Journal of Analytical Sciences, Methods and Instrumentation

Volume 2, Issue 1 (March 2012)

ISSN Print: 2164-2745   ISSN Online: 2164-2753

Google-based Impact Factor: 0.42  Citations  

Enantioseparation of Three Non-Steroidal Anti-Inflammatory Agents on Chiral Stationary Phase by HPLC

HTML  Download Download as PDF (Size: 391KB)  PP. 18-23  
DOI: 10.4236/jasmi.2012.21004    3,901 Downloads   8,226 Views  Citations

ABSTRACT

This paper reported the enantioseparation of Naproxen, Ketoprofen and Etodolac on tartardiamide-DMB chiral stationary phase (CHI-DMB) and (R,R) –DNB-DPEDA chiral stationary phase,using hexane as the mobile phase with various modifiers. The influence of the mobile phase composition including the type and concentration of the modifiers in hexane and the structures of the analytes on the chiral separation was studied. The results indicated that the steric structure of the solute, especially the environment of the chiral carbon, was the predominant factor for the chiral recognition. The type, the steric structure and the concentration of the modifiers also influence the retention factor and the resolution. The chiral recognition mechanism of the analytes on CHI-DMB and (R,R) –DNB-DPEDA was also discussed. The hydrogen-bonding interaction played an important role on enantioseparation on CHI-DMB, so did the π-π interaction. On (R,R) –DNB-DPEDA the π-π interaction was the key for the solutes retention and enantioseparation, while hydrogen-bonding interaction was not important. Additionally, it has been demonstrated that enantioselectivity and retention was also dependent upon the nature and functional groups on the aromatic ring of solutes and CSP.

Share and Cite:

X. Zhang, Z. Li, B. Shen, J. Chen and X. Xu, "Enantioseparation of Three Non-Steroidal Anti-Inflammatory Agents on Chiral Stationary Phase by HPLC," Journal of Analytical Sciences, Methods and Instrumentation, Vol. 2 No. 1, 2012, pp. 18-23. doi: 10.4236/jasmi.2012.21004.

Cited by

[1] On the Enantioselective HPLC Separation Ability of Sub-2 µm Columns: Chiralpak® IG-U and ID-U
2019
[2] Recent progress on circularly polarized luminescent materials for organic optoelectronic devices
2018
[3] Synthesis of diastereomeric anhydrides of (RS)-ketorolac and (RS)-etodolac, semi-preparative HPLC enantioseparation, establishment of molecular asymmetry and …
2017
[4] Enantiomeric Resolution of (RS)-Naproxen and Application of (S)-Naproxen in the Direct and Indirect Enantioseparation of Racemic Compounds by Liquid …
Current Medicinal Chemistry, 2017
[5] Chiral separation and modeling of baclofen, bupropion, and etodolac profens on amylose reversed phase chiral column
Chirality, 2017
[6] Enantiomeric resolution of (RS)-naproxen and application of (S)-naproxen in the direct and indirect enantioseparation of racemic compounds by liquid …
Current Medicinal Chemistry, 2017
[7] Thin-layer chromatographic enantioseparation of (RS)-etodolac using indirect approach
2016
[8] Enantiomeric resolution of (±)-etodolac by direct approach using both achiral phases in thin-layer chromatography: a conceptual approach
2016
[9] A novel approach for enantioseparation as applied to (RS)‐etodolac from pharmaceutical formulations: LC MS and density functional theory support for confirmation …
Biomedical Chromatography, 2015
[10] A novel approach for enantioseparation as applied to (RS)‐etodolac from pharmaceutical formulations: LC MS and density functional theory support for confirmation of diastereomers so separated
Biomedical Chromatography, 2015
[11] ENANTIOMERIC SEPARATION OF ETODOLAC IN A BULK DRUG SUBSTANCE BY REVERSE-PHASE CHIRAL LIQUID CHROMATOGRAPHY METHOD
International Journal of Pharmacy and Pharmaceutical Sciences, 2015
[12] Purificación de moléculas quirales por HPLC
2015

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.