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A Combined Physical Activity and Multi-Micronutrient Supplementation Intervention in South African Primary Schools:
Siphesihle Nqweniso1, Cheryl Walter1, Rosa du Randt1
1Department of Human Movement Science, Nelson Mandela University, Gqeberha 6031, South Africa.
Insights
Multi-micronutrient supplementation (MMNS) improved children's fitness and blood pressure, but physical activity (PA) did not increase. Some interventions showed mixed results on cardiovascular disease risk factors, requiring cautious interpretation.
Area of Science:
- Pediatric Health
- Public Health
- Nutritional Science
Background:
- Declining physical activity (PA) and cardiorespiratory fitness (CRF) are critical global health issues in children, exacerbated by urbanization.
- Marginalized communities face unique challenges regarding children's health and fitness levels.
Purpose of the Study:
- To assess the impact of a school-based intervention combining PA and multi-micronutrient supplementation (MMNS) on children's PA, CRF, and cardiovascular disease (CVD) risk factors.
- To evaluate the isolated effects of PA and MMNS on health outcomes in children aged 6-12 years.
Main Methods:
- A cluster randomized controlled trial involving 1151 children from marginalized communities in Gqeberha, South Africa.
- Four intervention arms: PA + MMNS, PA + placebo, MMNS, and placebo (control).
- Measurements included accelerometry for PA, 20 m shuttle-run for CRF, anthropometry, blood pressure, HbA1c, and lipid profiles over three time points.
Main Results:
- No intervention significantly improved daily PA levels.
- MMNS alone increased CRF and triglycerides; PA + MMNS reduced HbA1c but also increased body fat and decreased HDL.
- MMNS interventions significantly reduced blood pressure from post-intervention to follow-up.
Conclusions:
- MMNS shows potential for improving CRF and blood pressure, while PA + MMNS may reduce HbA1c.
- Adverse metabolic changes were observed, necessitating careful consideration of intervention components.
- Short intervention duration and COVID-19 disruptions may impact findings, warranting cautious interpretation.
Abstract:
Background/Objectives: Declining physical activity (PA) and cardiorespiratory fitness (CRF) in children are global public health concerns, particularly in populations experiencing urbanization and economic transition. This study investigated the effects of a school-based intervention on PA, CRF, and cardiovascular disease (CVD) risk factors in children aged 6-12 years from marginalized communities in Gqeberha, South Africa. Methods: A cluster randomized controlled trial was conducted in four schools, with participants randomly assigned to one of the following four arms: (i) PA and multi-micronutrient supplementation (MMNS); (ii) PA and placebo; (iii) MMNS; or (iv) placebo (control). A total of 1151 children were assessed at baseline (T1), 1003 at post-intervention (T2), and 549 at follow-up (T3). PA was measured using accelerometers. Secondary outcomes included CRF (20 m shuttle-run) and CVD risk factors (i.e., anthropometry, blood pressure, glycated hemoglobin [HbA1c], and lipid profile). Mixed linear models adjusted for baseline characteristics were used. Results: None of the interventions significantly improved daily PA. From T1 to T2, the MMNS arm significantly increased CRF, while PA + MMNS reduced HbA1c. However, MMNS alone increased triglycerides, and PA + placebo increased low-density lipoprotein (LDL). From post-intervention (T2) to follow-up (T3), the MMNS arms significantly reduced blood pressure. Yet, the PA + MMNS arm increased body fat percentage and decreased high-density lipoprotein (HDL). Conclusions: While MMNS showed promise for improving fitness and blood pressure and PA + MMNS reduced HbA1c, adverse metabolic changes emerged. The results should be interpreted with caution due to the short intervention span and COVID-19 disruptions during the second year of the intervention.
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