The stableo-phthalaldehyde-ferrocene/6-ferrocenyl-1-hexanethiol pre-column derivatization high-performance liquid chromatography of dimethylarginine by novel dual fluorescence and electrochemical detector

  • Katsuhiro Suzuki
  • , Masatoki Katayama
  • , Kiyoshi Takamatsu
  • , Satoru Kaneko
  • , Hiromichi Ishikawa
  • , Takahiro Tsukimura
  • , Tadayasu Togawa

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Monomethylarginine, asymmetric dimethylarginine and symmetric dimethylarginine were separated on a Wakopak Combi ODS with an acetonitrile-100mm potassium phosphate buffer (pH 7.0; 1:1, v/v). Dimethylarginines were derived from o-phthalaldehyde for the fluorescence detector and from 6-ferrocenyl-1-hexanethiol for the electrochemical detector. The detection limits of the dimethylarginines in spiked plasma were 0.3-0.5 pmol by electrochemical detection and 1-2 pmol by fluorescence detection. The detection limits were improved over 30 times by electrochemical detection and 10 times by fluorescence detection compared with previous reports. In previous derivatization liquid chromatography, the reaction solutions, o-phthalaldehyde, 2-mercaptethanol and dimethylarginines were unstable and required quick derivatization at 4°C. By our proposed pre-column methods, the dimethylarginines were derivatized at room temperature and the fluorescent products were stable for 6h. The manipulation performance was greatly advanced compared with previous LC reports. This is the first report on stable and sensitive dimethylarginines by dual detection. The selectivity was also improved by dual detection. The proposed method was applied to preliminary monitoring of dimethylargines in plasma and urine.

Original languageEnglish
Pages (from-to)535-538
Number of pages4
JournalBiomedical Chromatography
Volume27
Issue number4
DOIs
StatePublished - Apr 2013
Externally publishedYes

Keywords

  • Asymmetric dimethylarginine
  • Dual detection
  • Electrochemical detection
  • Fluorescence detection
  • Pre-column derivatization HPLC

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