Determination of glutathione in hemolysed erythrocyte by flow injection analysis with chemiluminescence detection

In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold...

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Published inJournal of pharmaceutical and biomedical analysis Vol. 48; no. 1; pp. 140 - 144
Main Authors Ensafi, A.A., Khayamian, T., Hasanpour, F.
Format Journal Article
LanguageEnglish
Published England Elsevier B.V 10.09.2008
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ISSN0731-7085
1873-264X
DOI10.1016/j.jpba.2008.04.028

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Abstract In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold variables on the sensitivity was studied. At the optimized conditions, the linear range for the determination of glutathione was 1.0 × 10 −8 to 1.0 × 10 −5 mol L −1 with the detection limit (3 σ) of 8 × 10 −9 mol L −1. The relative standard deviation for 10 repeated measurements of 1.0 × 10 −6 mol L −1 of glutathione was 4%. The results of the method were compared with the Ellman reference method and no significant difference was found. The influence of potential interference substances on the determination of glutathione was studied. The proposed method was applied successfully for the determination of glutathione in real samples such as erythrocyte hemolysed in normal subjects and diabetes.
AbstractList In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold variables on the sensitivity was studied. At the optimized conditions, the linear range for the determination of glutathione was 1.0x10(-8) to 1.0x10(-5) mol L(-1) with the detection limit (3sigma) of 8x10(-9) mol L(-1). The relative standard deviation for 10 repeated measurements of 1.0x10(-6) mol L(-1) of glutathione was 4%. The results of the method were compared with the Ellman reference method and no significant difference was found. The influence of potential interference substances on the determination of glutathione was studied. The proposed method was applied successfully for the determination of glutathione in real samples such as erythrocyte hemolysed in normal subjects and diabetes.In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold variables on the sensitivity was studied. At the optimized conditions, the linear range for the determination of glutathione was 1.0x10(-8) to 1.0x10(-5) mol L(-1) with the detection limit (3sigma) of 8x10(-9) mol L(-1). The relative standard deviation for 10 repeated measurements of 1.0x10(-6) mol L(-1) of glutathione was 4%. The results of the method were compared with the Ellman reference method and no significant difference was found. The influence of potential interference substances on the determination of glutathione was studied. The proposed method was applied successfully for the determination of glutathione in real samples such as erythrocyte hemolysed in normal subjects and diabetes.
In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold variables on the sensitivity was studied. At the optimized conditions, the linear range for the determination of glutathione was 1.0 × 10 −8 to 1.0 × 10 −5 mol L −1 with the detection limit (3 σ) of 8 × 10 −9 mol L −1. The relative standard deviation for 10 repeated measurements of 1.0 × 10 −6 mol L −1 of glutathione was 4%. The results of the method were compared with the Ellman reference method and no significant difference was found. The influence of potential interference substances on the determination of glutathione was studied. The proposed method was applied successfully for the determination of glutathione in real samples such as erythrocyte hemolysed in normal subjects and diabetes.
In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of glutathione on the chemiluminescence signal of the oxidation of luminol by sodium periodate in basic solution. The influence of chemical and manifold variables on the sensitivity was studied. At the optimized conditions, the linear range for the determination of glutathione was 1.0x10(-8) to 1.0x10(-5) mol L(-1) with the detection limit (3sigma) of 8x10(-9) mol L(-1). The relative standard deviation for 10 repeated measurements of 1.0x10(-6) mol L(-1) of glutathione was 4%. The results of the method were compared with the Ellman reference method and no significant difference was found. The influence of potential interference substances on the determination of glutathione was studied. The proposed method was applied successfully for the determination of glutathione in real samples such as erythrocyte hemolysed in normal subjects and diabetes.
Author Hasanpour, F.
Khayamian, T.
Ensafi, A.A.
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Keywords Sodium periodate
Chemiluminescence
Luminol
Glutathione
Language English
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Snippet In this work, a new sensitive method is introduced for analysis of glutathione at trace levels in blood samples. The method is based on the effect of...
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SubjectTerms Chemiluminescence
Erythrocytes - chemistry
Flow Injection Analysis - instrumentation
Flow Injection Analysis - methods
Glutathione
Glutathione - blood
Hemolysis
Humans
Luminescence
Luminescent Measurements - methods
Luminol
Luminol - chemistry
Periodic Acid - chemistry
Sensitivity and Specificity
Sodium periodate
Title Determination of glutathione in hemolysed erythrocyte by flow injection analysis with chemiluminescence detection
URI https://dx.doi.org/10.1016/j.jpba.2008.04.028
https://www.ncbi.nlm.nih.gov/pubmed/18550315
https://www.proquest.com/docview/69466959
Volume 48
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