Simultaneous analysis for 2-thiothiazolidine-4-carboxilic acid and thiocarbamide using butanol extraction method

부타놀 추출법을 이용한 2-thiothiazolidine-4-carboxilic acid와 thiocarbamide의 동시정량에 관한 연구

  • Lee, Sanghoi (Institute for Occupational Health, Yonsei University College of medicine) ;
  • Song, Jaesok (Institute for Occupational Health, Yonsei University College of medicine) ;
  • Yoon, youngshik (Institute for Occupational Health, Yonsei University College of medicine) ;
  • Kim, Chinyon (Institute for Occupational Health, Yonsei University College of medicine) ;
  • Won, Jonguk (Institute for Occupational Health, Yonsei University College of medicine) ;
  • Roh, Jaehoon (Institute for Occupational Health, Yonsei University College of medicine)
  • 이상회 (연세대학교 의과대학 산업보건연구소) ;
  • 송재석 (연세대학교 의과대학 산업보건연구소) ;
  • 윤영식 (연세대학교 의과대학 산업보건연구소) ;
  • 김치년 (연세대학교 의과대학 산업보건연구소) ;
  • 원종욱 (연세대학교 의과대학 산업보건연구소) ;
  • 노재훈 (연세대학교 의과대학 산업보건연구소)
  • Received : 2000.03.23
  • Accepted : 2000.04.27
  • Published : 2000.05.10

Abstract

This study was conducted to supplement limit of previous study, The objectives of this study were to select optimal conditions of high performance liquid chromatography(HPLC) operation for detecting urinary 2-thiothiazolicline-4-carboxylic acid(TTCA) and thiocarbamide simultaneously, and to evaluate recovery rates for various liquid-liquid extration method of these metabolites, The results are as follows : 1. The urinary TTCA and thiocarbamide were separate sharply when flow rate is $0.7m{\ell}/min$, using a series $C_8$ and $C_{18}$ column, 50 mM $KH_2PO_4$ : acetonitrile (93.5 : 6.5) and pH 3.5 as a mobile phase. The retention time was TTCA, $12.07{\pm}0.11$(mean${\pm}$SD, n=06), thiocarbamide, $7.85{\pm}0.01$ (mean${\pm}$SD, n=6), respectively. The calibration curve for TTCA and thiocarbamide was linear within the range 0.05 to $30{\mu}g/m{\ell}$. 2. By the liquid-liquid extration, butanol extration with $(NH_4)_2$ as a salting-out reagent was used as a simultaneous extration method for these metabolites in acid state, and recovery rates of this method are urinary TTCA, $49.6{\pm}17.7$ (mean${\pm}$SD, n=16), thiocarbamide, $43,9{\pm}5.50$ (mean${\pm}$SD, n=16), respectively 3. The precision(pooled coefficients of variation for 4 concentration) of the urinary thiocarbamide analysis was 0.03754 by butanol liquid-liquid extraction with $(NH_4)_2$ as a salting-out reagent, and TTCA was 0.04082 by ethyl acetate liquid-liquid extration with $(NH_4)_2$ as a salting out reagent The above results show that the butanol liquid-liquid extraction with $(NH_4)_2$ as a salting-out reagent in acid state, and using a series $C_8$ and $C_{18}$ column, 50 mM $KH_2PO_4$ : acetonitrile (93.5 : 6.5) and pH 3.5 as a mobile phase are suitable for the analysis of urinary TTCA and thiocarbamide simultaneously. The detection limit of TTCA and thiocarbamide was about $0.17{\mu}g/m{\ell}$, $0.07{\mu}g/m{\ell}$.

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