DOI QR코드

DOI QR Code

Separation of D and L Amino Acids by High-Performance Liquid Chromatography

  • Lee, Sun-Haing (Department of Chemical Education, Kyungpook National University) ;
  • Ryu, Jae-Wook (Department of Chemical Education, Kyungpook National University) ;
  • Park ,Kyoung-Sug (Department of Chemical Education, Kyungpook National University)
  • Published : 1986.02.20

Abstract

Separation of optical isomers of some derivatives of amino acids by reversed-phase HPLC has been accomplished by adding a chelate of an optically active amino acid to copper(Ⅱ) to the mobile phase. Cu(Ⅱ) complexes of L-proline and L-hydroxyproline in the mobile phase showed different degrees of separation. Optical isomers of DNS derivatives of amino acids are selectively separated, but those of several other derivatives are not at all. The kinds of buffer agents, the pH, and the concentrations of acetonitrile and the Cu(Ⅱ) ligand all affect the separations. The elution behavior between D and L DNS-amino acids appears to depend on the alkyl side chain of the amino acids. A chromatographic mechanism is proposed that is based on a stereospecificity of the formation of ternary complexes by the D, L-DNS-amino acids and the chiral additive associated with the stationary phase. The steric effects of the ligand exchange reactions are related with the feasibility of cis and/or trans attack of the amino acids to the binary chiral chelate retained on the stationary phase.

Keywords

References

  1. J. Chromatogr. v.60 V.A. Davankov;S.V. Rogozhin
  2. J. Chromatogr. v.82 V.A. Davankov;S.V. Rogozhin;A.V. Semechkin;T.P. Sachkova
  3. J. Am. Chem. Soc. v.97 G. Dotsevi;Y. Sogah;D.J. Cram
  4. J. Org. Chem. v.44 W.H. Pirkle;D.W. House
  5. J. Chromatogr. v.186 S. Hara;A. Dobashi
  6. Anal. Chem. v.51 J.N. Lepage;W. Lindner;G. Davies;D.E. Seitz;B.L. Karger
  7. J. Chromatogr. v.285 N. Qi;H. Kithara
  8. J. Chromatogr. v.255 E. Grushka;R. Leshem;C. Gilon
  9. J. Chromatogr. v.185 W. Lindner;J.N. Lepage;G. Davies;D.E. Seitz;B.S. Karger
  10. Science v.204 P.E. Hare;E. Gil-AV
  11. J. Chromatogr. v.199 S. Lam;F. Chow;A. Karmen
  12. J. Am. Chem. Soc. v.103 C. Gilon;R. Leshem;Y. Tapuhi;E. Grushka
  13. J. Chromatogr. v.205 T. Tapuhi;N. Miller;B.L. Karger
  14. J. Am. Chem. Soc. v.102 E. Gil-Av;A. Tishbee;P.E. Hare
  15. Anal. Chem. v.52 C. Gilon;R. Leshem;E. Grushka
  16. J. Chromatogr. v.203 I.D. Hay;T.M. Annesley;N.S. Jiang;C.A. Gorman
  17. J. Chromatogr. v.203 C. Gilon;R. Leshem;E. Grushka
  18. J. Chromatogr. v.218 A.A. Kurganov;V.A. Davankov
  19. J. Chromatogr. v.289 S. Lam;A. Karmen
  20. Chemical derivatization in liquid chromatography J.F. Lawrence;R.W. Frei
  21. J.C.S. Dalton V.A. Davankov;P.R. Mitchell
  22. Bull. Chem. Soc. Jpn. v.50 O. Yamauchi;T. Sakurai;A. Nakahara