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Insulin level and insulin sensitivity indices among healthy children and adolescents
María G Ballerini1,2, Ignacio Bergadá3,2, María E Rodríguez3,2
1Centro de Investigaciones Endocrinológicas "Dr. César Bergadá" (CEDIE), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Ciudad Autónoma de Buenos Aires, Argentina. mgballerini@cedie.org.ar.
Insights
This study establishes reference values for insulin and insulin resistance in children. It provides key cut-off points for pediatricians to identify potential insulin resistance in healthy youth.
Area of Science:
- Pediatric Endocrinology
- Metabolic Health in Children
- Insulin Physiology
Background:
- Limited data exists on normal insulin levels and insulin sensitivity indices in pediatric populations.
- Establishing reference ranges is crucial for accurate diagnosis and management of metabolic disorders in children.
Purpose of the Study:
- To define the normal range of fasting insulin levels in healthy children and adolescents.
- To describe surrogate indices of insulin sensitivity, such as HOMA-IR, across different pediatric age groups.
- To correlate insulin levels and HOMA-IR with factors like age, BMI, pubertal stage, IGF-1, and lipids.
Main Methods:
- Cross-sectional study of 226 healthy children and adolescents aged 1-18 years.
- Fasting insulin levels and homeostasis model assessment of insulin resistance (HOMA-IR) were measured.
- Data analyzed by age, body mass index, pubertal stage, IGF-1, total cholesterol, and triglycerides.
Main Results:
- Insulin levels significantly correlated with age, BMI, pubertal stage, IGF-1, and triglycerides (r²=0.38, p<0.0001).
- Higher insulin levels and HOMA-IR were observed in older prepubertal children and during puberty.
- Pubertal girls exhibited higher insulin levels than pubertal boys.
Conclusions:
- Physiological changes in insulin levels and HOMA-IR are confirmed in children and adolescents.
- Proposed cut-off values for fasting insulin (10 pIU/mL prepubertal, 17 pIU/mL pubertal girls, 13 pIU/mL pubertal boys) and HOMA-IR (>2.0 prepubertal, >2.6 pubertal) can aid in identifying potential insulin resistance.
- These findings provide valuable reference points for pediatricians managing metabolic health in youth.
Introduction:
Information on insulin reference values and insulin sensitivity indices in the field of pediatrics is scarce.
Objective:
To describe insulin range and insulin sensitivity surrogate indices during childhood.
Materials And Methods:
Fasting insulin level range and surrogate indices, such as the homeostasis model assessment of insulin resistance (HOMA-IR), among healthy children and adolescents by age, body mass index, pubertal stage (PS), insulin-like growth factor-1 (IGF-1), total cholesterol, and triglycerides.
Results:
Two hundred and twenty-six healthy children and adolescents (1-18 years old) were included. Insulin increased with age, body mass index, pubertal stage, IGF-1 and triglyceride levels (r2= 0.38, p 〈 0.0001). Prepubertal children 〉 7.5 years old had higher insulin levels [median (P3 and P97) pIU/mL: 5.0 (1.7-9.6)] than prepubertal children 〈 7.5 years old [2.9 pIU/ mL (1.3-10.9), p 〈 0.01]. During puberty (from PS II to PS V), insulin was higher in girls than in boys [7.4 (1.8-16.9) versus 5.8 (1.8-12.9), p 〈 0.01]. The HOMA-IR index increased in the group of prepubertal children 〉 7.5 years old: 1.1 (0.32.0) versus children 〈 7.5 years old: 0.6 (0.3-1.4, p 〈 0.01). The insulin level and HOMA-IR results were higher in pubertal children compared to the prepubertal group (p 〈 0.001).
Conclusions:
Known physiological changes were observed inboth insulin levels and the HOMA-IR index among children and adolescents. A fasting blood insulin level of 10 pIU/mL in prepubertal children and of 17 pIU/mL and 13 pIU/mL in pubertal girls and boys, respectively, may be considered as an acceptable cut-off value in healthy children. A HOMA-IR value 〉 2.0 and 〉 2.6 in prepubertal and pubertal children, respectively, may be considered a warning sign for pediatricians to further investigate insulin resistance.
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