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Published on: April 28, 2016
The early care environment and DNA methylome variation in childhood
Elika Garg1, Li Chen2, Thao T T Nguyen1
1McGill University.
Insights
Infant attachment quality can buffer prenatal adversity effects on child development. DNA methylation patterns in children are linked to attachment style, influenced by both environment and genetics.
Area of Science:
- Child neurodevelopment
- Epigenetics
- Developmental psychology
Background:
- Prenatal adversity impacts child development and mental health.
- Early care environment quality can mitigate negative effects of prenatal adversity.
- Epigenetic modifications are markers of early care quality, but pediatric data is scarce.
Purpose of the Study:
- To investigate the association between infant attachment and child neurodevelopmental outcomes.
- To explore the link between infant attachment and genome-wide DNA methylation in children.
- To examine the interplay of infant attachment, prenatal adversity, and genetics on child outcomes and DNA methylation.
Main Methods:
- Longitudinal cohort study (Maternal Adversity Vulnerability and Neurodevelopment - MAVAN).
- Analysis of buccal epithelial DNA methylation and genetic variation in 226 children (mean age 6.99 years).
- Linear models assessing associations between infant attachment, child outcomes (Bayley Scales), and DNA methylation, considering genetic data.
Main Results:
- Infant attachment style correlated with cognitive development (Mental Development Index) and behavior (Behavior Rating Scale) at 36 months.
- Attachment moderated prenatal adversity effects on behavior.
- Attachment associated with DNA methylation variation (11.9% of variance), particularly secure vs. disorganized styles and in females.
- DNA methylation at attachment-associated sites was influenced by both attachment and child genotype.
Conclusions:
- Infant attachment buffers negative impacts of early adversity on child behavior.
- Highlights the interaction between infant attachment and child genotype in shaping DNA methylation.
- Suggests a potential molecular signature of infant attachment, informing early intervention strategies.
Abstract:
Prenatal adversity shapes child neurodevelopment and risk for later mental health problems. The quality of the early care environment can buffer some of the negative effects of prenatal adversity on child development. Retrospective studies, in adult samples, highlight epigenetic modifications as sentinel markers of the quality of the early care environment; however, comparable data from pediatric cohorts are lacking. Participants were drawn from the Maternal Adversity Vulnerability and Neurodevelopment (MAVAN) study, a longitudinal cohort with measures of infant attachment, infant development, and child mental health. Children provided buccal epithelial samples (mean age = 6.99, SD = 1.33 years, n = 226), which were used for analyses of genome-wide DNA methylation and genetic variation. We used a series of linear models to describe the association between infant attachment and (a) measures of child outcome and (b) DNA methylation across the genome. Paired genetic data was used to determine the genetic contribution to DNA methylation at attachment-associated sites. Infant attachment style was associated with infant cognitive development (Mental Development Index) and behavior (Behavior Rating Scale) assessed with the Bayley Scales of Infant Development at 36 months. Infant attachment style moderated the effects of prenatal adversity on Behavior Rating Scale scores at 36 months. Infant attachment was also significantly associated with a principal component that accounted for 11.9% of the variation in genome-wide DNA methylation. These effects were most apparent when comparing children with a secure versus a disorganized attachment style and most pronounced in females. The availability of paired genetic data revealed that DNA methylation at approximately half of all infant attachment-associated sites was best explained by considering both infant attachment and child genetic variation. This study provides further evidence that infant attachment can buffer some of the negative effects of early adversity on measures of infant behavior. We also highlight the interplay between infant attachment and child genotype in shaping variation in DNA methylation. Such findings provide preliminary evidence for a molecular signature of infant attachment and may help inform attachment-focused early intervention programs.
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