97
Views
3
CrossRef citations to date
0
Altmetric
MASS SPECTROMETRY

Investigation of the HPLC-IT-TOF-MS Technique with Atmospheric Pressure Chemical Ionization for Speciation of Selenoaminoacids, Dimethyldiselenide, and Diphenyldiselenide

, &
Pages 642-650 | Received 29 Nov 2010, Accepted 02 May 2011, Published online: 13 Apr 2012

REFERENCES

  • Bierla , K. , J. Szpunar , and R. Lobinski, 2008 . Specific determination of selenoaminoacids in whole milk by 2D size-exclusion-ion-paring reversed phase high-performance liquid chromatography–inductively coupled plasma mass spectrometry (HPLC–ICP MS) . Anal. Chim. Acta. 624 : 195 – 202 .
  • Bird , S. , H. Ge , P. Uden , J. Tyson , E. Block , and E. Denoyer, 1997 . High-performance liquid chromatography of selenoamino acids and organoselenium compounds Speciation by inductively coupled plasma mass spectrometry . J. Chromatogr. A 789 : 349 – 359 .
  • Bueno , M. , and F. Pannier, 2009 . Quantitative analysis of volatile selenium metabolites in normal urine by headspace solid phase microextraction gas chromatography–inductively coupled plasma mass spectrometry . Talanta 78 : 759 – 763 .
  • Cabanero , A. , Y. Madrid , and C. Camara, 2005 . Study of mercury–selenium interaction in chicken liver by size exclusion chromatography inductively coupled plasma mass spectrometry . J. Anal. At. Spectrom 20 : 847 – 855 .
  • Campillo , N. , R. Penalver, M. Hernandez-Cordoba , C. Perez-Sirvent , and M.-J. Martinez-Sanchez, 2007 . Comparison of two derivatizing agents for the simultaneous determination of selenite and organoselenium species by gas chromatography and atomic emission detection after preconcentration using solid-phase microextraction . J. Chromatogr. A 1165 : 191 – 199 .
  • Cao, T. , R. Cooney , M. Woznichak , S. Way , and R. Browner, 2001 . Speciation and identification of organoselenium metabolites in human urine using inductively coupled plasma mass spectrometry and tandem mass spectrometry . Anal. Chem. 73 : 2898 – 2902 .
  • Devos , C. , K. Sandra , and P. Sandra, 2002 . Capillary gas chromatography inductively coupled plasma mass spectrometry (CGC-ICP-MS) for the enantiomeric analysis of D,L-selenomethionine in food supplements and urine . J. Pharm. Biomed. Anal. 27 : 507 – 514 .
  • Diaz-Huerta, V. , J. Szpunar , R. Lobinki , M. L. Fernandez-Sanchez , and A. Sanz-Medel, 2003 . Sample preparation for identification of selenocompounds in urine by electrospray-MS/MS . J. Anal. At. Spectrom . 18 : 1471 – 1476 .
  • Dietz , C. , J. Sanz Landaluze , P. Ximenez-Embun , Y. Madrid-Albarran , and C. Camara, 2004a. SPME-multicapillary GC coupled to different detection systems and applied to volatile organoselenium speciation in yeast. J. Anal. At. Spectrom. 19: 260–266.
  • Dietz , C. , J. Sanz Landaluze , P. Ximenez-Embun , Y. Madrid-Albarran , and C. Camara , 2004b Volatile organo-selenium speciation in biological matter by solid phase microextraction–moderate temperature multicapillary gas chromatography with microwave induced plasma atomic emission spectrometry detection . Anal. Chim. Acta 501 : 157 – 167 .
  • Dumont , E. , F. Vanhaecke , and R. Cornelis, 2006 . Selenium speciation from food source to metabolites: a critical review . Anal. Bioanal. Chem. 385 : 1304 – 1323 .
  • Gomez-Ariza , J. , D. Sanchez-Rodas , M. A. Caro de la Torre , I. Giraldez , and et al. . 2000 . Column-switching system for selenium speciation by coupling reversed-phase and ion-exchange high-performance liquid chromatography with microwave-assisted digestion–hydride generation–atomic fluorescence spectrometry . J. Chromatogr. A 889 : 33 – 39 .
