Maternal-fetal unit interactions and eutherian neocortical development and evolution

The conserved brain design that primates inherited from early mammals differs from the variable adult brain size and species-specific brain dominances observed across mammals. This variability relies on the emergence of specialized cerebral cortical regions and sub-compartments, triggering an increa...

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Published in:Frontiers in Neuroanatomy
Main Authors: Juan F Montiel, Heidy eKaune, Manuel eMaliqueo
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-07-01
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnana.2013.00022/full
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author Juan F Montiel
Heidy eKaune
Heidy eKaune
Manuel eMaliqueo
author_facet Juan F Montiel
Heidy eKaune
Heidy eKaune
Manuel eMaliqueo
author_sort Juan F Montiel
collection DOAJ
container_title Frontiers in Neuroanatomy
description The conserved brain design that primates inherited from early mammals differs from the variable adult brain size and species-specific brain dominances observed across mammals. This variability relies on the emergence of specialized cerebral cortical regions and sub-compartments, triggering an increase in brain size, areal interconnectivity and histological complexity that ultimately lies on the activation of developmental programs. Structural placental features are not well correlated with brain enlargement; however, several endocrine pathways could be tuned with the activation of neuronal progenitors in the proliferative neocortical compartments. In this article, we reviewed some mechanisms of eutherians maternal-fetal unit interactions associated with brain development and evolution. We propose a hypothesis of brain evolution where proliferative compartments in primates become activated by 'non-classical' endocrine placental signals participating in different steps of corticogenesis. Changes in the inner placental structure, along with placenta endocrine stimuli over the cortical proliferative activity would allow mammalian brain enlargement with a concomitant shorter gestation span, as an evolutionary strategy to escape from parent-offspring conflict.
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spelling doaj-art-e6dcda35783c4db2bb44c988623fcd902025-08-19T19:44:10ZengFrontiers Media S.A.Frontiers in Neuroanatomy1662-51292013-07-01710.3389/fnana.2013.0002252035Maternal-fetal unit interactions and eutherian neocortical development and evolutionJuan F Montiel0Heidy eKaune1Heidy eKaune2Manuel eMaliqueo3Facultad de Medicina, Universidad Diego PortalesFacultad de Medicina, Universidad Diego PortalesUniversity of OxfordFacultad de Medicina, Universidad de ChileThe conserved brain design that primates inherited from early mammals differs from the variable adult brain size and species-specific brain dominances observed across mammals. This variability relies on the emergence of specialized cerebral cortical regions and sub-compartments, triggering an increase in brain size, areal interconnectivity and histological complexity that ultimately lies on the activation of developmental programs. Structural placental features are not well correlated with brain enlargement; however, several endocrine pathways could be tuned with the activation of neuronal progenitors in the proliferative neocortical compartments. In this article, we reviewed some mechanisms of eutherians maternal-fetal unit interactions associated with brain development and evolution. We propose a hypothesis of brain evolution where proliferative compartments in primates become activated by 'non-classical' endocrine placental signals participating in different steps of corticogenesis. Changes in the inner placental structure, along with placenta endocrine stimuli over the cortical proliferative activity would allow mammalian brain enlargement with a concomitant shorter gestation span, as an evolutionary strategy to escape from parent-offspring conflict.http://journal.frontiersin.org/Journal/10.3389/fnana.2013.00022/fullCerebral CortexPlacentaSerotoninTranscriptomeevolutionCerebral cortical development
spellingShingle Juan F Montiel
Heidy eKaune
Heidy eKaune
Manuel eMaliqueo
Maternal-fetal unit interactions and eutherian neocortical development and evolution
Cerebral Cortex
Placenta
Serotonin
Transcriptome
evolution
Cerebral cortical development
title Maternal-fetal unit interactions and eutherian neocortical development and evolution
title_full Maternal-fetal unit interactions and eutherian neocortical development and evolution
title_fullStr Maternal-fetal unit interactions and eutherian neocortical development and evolution
title_full_unstemmed Maternal-fetal unit interactions and eutherian neocortical development and evolution
title_short Maternal-fetal unit interactions and eutherian neocortical development and evolution
title_sort maternal fetal unit interactions and eutherian neocortical development and evolution
topic Cerebral Cortex
Placenta
Serotonin
Transcriptome
evolution
Cerebral cortical development
url http://journal.frontiersin.org/Journal/10.3389/fnana.2013.00022/full
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