanate Teicoplanin and Teicoplanin Chiral Stationary Phase
    Shen Baochun
    Yuan Jianyong
    Xu Beijia
    Xu Xiuzhu
    ACTA CHIMICA SINICA, 2009, 67 (17) : 2005 - 2012
  • [9] CARBOXYHYDRAZIDES OF THE AGLYCONE OF TEICOPLANIN - SYNTHESIS AND ANTIBACTERIAL ACTIVITY
    TRANI, A
    MALABARBA, A
    FERRARI, P
    PALLANZA, R
    BERTI, M
    CIABATTI, R
    JOURNAL OF ANTIBIOTICS, 1990, 43 (11): : 1471 - 1482
  • [10] Effect of temperature on retention and enantiomeric separation of chiral sulfoxides using teicoplanin aglycone chiral stationary phase
    Mericko, D
    Lehotay, J
    Skacáni, I
    Armstrong, DW
    JOURNAL OF LIQUID CHROMATOGRAPHY & RELATED TECHNOLOGIES, 2006, 29 (05) : 623 - 638