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Ultraprocessed Food Consumption and Cardiometabolic Risk Factors in Children
Nadine Khoury1,2,3, María Ángeles Martínez1,2,3, Tany E Garcidueñas-Fimbres1,2,3
1Universitat Rovira i Virgili Departament de Bioquímica i Biotecnologia, Unitat de Nutrició Humana, ANUT-DSM group, Spain.
Insights
High ultraprocessed food (UPF) intake in young children is linked to increased adiposity and cardiometabolic risks. Replacing UPFs with unprocessed foods may mitigate these adverse health effects in children.
Area of Science:
- Pediatric Nutrition
- Cardiometabolic Health
- Public Health
Background:
- High ultraprocessed food (UPF) consumption is linked to cardiometabolic risk in adults, but evidence in children is limited.
- Understanding UPF's impact on children's health is crucial for early intervention.
Purpose of the Study:
- To investigate the association between UPF consumption and cardiometabolic risk factors in preschool children.
- To analyze adiposity and cardiometabolic parameters in relation to UPF intake.
Main Methods:
- Cross-sectional analysis of the Childhood Obesity Risk Assessment Longitudinal Study (CORALS) with 1426 children (aged 3-6 years).
- Assessed energy-adjusted UPF consumption using food frequency questionnaires (NOVA classification).
- Evaluated age- and sex-specific z scores for adiposity (BMI, fat mass index) and cardiometabolic factors (blood pressure, glucose, lipids) via linear regression.
Main Results:
- Higher UPF consumption correlated with increased z scores for BMI, waist circumference, fat mass index, and fasting plasma glucose.
- Elevated UPF intake was associated with lower high-density lipoprotein (HDL) cholesterol z scores.
- Substituting UPFs with unprocessed foods showed a trend towards lower BMI, fat mass index, and fasting plasma glucose z scores.
Conclusions:
- High UPF intake in young children is associated with adverse adiposity and cardiometabolic risk factors.
- Public health strategies should encourage replacing UPFs with unprocessed or minimally processed foods for children's health.
Importance:
High intake of ultraprocessed foods (UPFs) has been associated with higher cardiometabolic risk in adults; however, the evidence in children is limited.
Objective:
To investigate the association between UPF consumption and cardiometabolic risk factors in the Childhood Obesity Risk Assessment Longitudinal Study (CORALS).
Design, Setting, And Participants:
This baseline cross-sectional analysis was conducted using the data of CORALS participants recruited between March 22, 2019, and June 30, 2022. Preschool children (aged 3-6 years) were recruited from schools and centers in 7 cities in Spain. Inclusion criteria included informed consent signed by parents or caregivers and having a completed a set of questionnaires about the child's prenatal history at home. Exclusion criteria included low command of Spanish or unstable residence.
Exposure:
Energy-adjusted UPF consumption (in grams per day) from food frequency questionnaires and based on the NOVA food classification system.
Main Outcomes And Measures:
Age- and sex-specific z scores of adiposity parameters (body mass index [BMI], fat mass index, waist-to-height ratio, and waist circumference) and cardiometabolic parameters (diastolic and systolic blood pressure, fasting plasma glucose, homeostasis model assessment for insulin resistance, high-density and low-density lipoprotein cholesterol, and triglycerides) were estimated using linear regression models.
Results:
Of 1509 enrolled CORALS participants, 1426 (mean [SD] age, 5.8 [1.1] years; 698 boys [49.0%]) were included in this study. Mothers of children with high UPF consumption were younger, had a higher BMI, were more likely to have overweight or obesity, and had lower education levels and employment rates. Compared with participants in the lowest tertile of energy-adjusted UPF consumption, those in the highest tertile showed higher z scores of BMI (β coefficient, 0.20; 95% CI, 0.05-0.35), waist circumference (β coefficient, 0.20; 95% CI, 0.05-0.35), fat mass index (β coefficient, 0.17; 95% CI, 0.00-0.32), and fasting plasma glucose (β coefficient, 0.22; 95% CI, 0.06-0.37) and lower z scores for HDL cholesterol (β coefficient, -0.19; 95% CI, -0.36 to -0.02). One-SD increments in energy-adjusted UPF consumption were associated with higher z scores for BMI (β coefficient, 0.11; 95% CI, 0.05-0.17), waist circumference (β coefficient, 0.09; 95% CI, 0.02-0.15), fat mass index (β coefficient, 0.11; 95% CI, 0.04-1.18), and fasting plasma glucose (β coefficient, 0.10; 95% CI, 0.03-0.17) and lower HDL cholesterol (β coefficient, -0.07; 95% CI, -0.15 to -0.00). Substituting 100 g of UPFs with 100 g of unprocessed or minimally processed foods was associated with lower z scores of BMI (β coefficient, -0.03; 95% CI, -0.06 to -0.01), fat mass index (β coefficient, -0.03; 95% CI, -0.06 to 0.00), and fasting plasma glucose (β coefficient, -0.04; 95% CI, -0.07 to -0.01).
Conclusions And Relevance:
These findings suggest that high UPF consumption in young children is associated with adiposity and other cardiometabolic risk factors, highlighting the need for public health initiatives to promote the replacement of UPFs with unprocessed or minimally processed foods.
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