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Published on: November 24, 2020
Longitudinal associations between ultra-processed foods and blood lipids in childhood
Paula S Leffa1, Daniel J Hoffman2, Fernanda Rauber3,4
1Graduate Program of Health Sciences, Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, Brazil.
Insights
Ultra-processed food (UPF) intake increased in young children, leading to higher blood lipid levels. Strategies are needed to reduce UPF consumption in early life for better child health outcomes.
Area of Science:
- Pediatric Nutrition
- Cardiovascular Health
- Dietary Exposure Assessment
Background:
- Growing evidence links ultra-processed foods (UPF) to chronic diseases.
- Limited data exists on UPF's impact on children's health.
- Understanding UPF consumption trends in early life is crucial.
Purpose of the Study:
- To analyze longitudinal trends of UPF intake in young children.
- To investigate the association between UPF consumption and blood lipid profiles.
- To assess the impact of UPF on cardiovascular risk markers in childhood.
Main Methods:
- Follow-up of a randomized field trial involving 308 children in Brazil.
- Dietary intake assessed via two 24-hour recalls at ages 3 and 6.
- UPF classification using the NOVA system; lipid profiles measured at age 6.
Main Results:
- UPF contribution to total energy intake rose from 43.4% at age 3 to 47.7% at age 6.
- Higher UPF intake at age 3 correlated with elevated total cholesterol and triglycerides at age 6.
- A dose-response relationship observed between increased UPF intake and adverse lipid levels.
Conclusions:
- UPF consumption significantly increased over time in this cohort.
- UPF intake is associated with unfavorable blood lipid levels in young children.
- Interventions to reduce UPF consumption in early childhood are warranted.
Abstract:
Emerging evidence suggests that the consumption of ultra-processed foods (UPF) plays a role in the development of chronic diseases, but evidence of their influence in children is limited. Our objective was to study longitudinal trends of UPF intake and determine their impact on blood lipids in young children. The present study was a follow-up of a randomised field trial of children (n 308) from Porto Alegre, Brazil. Dietary intake was collected using two 24-h recalls at 3 and 6 years of age, and consumption of UPF was classified according to the NOVA system, a food classification based on the extent and purpose of industrial food processing. At age 6 years, blood tests were performed to measure lipid profile. Contribution of UPF to total energy intake increased by 10 % during the follow-up period, from 43·4 % at 3 years to 47·7 % at 6 years of age. Linear regression models showed that children in the highest tertile of UPF consumption at age 3 years had higher levels of total cholesterol (TC; β 0·22 mmol/l; 95 % CI 0·04, 0·39) and TAG at age 6 years (β 0·11 mmol/l, 95 % CI 0·01, 0·20) compared with those in the lowest tertile. A positive dose-response was observed for an absolute increment of 10 % of UPF on TC (β 0·07 mmol/l, 95 % CI 0·00, 0·14) and TAG (β 0·04 mmol/l, 95 % CI 0·01, 0·07). Based on our data, consumption of UPF increased significantly over time and was associated with higher blood lipid levels in children from a low-income community. Our findings highlight the need for effective strategies to minimise the consumption of UPF in early life.
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