Related Experiment Video
Updated: Feb 23, 2026

Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015
Child neurodevelopmental outcomes following preterm and term birth: What can the placenta tell us?
Nicolette A Hodyl1, Natalie Aboustate2, Tina Bianco-Miotto3
1Robinson Research Institute, University of Adelaide, Adelaide, SA, Australia; Adelaide Medical School, University of Adelaide, SA, Australia; Neonatal Medicine, Women's and Children's Hospital, North Adelaide, SA, Australia.
Insights
The placenta plays a crucial role in fetal brain development. Studying placental factors and biomarkers can help predict and improve neurodevelopmental outcomes in preterm infants.
Area of Science:
- Perinatal Medicine
- Neuroscience
- Developmental Biology
Background:
- Preterm birth is linked to neurodevelopmental impairments.
- Placental dysfunction is associated with conditions like fetal growth restriction and inflammation, which are risk factors for poor neurodevelopment.
- The placenta regulates fetal brain development by controlling substance transfer and producing neuroactive compounds.
Purpose of the Study:
- To review placental factors influencing neurodevelopmental outcomes in children.
- To identify placental biomarkers for predicting neurodevelopmental impairments.
- To discuss the placenta's role in fetal brain development and its potential as a predictive tool.
Main Methods:
- Review of studies on placental morphology, histopathology, and inflammatory responses.
- Analysis of the placenta's role as a barrier and source of neurotrophic and neuroactive substances.
- Examination of genetic and epigenetic placental biomarkers (e.g., SNPs, microRNAs, DNA methylation).
Main Results:
- Placental structural and inflammatory changes correlate with neurodevelopmental outcomes.
- The placenta's barrier function and production of key molecules are vital for fetal brain development.
- Genetic and epigenetic variations in placental tissue show potential as predictive biomarkers.
Conclusions:
- Placental factors are critical determinants of infant neurodevelopment.
- Novel placental biomarkers, including genetic and epigenetic markers, offer promise for early prediction of neurodevelopmental outcomes.
- Integrating placental function data with genetic/epigenetic variations can improve prediction and resource allocation for infant health.
Abstract:
A significant proportion of children born preterm will experience some level of neurodevelopmental impairment. Changes in placental function have been observed with many antenatal conditions that are risk factors for preterm birth and/or poor neurodevelopment including fetal growth restriction and in-utero inflammation. This review will highlight placental factors that have been studied to understand the underlying mechanisms and identify biomarkers that lead to poor child neurodevelopmental outcomes. These include changes in gross morphological and histopathological structure and the placental inflammatory response to prenatal infection. Further, we will describe the placenta's role as both a barrier to maternally-derived bioactive substances critical for normal fetal brain development, such as cortisol, and a source of neuroactive steroids and neurotrophins known to have critical functions in neuronal proliferation, axonal growth, myelination and the regulation of apoptosis. Finally, emerging data supporting the potential utility of novel placental biomarkers in the early prediction of poor neurodevelopmental outcome in infants born both preterm and term will be discussed. These include the assessment of genetic variants (e.g. single nucleotide polymorphisms in placental tissue) and epigenetic biomarkers (e.g. placental microRNAs and placental DNA methylation). With the placenta the key tissue regulating the fetal environment, integration of observed changes in placental function with genetic and epigenetic variations may advance our ability to predict future infant health. Ultimately, this may facilitate targeted allocation of health resources with the aim of improving lifelong neurodevelopmental capability.
Related Concept Videos
Teratogenicity
Neurulation
The Nativist Approach

