Why the study?
Metabolic disorders in children with obesity carry cardiovascular risk factors, and the effects of high-intensity interval training on their glycolipid metabolism needed to be determined.
Does high-intensity interval training improve glycolipid metabolism in children with metabolic disorders?
Does high-intensity interval training improve glycolipid metabolism in children with metabolic disorders?
High-intensity interval training improves glycolipid metabolism in children with metabolic disorders compared to no training, but is generally not superior to moderate-intensity training except under specific protocol conditions.
HIIT or moderate training may be prescribed over inactivity for pediatric glycolipid benefits; high heterogeneity leaves optimal protocols open.
Objective Metabolic disorders are common among children and adolescents with obesity and are associated with insulin resistance, hyperlipidemia, hypertension, and other cardiovascular risk factors. High-intensity interval training (HIIT) is a time-efficient method to improve cardiometabolic health. We performed a meta-analysis to determine the effects of HIIT on glycolipid metabolism in children with metabolic disorders. Methods Meta-analyses were conducted to determine the effect of HIIT on glycolipid metabolism markers. Subgroup analysis with potential moderators was explored [i.e., training intensity standard and work/rest time ratio (WRR)]. Results Eighteen trials involving 538 participants were included. HIIT showed positive effects on glycolipid metabolism, such as triglyceride (TG), total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), blood glucose (BG), blood insulin (BI), and homeostasis model assessment (HOMA)-IR, when compared to the non-training control group (CON); in addition to BG ( p = 0.257), the combined results of other indicators have high heterogeneity ( p = 0.000). HIIT showed no superior effects when compared to moderate-intensity training (MIT). Subgroup analysis demonstrated that HIIT protocol with a WRR of 1:1 was superior to MIT for reducing TG and LDL-C and used %maximal aerobic speed (MAS) as the exercise intensity was superior to MIT for reducing TG. HIIT protocol used %heart rate (HR) as the exercise intensity was superior to MIT for increasing HDL-C, decreasing BI, and HOMA-IR. Conclusion HIIT improved glycolipid metabolism in children with metabolic disorders. WRR and training intensity can affect the intervention effects of HIIT. Systematic Review Registration [ https://www.crd.york.ac.uk/ ], identifier [CRD42021291473]
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Cao et al. (2022) studied this question.
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