Cargando…

Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid

BACKGROUND: Animal studies have revealed seasonal patterns in cerebrospinal fluid (CSF) monoamine (MA) turnover. In humans, no study had systematically assessed seasonal patterns in CSF MA turnover in a large set of healthy adults. METHODOLOGY/PRINCIPAL FINDINGS: Standardized amounts of CSF were pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Luykx, Jurjen J., Bakker, Steven C., Lentjes, Eef, Boks, Marco P. M., van Geloven, Nan, Eijkemans, Marinus J. C., Janson, Esther, Strengman, Eric, de Lepper, Anne M., Westenberg, Herman, Klopper, Kai E., Hoorn, Hendrik J., Gelissen, Harry P. M. M., Jordan, Julian, Tolenaar, Noortje M., van Dongen, Eric P. A., Michel, Bregt, Abramovic, Lucija, Horvath, Steve, Kappen, Teus, Bruins, Peter, Keijzers, Peter, Borgdorff, Paul, Ophoff, Roel A., Kahn, René S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3270010/
https://www.ncbi.nlm.nih.gov/pubmed/22312427
http://dx.doi.org/10.1371/journal.pone.0030497
_version_ 1782222533360091136
author Luykx, Jurjen J.
Bakker, Steven C.
Lentjes, Eef
Boks, Marco P. M.
van Geloven, Nan
Eijkemans, Marinus J. C.
Janson, Esther
Strengman, Eric
de Lepper, Anne M.
Westenberg, Herman
Klopper, Kai E.
Hoorn, Hendrik J.
Gelissen, Harry P. M. M.
Jordan, Julian
Tolenaar, Noortje M.
van Dongen, Eric P. A.
Michel, Bregt
Abramovic, Lucija
Horvath, Steve
Kappen, Teus
Bruins, Peter
Keijzers, Peter
Borgdorff, Paul
Ophoff, Roel A.
Kahn, René S.
author_facet Luykx, Jurjen J.
Bakker, Steven C.
Lentjes, Eef
Boks, Marco P. M.
van Geloven, Nan
Eijkemans, Marinus J. C.
Janson, Esther
Strengman, Eric
de Lepper, Anne M.
Westenberg, Herman
Klopper, Kai E.
Hoorn, Hendrik J.
Gelissen, Harry P. M. M.
Jordan, Julian
Tolenaar, Noortje M.
van Dongen, Eric P. A.
Michel, Bregt
Abramovic, Lucija
Horvath, Steve
Kappen, Teus
Bruins, Peter
Keijzers, Peter
Borgdorff, Paul
Ophoff, Roel A.
Kahn, René S.
author_sort Luykx, Jurjen J.
collection PubMed
description BACKGROUND: Animal studies have revealed seasonal patterns in cerebrospinal fluid (CSF) monoamine (MA) turnover. In humans, no study had systematically assessed seasonal patterns in CSF MA turnover in a large set of healthy adults. METHODOLOGY/PRINCIPAL FINDINGS: Standardized amounts of CSF were prospectively collected from 223 healthy individuals undergoing spinal anesthesia for minor surgical procedures. The metabolites of serotonin (5-hydroxyindoleacetic acid, 5-HIAA), dopamine (homovanillic acid, HVA) and norepinephrine (3-methoxy-4-hydroxyphenylglycol, MPHG) were measured using high performance liquid chromatography (HPLC). Concentration measurements by sampling and birth dates were modeled using a non-linear quantile cosine function and locally weighted scatterplot smoothing (LOESS, span = 0.75). The cosine model showed a unimodal season of sampling 5-HIAA zenith in April and a nadir in October (p-value of the amplitude of the cosine = 0.00050), with predicted maximum (PC(max)) and minimum (PC(min)) concentrations of 173 and 108 nmol/L, respectively, implying a 60% increase from trough to peak. Season of birth showed a unimodal 5-HIAA zenith in May and a nadir in November (p = 0.00339; PC(max) = 172 and PC(min) = 126). The non-parametric LOESS showed a similar pattern to the cosine in both season of sampling and season of birth models, validating the cosine model. A final model including both sampling and birth months demonstrated that both sampling and birth seasons were independent predictors of 5-HIAA concentrations. CONCLUSION: In subjects without mental illness, 5-HT turnover shows circannual variation by season of sampling as well as season of birth, with peaks in spring and troughs in fall.