  • Haberhauer-Troyer , C. , G. Alvarez-Llamas , E. Zitting , P. Rodriguez-Gonzalez , E. Rosenberg , and et al. . 2003 . A. Comparison of different chloroformates for the derivatisation of seleno amino acids for gas chromatographic analysis . J. Chromatogr. A 1015 : 1 – 10 .
  • Hongwei , Y. , C. Chunying , G. Yuxi , L. Bai , and et al. . 2006 . Selenium speciation in biological samples using a hyphenated technique of high-performance liquid chromatography and inductively coupled plasma mass spectrometry . Chin. J. Anal. Chem . 34 : 749 – 753 .
  • Kapsimali , D. C. , and G. A. Zachariadis, 2009 . Comparison of tetraethylborate and tetraphenylborate for selenite determination in human urine by gas chromatography mass spectrometry, after headspace solid phase microextraction , Talanta 78 : 570 – 576 .
  • Kotrebai, M. , S. Bird , J. Tyson , E. Block , and et al. . 1999 . Characterization of selenium species in biological extracts by enhanced ion-pair liquid chromatography with inductively coupled plasma-mass spectrometry and by referenced electrospray ionization-mass spectrometry . Spectrochim. Acta B 54 : 1573 – 1591 .
  • Landaluze , J. , C. Dietz , Y. Madrid , and et al. . 2004 . Volatile organoselenium monitoring in production and gastric digestion processes of selenized yeast by solid-phase microextraction-multicapillary gas chromatography coupled microwave-induced plasma atomic emission spectrometry . Appl. Organometal. Chem. 18 : 606 – 613 .
  • Larsen , E. , M. Hansen , T. Fan , and et al. . 2001 . Speciation of selenoamino acids, selenonium ions and inorganic selenium by ion exchange HPLC with mass spectrometric detection and its application to yeast and algae . J. Anal. At. Spectrom. 16 : 1403 – 1408 .
  • Liang , L. , S. Mo , Y. Cai , S. Mou , G. Jiang , and et al. . 2006 . Direct amino acid analysis method for speciation of selenoamino acids using high-performance anion-exchange chromatography coupled with integrated pulsed amperometric detection . J. Chromatogr. A 1118 : 134 – 138 .
  • Pelaez , M. V. , M. M. Bayon , J. I. G Alonso , and et al. . 2000 . A comparison of different derivatization approaches for the determination of selenomethionine by GC-ICP-MS . J. Anal. At. Spectrom. 15 : 1217 – 1222 .
  • Polatajko , A. , B. Banas , J. R. Encinar , and et al. . 2005 . Investigation of the recovery of selenomethionine from selenized yeast by two-dimensional HPLC–ICP MS . Anal Bioanal Chem. 381 : 844 – 849 .
  • Pyrzynska , K. 2009 . Selenium speciation in enriched vegetables . Food Chem. 114 : 1183 – 1191 .
  • Rosenberg , E. 2003 . The potential of organic (electrospray- and atmospheric pressure chemical ionization) mass spectrometric techniques coupled to liquid-phase separation for speciation analysis . J. Chromatogr. A 1000 : 841 – 889 .
  • Uden , P. , S. M. Bird , M. Kotrebai , P. Nolibos , J. F. Tyson , E. Block , and et al. . 1998 . Analytical selenoamino acid studies by chromatography with interfaced atomic mass spectrometry and atomic emission spectral detection . Fresenius J. Anal. Chem. 362 : 447 – 456 .
  • Zheng , J. , M. Ohata , N. Furyta , and et al.. 2000. Speciation of selenium compounds with ion-pair reversed-phase liquid chromatography using inductively coupled plasma mass spectrometry as element-specific detection. J. Chromatogr. A 874: 55–64.
  • Zheng , J. , Y. Shibata , and et al. . 2003 . Determination of selenoamino acids using two-dimensional ion-pair reversed phase chromatography with on-line detection by inductively coupled plasma mass spectrometry . Talanta 59 : 27 – 36 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.