• Title of article

    Detection of Nonderivatized Peptides in Capillary Electrophoresis Using Quenched Phosphorescence

  • Author/Authors

    Ariese، Freek نويسنده , , Gooijer، Cees نويسنده , , Brinkman، Udo A. Th. نويسنده , , Kuijt، Jacobus نويسنده , , Teylingen، Raymond van نويسنده , , Nijbacker، Tom نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2001
  • Pages
    -5025
  • From page
    5026
  • To page
    0
  • Abstract
    A capillary electrophoresis detection technique for (small) peptides is presented, i.e. quenched phosphorescence, a method that is generally applicable and does not require chemical derivatization. For this purpose, a novel phosphorophore, 1-bromo-4-naphthalenesulfonic acid (BrNS), was synthesized. BrNS has sufficient water solubility and provides strong phosphorescence at room temperature over a wide pH range. The detection is based on the dynamic quenching of the BrNS phosphorescence background signal by electron transfer from the amino group of the peptides at pH 9.5-10. For the di- and tripeptides Val-Tyr-Val, Val-Gly-Gly, Ala-Ser, Gly-Asn, Gly-Ala, and Gly-Tyr, detection limits in the range of 5-20 mu g/L were obtained. The novel technique is even a good alternative for the (limited) group of peptides containing tyrosine and, thus, exhibiting native fluorescence as well as strong UV absorption: using Gly-Tyr, Val-Tyr-Val, methionine enkephalin, and human angiotensin II as test compounds, quenched phosphorescence detection was found to compare favorably with absorption detection at 190- and 266-nm laser-induced fluorescence detection, as performed with a recently developed, small-size, quadrupled Nd:YAG laser.
  • Keywords
    Trifolium pratense , Isoflavone glycoside 6"-O-malonates , red clover , Solid-phase extraction (SPE) , Isoflavone glycoside 6"-O-acetates , High-performance liquid chromatography-mass spectrometry (LC-MS)
  • Journal title
    Analytical Chemistry
  • Serial Year
    2001
  • Journal title
    Analytical Chemistry
  • Record number

    51886