Cargando…

Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration

N(G),N(G)‐dimethyl‐l‐arginine (asymmetric dimethylarginine, ADMA),N(G)‐monomethyl‐l‐arginine (l‐NMMA) and N(G),N (G’)‐dimethyl‐l‐arginine (symmetric dimethylarginine, SDMA) are released during hydrolysis of proteins containing methylated arginine residues. ADMA and l‐NMMA inhibit nitric oxide syntha...

Descripción completa

Detalles Bibliográficos
Autores principales: Alkaitis, Matthew S., Nardone, Glenn, Chertow, Jessica H., Ackerman, Hans C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755038/
https://www.ncbi.nlm.nih.gov/pubmed/26130049
http://dx.doi.org/10.1002/bmc.3548
_version_ 1782416132981915648
author Alkaitis, Matthew S.
Nardone, Glenn
Chertow, Jessica H.
Ackerman, Hans C.
author_facet Alkaitis, Matthew S.
Nardone, Glenn
Chertow, Jessica H.
Ackerman, Hans C.
author_sort Alkaitis, Matthew S.
collection PubMed
description N(G),N(G)‐dimethyl‐l‐arginine (asymmetric dimethylarginine, ADMA),N(G)‐monomethyl‐l‐arginine (l‐NMMA) and N(G),N (G’)‐dimethyl‐l‐arginine (symmetric dimethylarginine, SDMA) are released during hydrolysis of proteins containing methylated arginine residues. ADMA and l‐NMMA inhibit nitric oxide synthase by competing with l‐arginine substrate. All three methylarginine derivatives also inhibit arginine transport. To enable investigation of methylarginines in diseases involving impaired nitric oxide synthesis, we developed a high‐performance liquid chromatography (HPLC) assay to simultaneously quantify arginine, ADMA, l‐NMMA and SDMA. Our assay requires 12 μL of plasma and is ideal for applications where sample availability is limited. We extracted arginine and methylarginines with mixed‐mode cation‐exchange columns, using synthetic monoethyl‐l‐arginine as an internal standard. Metabolites were derivatized with ortho‐phthaldialdeyhde and 3‐mercaptopropionic acid, separated by reverse‐phase HPLC and quantified with fluorescence detection. Standard curve linearity was ≥0.9995 for all metabolites. Inter‐day coefficient of variation (CV) values were ≤5% for arginine, ADMA and SDMA in human plasma and for arginine and ADMA in mouse plasma. The CV value for l‐NMMA was higher in human (10.4%) and mouse (15.8%) plasma because concentrations were substantially lower than ADMA and SDMA. This assay provides unique advantages of small sample volume requirements, excellent separation of target metabolites from contaminants and validation for both human and mouse plasma samples. © 2015 The Authors Biomedical Chromatography published by John Wiley & Sons, Ltd.
format Online
Article
Text
id pubmed-4755038
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-47550382016-02-25 Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration Alkaitis, Matthew S. Nardone, Glenn Chertow, Jessica H. Ackerman, Hans C. Biomed Chromatogr Research Articles N(G),N(G)‐dimethyl‐l‐arginine (asymmetric dimethylarginine, ADMA),N(G)‐monomethyl‐l‐arginine (l‐NMMA) and N(G),N (G’)‐dimethyl‐l‐arginine (symmetric dimethylarginine, SDMA) are released during hydrolysis of proteins containing methylated arginine residues. ADMA and l‐NMMA inhibit nitric oxide synthase by competing with l‐arginine substrate. All three methylarginine derivatives also inhibit arginine transport. To enable investigation of methylarginines in diseases involving impaired nitric oxide synthesis, we developed a high‐performance liquid chromatography (HPLC) assay to simultaneously quantify arginine, ADMA, l‐NMMA and SDMA. Our assay requires 12 μL of plasma and is ideal for applications where sample availability is limited. We extracted arginine and methylarginines with mixed‐mode cation‐exchange columns, using synthetic monoethyl‐l‐arginine as an internal standard. Metabolites were derivatized with ortho‐phthaldialdeyhde and 3‐mercaptopropionic acid, separated by reverse‐phase HPLC and quantified with fluorescence detection. Standard curve linearity was ≥0.9995 for all metabolites. Inter‐day coefficient of variation (CV) values were ≤5% for arginine, ADMA and SDMA in human plasma and for arginine and ADMA in mouse plasma. The CV value for l‐NMMA was higher in human (10.4%) and mouse (15.8%) plasma because concentrations were substantially lower than ADMA and SDMA. This assay provides unique advantages of small sample volume requirements, excellent separation of target metabolites from contaminants and validation for both human and mouse plasma samples. © 2015 The Authors Biomedical Chromatography published by John Wiley & Sons, Ltd. John Wiley and Sons Inc. 2015-07-30 2016-03 /pmc/articles/PMC4755038/ /pubmed/26130049 http://dx.doi.org/10.1002/bmc.3548 Text en © 2015 The Authors Biomedical Chromatography published by John Wiley & Sons, Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Alkaitis, Matthew S.
Nardone, Glenn
Chertow, Jessica H.
Ackerman, Hans C.
Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title_full Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title_fullStr Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title_full_unstemmed Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title_short Resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using HPLC with internal calibration
title_sort resolution and quantification of arginine, monomethylarginine, asymmetric dimethylarginine, and symmetric dimethylarginine in plasma using hplc with internal calibration
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755038/
https://www.ncbi.nlm.nih.gov/pubmed/26130049
http://dx.doi.org/10.1002/bmc.3548
work_keys_str_mv AT alkaitismatthews resolutionandquantificationofargininemonomethylarginineasymmetricdimethylarginineandsymmetricdimethylarginineinplasmausinghplcwithinternalcalibration
AT nardoneglenn resolutionandquantificationofargininemonomethylarginineasymmetricdimethylarginineandsymmetricdimethylarginineinplasmausinghplcwithinternalcalibration
AT chertowjessicah resolutionandquantificationofargininemonomethylarginineasymmetricdimethylarginineandsymmetricdimethylarginineinplasmausinghplcwithinternalcalibration
AT ackermanhansc resolutionandquantificationofargininemonomethylarginineasymmetricdimethylarginineandsymmetricdimethylarginineinplasmausinghplcwithinternalcalibration