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Neonatal Nucleus Accumbens Microstructure Modulates Individual Susceptibility to Preconception Maternal Stress in
Shi Yu Chan1, Xi Zhen Low2, Zhen Ming Ngoh1
1Singapore Institute for Clinical Sciences (SICS), Agency for Science, Technology and Research (A∗STAR), Singapore, Singapore.
Insights
Maternal stress before conception impacts offspring brain development. Specific nucleus accumbens (NAcc) microstructure influences susceptibility to stress-related externalizing behaviors in children.
Area of Science:
- Neuroscience
- Developmental Psychology
- Reproductive Health
Background:
- Maternal stress during pregnancy is a risk factor for offspring psychopathologies.
- Reward circuitry dysfunction is implicated in internalizing and externalizing disorders.
- The nucleus accumbens (NAcc) is a key reward circuitry node affected by early life stress.
Purpose of the Study:
- To investigate the association between maternal stress and neonatal NAcc microstructure.
- To determine if neonatal NAcc microstructure mediates the relationship between maternal stress and childhood behavioral problems.
Main Methods:
- Longitudinal cluster analysis identified maternal stress trajectories (Perceived Stress Scale [PSS], hair cortisol).
- Neonatal NAcc microstructural measures (orientation density index [ODI], intracellular volume fraction [ICVF]) were assessed.
- Interaction between maternal stress and NAcc microstructure on child behaviors (ages 3–4) was examined.
Main Results:
- Two maternal stress trajectories (low/high) were identified for PSS and hair cortisol.
- Lower right NAcc ODI was observed in the high PSS trajectory group.
- Preconception PSS showed the strongest association with right NAcc ODI.
- A significant interaction between preconception PSS and right NAcc ODI predicted externalizing behavior.
Conclusions:
- The preconception period is critical for in utero NAcc development.
- NAcc microstructure modulates susceptibility to preconception maternal stress regarding externalizing behaviors.
- Maternal stress prior to conception may alter NAcc development, influencing later behavioral outcomes.
Objective:
Maternal stress influences in utero brain development and is a modifiable risk factor for offspring psychopathologies. Reward circuitry dysfunction underlies various internalizing and externalizing psychopathologies. This study examined (1) the association between maternal stress and microstructural characteristics of the neonatal nucleus accumbens (NAcc), a major node of the reward circuitry, and (2) whether neonatal NAcc microstructure modulates individual susceptibility to maternal stress in relation to childhood behavioral problems.
Method:
K-means longitudinal cluster analysis was performed to determine trajectories of maternal stress measures (Perceived Stress Scale [PSS], hair cortisol) from preconception to the third trimester. Neonatal NAcc microstructural measures (orientation density index [ODI] and intracellular volume fraction [ICVF]) were compared across trajectories. We then examined the interaction between maternal stress and neonatal NAcc microstructure on child internalizing and externalizing behaviors, assessed between ages 3 and 4 years.
Results:
Two trajectories of maternal stress magnitude ("low"/"high") were identified for both PSS (n = 287) and hair cortisol (n = 336). Right neonatal NAcc ODI (rNAcc-ODI) was significantly lower in "low" relative to "high" PSS trajectories (n = 77, p = .04). PSS at preconception had the strongest association with rNAcc-ODI (r = 0.293, p = .029). No differences in NAcc microstructure were found between hair cortisol trajectories. A significant interaction between preconception PSS and rNAcc-ODI on externalizing behavior was observed (n = 47, p = .047).
Conclusion:
Our study showed that the preconception period contributes to in utero NAcc development, and that NAcc microstructure modulates individual susceptibility to preconception maternal stress in relation to externalizing problems.
Plain Language Summary:
In the S-PRESTO population-based cohort study conducted in Singapore with 351 women and their children, higher levels of maternal perceived stress within the year before pregnancy were associated with increased dendritic complexity within offsprings' nucleus accumbens, indicative of a more advanced developmental profile. Variations in right nucleus accumbens microstructure significantly modulated the association between maternal perceived stress at preconception and externalizing behaviors in early childhood. Study findings suggest that maternal stress in the preconception period accelerates in-utero nucleus accumbens development, leading to differential risk to externalizing problems in later childhood.
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