Cargando…

MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction

The importance of the thyroid hormone (TH) transporter, monocarboxylate transporter 8 (MCT8), to human neurodevelopment is highlighted by findings of severe global neurological impairment in subjects with MCT8 (SLC16A2) mutations. Intrauterine growth restriction (IUGR), usually due to uteroplacental...

Descripción completa

Detalles Bibliográficos
Autores principales: Chan, Shiao Y, Hancox, Laura A, Martín-Santos, Azucena, Loubière, Laurence S, Walter, Merlin N M, González, Ana-Maria, Cox, Phillip M, Logan, Ann, McCabe, Christopher J, Franklyn, Jayne A, Kilby, Mark D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3921694/
https://www.ncbi.nlm.nih.gov/pubmed/24204008
http://dx.doi.org/10.1530/JOE-13-0400
_version_ 1782303330976923648
author Chan, Shiao Y
Hancox, Laura A
Martín-Santos, Azucena
Loubière, Laurence S
Walter, Merlin N M
González, Ana-Maria
Cox, Phillip M
Logan, Ann
McCabe, Christopher J
Franklyn, Jayne A
Kilby, Mark D
author_facet Chan, Shiao Y
Hancox, Laura A
Martín-Santos, Azucena
Loubière, Laurence S
Walter, Merlin N M
González, Ana-Maria
Cox, Phillip M
Logan, Ann
McCabe, Christopher J
Franklyn, Jayne A
Kilby, Mark D
author_sort Chan, Shiao Y
collection PubMed
description The importance of the thyroid hormone (TH) transporter, monocarboxylate transporter 8 (MCT8), to human neurodevelopment is highlighted by findings of severe global neurological impairment in subjects with MCT8 (SLC16A2) mutations. Intrauterine growth restriction (IUGR), usually due to uteroplacental failure, is associated with milder neurodevelopmental deficits, which have been partly attributed to dysregulated TH action in utero secondary to reduced circulating fetal TH concentrations and decreased cerebral thyroid hormone receptor expression. We postulate that altered MCT8 expression is implicated in this pathophysiology; therefore, in this study, we sought to quantify changes in cortical MCT8 expression with IUGR. First, MCT8 immunohistochemistry was performed on occipital and parietal cerebral cortex sections obtained from appropriately grown for gestational age (AGA) human fetuses between 19 weeks of gestation and term. Secondly, MCT8 immunostaining in the occipital cortex of stillborn IUGR human fetuses at 24–28 weeks of gestation was objectively compared with that in the occipital cortex of gestationally matched AGA fetuses. Fetuses demonstrated widespread MCT8 expression in neurons within the cortical plate and subplate, in the ventricular and subventricular zones, in the epithelium of the choroid plexus and ependyma, and in microvessel wall. When complicated by IUGR, fetuses showed a significant fivefold reduction in the percentage area of cortical plate immunostained for MCT8 compared with AGA fetuses (P<0.05), but there was no significant difference in the proportion of subplate microvessels immunostained. Cortical MCT8 expression was negatively correlated with the severity of IUGR indicated by the brain:liver weight ratios (r(2)=0.28; P<0.05) at post-mortem. Our results support the hypothesis that a reduction in MCT8 expression in the IUGR fetal brain could further compromise TH-dependent brain development.
format Online
Article
Text
id pubmed-3921694
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Bioscientifica Ltd
record_format MEDLINE/PubMed
spelling pubmed-39216942014-02-12 MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction Chan, Shiao Y Hancox, Laura A Martín-Santos, Azucena Loubière, Laurence S Walter, Merlin N M González, Ana-Maria Cox, Phillip M Logan, Ann McCabe, Christopher J Franklyn, Jayne A Kilby, Mark D J Endocrinol Research The importance of the thyroid hormone (TH) transporter, monocarboxylate transporter 8 (MCT8), to human neurodevelopment is highlighted by findings of severe global neurological impairment in subjects with MCT8 (SLC16A2) mutations. Intrauterine growth restriction (IUGR), usually due to uteroplacental failure, is associated with milder neurodevelopmental deficits, which have been partly attributed to dysregulated TH action in utero secondary to reduced circulating fetal TH concentrations and decreased cerebral thyroid hormone receptor expression. We postulate that altered MCT8 expression is implicated in this pathophysiology; therefore, in this study, we sought to quantify changes in cortical MCT8 expression with IUGR. First, MCT8 immunohistochemistry was performed on occipital and parietal cerebral cortex sections obtained from appropriately grown for gestational age (AGA) human fetuses between 19 weeks of gestation and term. Secondly, MCT8 immunostaining in the occipital cortex of stillborn IUGR human fetuses at 24–28 weeks of gestation was objectively compared with that in the occipital cortex of gestationally matched AGA fetuses. Fetuses demonstrated widespread MCT8 expression in neurons within the cortical plate and subplate, in the ventricular and subventricular zones, in the epithelium of the choroid plexus and ependyma, and in microvessel wall. When complicated by IUGR, fetuses showed a significant fivefold reduction in the percentage area of cortical plate immunostained for MCT8 compared with AGA fetuses (P<0.05), but there was no significant difference in the proportion of subplate microvessels immunostained. Cortical MCT8 expression was negatively correlated with the severity of IUGR indicated by the brain:liver weight ratios (r(2)=0.28; P<0.05) at post-mortem. Our results support the hypothesis that a reduction in MCT8 expression in the IUGR fetal brain could further compromise TH-dependent brain development. Bioscientifica Ltd 2014-01 /pmc/articles/PMC3921694/ /pubmed/24204008 http://dx.doi.org/10.1530/JOE-13-0400 Text en © 2014 The authors http://creativecommons.org/licenses/by/3.0/deed.en_GB This work is licensed under a Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/deed.en_GB)
spellingShingle Research
Chan, Shiao Y
Hancox, Laura A
Martín-Santos, Azucena
Loubière, Laurence S
Walter, Merlin N M
González, Ana-Maria
Cox, Phillip M
Logan, Ann
McCabe, Christopher J
Franklyn, Jayne A
Kilby, Mark D
MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title_full MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title_fullStr MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title_full_unstemmed MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title_short MCT8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
title_sort mct8 expression in human fetal cerebral cortex is reduced in severe intrauterine growth restriction
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3921694/
https://www.ncbi.nlm.nih.gov/pubmed/24204008
http://dx.doi.org/10.1530/JOE-13-0400
work_keys_str_mv AT chanshiaoy mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT hancoxlauraa mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT martinsantosazucena mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT loubierelaurences mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT waltermerlinnm mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT gonzalezanamaria mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT coxphillipm mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT loganann mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT mccabechristopherj mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT franklynjaynea mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction
AT kilbymarkd mct8expressioninhumanfetalcerebralcortexisreducedinsevereintrauterinegrowthrestriction