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Maternal Glycemia and Its Pattern Associated with Offspring Neurobehavioral Development: A Chinese Birth Cohort Study
Zhichao Yuan1, Tao Su2, Li Yang2
1Department of Maternal and Child Health, School of Public Health, Peking University, Beijing 100191, China.
Insights
Maternal hyperglycemia during pregnancy, particularly persistent high blood sugar, increases the risk of developmental delay in children. Early pregnancy hyperglycemia poses a greater risk to male offspring, highlighting the importance of glycemic control.
Area of Science:
- Obstetrics and Gynecology
- Pediatric Neurology
- Endocrinology
Background:
- Maternal glycemic levels are crucial for fetal development.
- Understanding the specific impact of hyperglycemia timing on neurodevelopment is essential.
Purpose of the Study:
- To investigate the association between maternal glycemic status during pregnancy and neurodevelopmental outcomes in offspring.
- To identify critical periods of maternal hyperglycemia affecting child development.
Main Methods:
- Fasting plasma glucose (FPG) and triglyceride (TG) levels were measured in 1888 pregnant women.
- Insulin resistance was assessed using the TyG index.
- Offspring neurodevelopment was evaluated using the China Developmental Scale for Children (ages 6-36 months), assessing developmental delay (DD) and developmental quotient (DQ).
Main Results:
- Maternal hyperglycemia and elevated FPG were linked to increased overall DD risk and lower DQ.
- Late pregnancy hyperglycemia (LHG) and full-term hyperglycemia (FHG) significantly elevated DD risk compared to healthy glycemia (HGG).
- Early pregnancy hyperglycemia (EHG) particularly impacted male offspring's neurodevelopment.
Conclusions:
- Maternal glycemic control during pregnancy is vital for healthy offspring neurodevelopment.
- Persistent hyperglycemia poses a significant risk for developmental delay.
- Targeted interventions for maternal hyperglycemia, especially in early pregnancy, are crucial for protecting male infant neurodevelopment.
Background/Objectives:
This study investigates the impact of maternal glycemic levels during early and late pregnancy on offspring neurodevelopment in China.
Methods:
Fasting plasma glucose (FPG) and triglyceride (TG) levels were measured in maternal blood during pregnancy, and the TyG index was calculated to assess insulin resistance. Hyperglycemia was defined as FPG > 5.1 mmol/L. Neurodevelopmental outcomes in offspring aged 6-36 months were evaluated using the China Developmental Scale for Children, focusing on developmental delay (DD) and developmental quotient (DQ). Mothers were categorized into four glycemic groups: healthy glycemia group (HGG), early pregnancy hyperglycemia group (EHG), late pregnancy hyperglycemia group (LHG), and full-term hyperglycemia group (FHG). Linear and logistic regression models were applied.
Results:
Among 1888 mother-child pairs, hyperglycemia and FPG were associated with an increased risk of overall DD (aOR = 1.68; 95% CI 1.07-2.64) and lower DQ (aBeta = -1.53; 95% CI -2.70 to -0.36). Elevated FPG was linked to DD in fine motor and social behaviors. Compared to HGG, LHG and FHG significantly increased the risk of overall DD (aOR = 2.18; 95% CI 1.26-3.77; aOR = 2.64; 95% CI 1.38-5.05), whereas EHG did not. Male offspring were particularly vulnerable to early pregnancy hyperglycemia (aBeta = -2.80; 95% CI -4.36 to -1.34; aOR = 2.05; 95% CI 1.10-3.80).
Conclusions:
Maternal glycemic levels during pregnancy influence offspring neurodevelopment, with persistent hyperglycemia significantly increasing DD risk. Early pregnancy hyperglycemia particularly affects male offspring, underscoring the need for glycemic management during pregnancy.
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