format Online
Article
Text
id pubmed-3270010
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32700102012-02-06 Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid Luykx, Jurjen J. Bakker, Steven C. Lentjes, Eef Boks, Marco P. M. van Geloven, Nan Eijkemans, Marinus J. C. Janson, Esther Strengman, Eric de Lepper, Anne M. Westenberg, Herman Klopper, Kai E. Hoorn, Hendrik J. Gelissen, Harry P. M. M. Jordan, Julian Tolenaar, Noortje M. van Dongen, Eric P. A. Michel, Bregt Abramovic, Lucija Horvath, Steve Kappen, Teus Bruins, Peter Keijzers, Peter Borgdorff, Paul Ophoff, Roel A. Kahn, René S. PLoS One Research Article BACKGROUND: Animal studies have revealed seasonal patterns in cerebrospinal fluid (CSF) monoamine (MA) turnover. In humans, no study had systematically assessed seasonal patterns in CSF MA turnover in a large set of healthy adults. METHODOLOGY/PRINCIPAL FINDINGS: Standardized amounts of CSF were prospectively collected from 223 healthy individuals undergoing spinal anesthesia for minor surgical procedures. The metabolites of serotonin (5-hydroxyindoleacetic acid, 5-HIAA), dopamine (homovanillic acid, HVA) and norepinephrine (3-methoxy-4-hydroxyphenylglycol, MPHG) were measured using high performance liquid chromatography (HPLC). Concentration measurements by sampling and birth dates were modeled using a non-linear quantile cosine function and locally weighted scatterplot smoothing (LOESS, span = 0.75). The cosine model showed a unimodal season of sampling 5-HIAA zenith in April and a nadir in October (p-value of the amplitude of the cosine = 0.00050), with predicted maximum (PC(max)) and minimum (PC(min)) concentrations of 173 and 108 nmol/L, respectively, implying a 60% increase from trough to peak. Season of birth showed a unimodal 5-HIAA zenith in May and a nadir in November (p = 0.00339; PC(max) = 172 and PC(min) = 126). The non-parametric LOESS showed a similar pattern to the cosine in both season of sampling and season of birth models, validating the cosine model. A final model including both sampling and birth months demonstrated that both sampling and birth seasons were independent predictors of 5-HIAA concentrations. CONCLUSION: In subjects without mental illness, 5-HT turnover shows circannual variation by season of sampling as well as season of birth, with peaks in spring and troughs in fall. Public Library of Science 2012-02-01 /pmc/articles/PMC3270010/ /pubmed/22312427 http://dx.doi.org/10.1371/journal.pone.0030497 Text en Luykx 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
Luykx, Jurjen J.
Bakker, Steven C.
Lentjes, Eef
Boks, Marco P. M.
van Geloven, Nan
Eijkemans, Marinus J. C.
Janson, Esther
Strengman, Eric
de Lepper, Anne M.
Westenberg, Herman
Klopper, Kai E.
Hoorn, Hendrik J.
Gelissen, Harry P. M. M.
Jordan, Julian
Tolenaar, Noortje M.
van Dongen, Eric P. A.
Michel, Bregt
Abramovic, Lucija
Horvath, Steve
Kappen, Teus
Bruins, Peter
Keijzers, Peter
Borgdorff, Paul
Ophoff, Roel A.
Kahn, René S.
Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title_full Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title_fullStr Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title_full_unstemmed Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title_short Season of Sampling and Season of Birth Influence Serotonin Metabolite Levels in Human Cerebrospinal Fluid
title_sort season of sampling and season of birth influence serotonin metabolite levels in human cerebrospinal fluid
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3270010/
https://www.ncbi.nlm.nih.gov/pubmed/22312427
http://dx.doi.org/10.1371/journal.pone.0030497
work_keys_str_mv AT luykxjurjenj seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT bakkerstevenc seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT lentjeseef seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT boksmarcopm seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT vangelovennan seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT eijkemansmarinusjc seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT jansonesther seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT strengmaneric seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT delepperannem seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT westenbergherman seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT klopperkaie seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT hoornhendrikj seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT gelissenharrypmm seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT jordanjulian seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT tolenaarnoortjem seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT vandongenericpa seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT michelbregt seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT abramoviclucija seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT horvathsteve seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT kappenteus seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT bruinspeter seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT keijzerspeter seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT borgdorffpaul seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT ophoffroela seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid
AT kahnrenes seasonofsamplingandseasonofbirthinfluenceserotoninmetabolitelevelsinhumancerebrospinalfluid