Novel sensor based on copper-chelating affinity matrix for the specific uridine detection

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • S. Timur
  • A. Telefoncu
  • F. Irtel
  • R. Ulber
  • T. Scheper
  • R. Faurie

Organisationseinheiten

Externe Organisationen

  • Ege University
  • AMINO GmbH
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)191-196
Seitenumfang6
FachzeitschriftAnalytica chimica acta
Jahrgang445
Ausgabenummer2
PublikationsstatusVeröffentlicht - 16 Okt. 2001

Abstract

A method for the detection of uridine by flow injection analysis (FIA) was developed using metal-chelating affinity matrix. The quantification of uridine was performed on the basis of selective interaction between this nucleoside and copper ions. Besides optimisation of working conditions, effect of interferences substances and application of the system to the molasses sample were also investigated. The sensor was found to be sensitive, inexpensive, rapid and can easily be operated. A linear relationship between sensor response and concentration of uridine was obtained in the range of 4-10 g/l. The relative standard deviation (R.S.D.) and standard error (S.E.) were found to be 5.82 and 1.3, respectively, for 20 analyses at the 6 g/l level.

ASJC Scopus Sachgebiete

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Novel sensor based on copper-chelating affinity matrix for the specific uridine detection. / Timur, S.; Telefoncu, A.; Irtel, F. et al.
in: Analytica chimica acta, Jahrgang 445, Nr. 2, 16.10.2001, S. 191-196.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Timur S, Telefoncu A, Irtel F, Ulber R, Scheper T, Faurie R. Novel sensor based on copper-chelating affinity matrix for the specific uridine detection. Analytica chimica acta. 2001 Okt 16;445(2):191-196. doi: 10.1016/S0003-2670(01)01244-2
Timur, S. ; Telefoncu, A. ; Irtel, F. et al. / Novel sensor based on copper-chelating affinity matrix for the specific uridine detection. in: Analytica chimica acta. 2001 ; Jahrgang 445, Nr. 2. S. 191-196.
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abstract = "A method for the detection of uridine by flow injection analysis (FIA) was developed using metal-chelating affinity matrix. The quantification of uridine was performed on the basis of selective interaction between this nucleoside and copper ions. Besides optimisation of working conditions, effect of interferences substances and application of the system to the molasses sample were also investigated. The sensor was found to be sensitive, inexpensive, rapid and can easily be operated. A linear relationship between sensor response and concentration of uridine was obtained in the range of 4-10 g/l. The relative standard deviation (R.S.D.) and standard error (S.E.) were found to be 5.82 and 1.3, respectively, for 20 analyses at the 6 g/l level.",
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AU - Timur, S.

AU - Telefoncu, A.

AU - Irtel, F.

AU - Ulber, R.

AU - Scheper, T.

AU - Faurie, R.

N1 - Funding information: Thanks to Turkish Scientific Research Consultation (TUBITAK) for providing a scholarship. A part of this work was supported by the Fonds der Chemischen Industrie, Germany.

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N2 - A method for the detection of uridine by flow injection analysis (FIA) was developed using metal-chelating affinity matrix. The quantification of uridine was performed on the basis of selective interaction between this nucleoside and copper ions. Besides optimisation of working conditions, effect of interferences substances and application of the system to the molasses sample were also investigated. The sensor was found to be sensitive, inexpensive, rapid and can easily be operated. A linear relationship between sensor response and concentration of uridine was obtained in the range of 4-10 g/l. The relative standard deviation (R.S.D.) and standard error (S.E.) were found to be 5.82 and 1.3, respectively, for 20 analyses at the 6 g/l level.

AB - A method for the detection of uridine by flow injection analysis (FIA) was developed using metal-chelating affinity matrix. The quantification of uridine was performed on the basis of selective interaction between this nucleoside and copper ions. Besides optimisation of working conditions, effect of interferences substances and application of the system to the molasses sample were also investigated. The sensor was found to be sensitive, inexpensive, rapid and can easily be operated. A linear relationship between sensor response and concentration of uridine was obtained in the range of 4-10 g/l. The relative standard deviation (R.S.D.) and standard error (S.E.) were found to be 5.82 and 1.3, respectively, for 20 analyses at the 6 g/l level.

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