Determination of chromium in urine samples by complexation–supercritical fluid extraction and liquid or gas chromatography

A method was developed for the determination of chromium as the Cr(acac) 3 complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 °C, with 2.0 ml of methanol, 30 min of static...

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Published inJournal of chromatography. B, Analytical technologies in the biomedical and life sciences Vol. 785; no. 2; pp. 303 - 309
Main Authors Arancibia, Veronica, Valderrama, Mauricio, Silva, Karina, Tapia, Tania
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 05.03.2003
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ISSN1570-0232
1873-376X
1873-376X
DOI10.1016/S1570-0232(02)00924-8

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Abstract A method was developed for the determination of chromium as the Cr(acac) 3 complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 °C, with 2.0 ml of methanol, 30 min of static extraction and 5 min of dynamic extraction. The chromium was quantified by GC–FID detection. The calibration graph of Cr(acac) 3 solutions was linear between 0.50 and 43.0 μg ml −1 of chromium (DL 0.18 μg ml −1, R=0.9994). The same extracts were quantified by HPLC-340 nm detection. The calibration curve of the Cr(acac) 3 solutions was linear over a range of 0.013 to 60.0 μg ml −1 (DL 0.02 μg ml −1, R=0.9999). This method was applied to urine samples from 60 diabetic patients and 21 healthy volunteers. Chromium concentration ranges were 2.5–29.5 μg l −1 for the diabetics and 5.9–12.3 μg l −1 for the normal subjects.
AbstractList A method was developed for the determination of chromium as the Cr(acac)(3) complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 degrees C, with 2.0 ml of methanol, 30 min of static extraction and 5 min of dynamic extraction. The chromium was quantified by GC-FID detection. The calibration graph of Cr(acac)(3) solutions was linear between 0.50 and 43.0 microg ml(-1) of chromium (DL 0.18 microg ml(-1), R=0.9994). The same extracts were quantified by HPLC-340 nm detection. The calibration curve of the Cr(acac)(3) solutions was linear over a range of 0.013 to 60.0 microg ml(-1) (DL 0.02 microg ml(-1), R=0.9999). This method was applied to urine samples from 60 diabetic patients and 21 healthy volunteers. Chromium concentration ranges were 2.5-29.5 microg l(-1) for the diabetics and 5.9-12.3 microg l(-1) for the normal subjects.A method was developed for the determination of chromium as the Cr(acac)(3) complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 degrees C, with 2.0 ml of methanol, 30 min of static extraction and 5 min of dynamic extraction. The chromium was quantified by GC-FID detection. The calibration graph of Cr(acac)(3) solutions was linear between 0.50 and 43.0 microg ml(-1) of chromium (DL 0.18 microg ml(-1), R=0.9994). The same extracts were quantified by HPLC-340 nm detection. The calibration curve of the Cr(acac)(3) solutions was linear over a range of 0.013 to 60.0 microg ml(-1) (DL 0.02 microg ml(-1), R=0.9999). This method was applied to urine samples from 60 diabetic patients and 21 healthy volunteers. Chromium concentration ranges were 2.5-29.5 microg l(-1) for the diabetics and 5.9-12.3 microg l(-1) for the normal subjects.
A method was developed for the determination of chromium as the Cr(acac)(3) complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 degrees C, with 2.0 ml of methanol, 30 min of static extraction and 5 min of dynamic extraction. The chromium was quantified by GC-FID detection. The calibration graph of Cr(acac)(3) solutions was linear between 0.50 and 43.0 microg ml(-1) of chromium (DL 0.18 microg ml(-1), R=0.9994). The same extracts were quantified by HPLC-340 nm detection. The calibration curve of the Cr(acac)(3) solutions was linear over a range of 0.013 to 60.0 microg ml(-1) (DL 0.02 microg ml(-1), R=0.9999). This method was applied to urine samples from 60 diabetic patients and 21 healthy volunteers. Chromium concentration ranges were 2.5-29.5 microg l(-1) for the diabetics and 5.9-12.3 microg l(-1) for the normal subjects.
A method was developed for the determination of chromium as the Cr(acac) 3 complex in urine using SFE and chromatography. Quantitative extractions were achieved when the experiments were carried out under 3000 p.s.i. of pressure, at a temperature of 120 °C, with 2.0 ml of methanol, 30 min of static extraction and 5 min of dynamic extraction. The chromium was quantified by GC–FID detection. The calibration graph of Cr(acac) 3 solutions was linear between 0.50 and 43.0 μg ml −1 of chromium (DL 0.18 μg ml −1, R=0.9994). The same extracts were quantified by HPLC-340 nm detection. The calibration curve of the Cr(acac) 3 solutions was linear over a range of 0.013 to 60.0 μg ml −1 (DL 0.02 μg ml −1, R=0.9999). This method was applied to urine samples from 60 diabetic patients and 21 healthy volunteers. Chromium concentration ranges were 2.5–29.5 μg l −1 for the diabetics and 5.9–12.3 μg l −1 for the normal subjects.
Author Silva, Karina
Tapia, Tania
Valderrama, Mauricio
Arancibia, Veronica
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  surname: Tapia
  fullname: Tapia, Tania
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Issue 2
Keywords Chromium
Complexation
Supercritical fluid extraction
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Snippet A method was developed for the determination of chromium as the Cr(acac) 3 complex in urine using SFE and chromatography. Quantitative extractions were...
A method was developed for the determination of chromium as the Cr(acac)(3) complex in urine using SFE and chromatography. Quantitative extractions were...
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StartPage 303
SubjectTerms Adult
Aged
Aged, 80 and over
Chromatography, Gas
Chromatography, High Pressure Liquid
Chromium
Chromium - urine
Complexation
Diabetes Mellitus - urine
Female
Humans
Indicators and Reagents
Male
Mass Spectrometry
Middle Aged
Pressure
Reference Standards
Reproducibility of Results
Solutions
Solvents
Spectrophotometry, Ultraviolet
Supercritical fluid extraction
Temperature
Title Determination of chromium in urine samples by complexation–supercritical fluid extraction and liquid or gas chromatography
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