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Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates

An UPLC-MS/MS method was developed for the determination of serotonin (5-HT), dopamine (DA), their phase I metabolites 5-HIAA, DOPAC and HVA, and their sulfate and glucuronide conjugates in human brain microdialysis samples obtained from two patients with acute brain injuries, ventricular cerebrospi...

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Autores principales: Suominen, Tina, Uutela, Päivi, Ketola, Raimo A., Bergquist, Jonas, Hillered, Lars, Finel, Moshe, Zhang, Hongbo, Laakso, Aki, Kostiainen, Risto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3694921/
https://www.ncbi.nlm.nih.gov/pubmed/23826355
http://dx.doi.org/10.1371/journal.pone.0068007
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author Suominen, Tina
Uutela, Päivi
Ketola, Raimo A.
Bergquist, Jonas
Hillered, Lars
Finel, Moshe
Zhang, Hongbo
Laakso, Aki
Kostiainen, Risto
author_facet Suominen, Tina
Uutela, Päivi
Ketola, Raimo A.
Bergquist, Jonas
Hillered, Lars
Finel, Moshe
Zhang, Hongbo
Laakso, Aki
Kostiainen, Risto
author_sort Suominen, Tina
collection PubMed
description An UPLC-MS/MS method was developed for the determination of serotonin (5-HT), dopamine (DA), their phase I metabolites 5-HIAA, DOPAC and HVA, and their sulfate and glucuronide conjugates in human brain microdialysis samples obtained from two patients with acute brain injuries, ventricular cerebrospinal fluid (CSF) samples obtained from four patients with obstructive hydrocephalus, and a lumbar CSF sample pooled mainly from patients undergoing spinal anesthesia in preparation for orthopedic surgery. The method was validated by determining the limits of detection and quantification, linearity, repeatability and specificity. The direct method enabled the analysis of the intact phase II metabolites of 5-HT and DA, without hydrolysis of the conjugates. The method also enabled the analysis of the regioisomers of the conjugates, and several intact glucuronide and sulfate conjugates were identified and quantified for the first time in the human brain microdialysis and CSF samples. We were able to show the presence of 5-HIAA sulfate, and that dopamine-3-O-sulfate predominates over dopamine-4-O-sulfate in the human brain. The quantitative results suggest that sulfonation is a more important phase II metabolism pathway than glucuronidation in the human brain.
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spelling pubmed-36949212013-07-03 Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates Suominen, Tina Uutela, Päivi Ketola, Raimo A. Bergquist, Jonas Hillered, Lars Finel, Moshe Zhang, Hongbo Laakso, Aki Kostiainen, Risto PLoS One Research Article An UPLC-MS/MS method was developed for the determination of serotonin (5-HT), dopamine (DA), their phase I metabolites 5-HIAA, DOPAC and HVA, and their sulfate and glucuronide conjugates in human brain microdialysis samples obtained from two patients with acute brain injuries, ventricular cerebrospinal fluid (CSF) samples obtained from four patients with obstructive hydrocephalus, and a lumbar CSF sample pooled mainly from patients undergoing spinal anesthesia in preparation for orthopedic surgery. The method was validated by determining the limits of detection and quantification, linearity, repeatability and specificity. The direct method enabled the analysis of the intact phase II metabolites of 5-HT and DA, without hydrolysis of the conjugates. The method also enabled the analysis of the regioisomers of the conjugates, and several intact glucuronide and sulfate conjugates were identified and quantified for the first time in the human brain microdialysis and CSF samples. We were able to show the presence of 5-HIAA sulfate, and that dopamine-3-O-sulfate predominates over dopamine-4-O-sulfate in the human brain. The quantitative results suggest that sulfonation is a more important phase II metabolism pathway than glucuronidation in the human brain. Public Library of Science 2013-06-27 /pmc/articles/PMC3694921/ /pubmed/23826355 http://dx.doi.org/10.1371/journal.pone.0068007 Text en © 2013 Suominen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Suominen, Tina
Uutela, Päivi
Ketola, Raimo A.
Bergquist, Jonas
Hillered, Lars
Finel, Moshe
Zhang, Hongbo
Laakso, Aki
Kostiainen, Risto
Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title_full Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title_fullStr Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title_full_unstemmed Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title_short Determination of Serotonin and Dopamine Metabolites in Human Brain Microdialysis and Cerebrospinal Fluid Samples by UPLC-MS/MS: Discovery of Intact Glucuronide and Sulfate Conjugates
title_sort determination of serotonin and dopamine metabolites in human brain microdialysis and cerebrospinal fluid samples by uplc-ms/ms: discovery of intact glucuronide and sulfate conjugates
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3694921/
https://www.ncbi.nlm.nih.gov/pubmed/23826355
http://dx.doi.org/10.1371/journal.pone.0068007
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