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Published on: January 7, 2018
The relationship between birth weight and insulin resistance in childhood
Jesuana O Lemos1, Patricia H C Rondó, Joilane A Pereira
1Department of Nutrition, School of Public Health, University of São Paulo, Avenida Dr Arnaldo 715, São Paulo, SP, CEP-01246-904, Brazil.
Insights
Lower birth weight in children is linked to increased insulin resistance and higher waist circumference. This highlights the importance of adequate maternal-fetal development for long-term metabolic health.
Area of Science:
- Pediatric Endocrinology
- Metabolic Health
- Epidemiology
Background:
- Chronic adult diseases may stem from poor fetal development.
- Limited research exists on birth weight and insulin resistance in young children.
Purpose of the Study:
- To investigate the association between birth weight and insulin resistance in healthy children aged 5-8 years.
- To explore the role of waist circumference in this relationship.
Main Methods:
- Epidemiological cohort study of 506 children.
- Measured insulin concentration, insulin resistance (HOMA), blood glucose, lipids, and TAGs.
- Utilized linear regression analysis to assess relationships.
Main Results:
- Negative association found between birth weight and insulin resistance (HOMA index).
- Small for gestational age (SGA) children showed higher insulin resistance.
- Positive association observed between waist circumference and insulin resistance.
Conclusions:
- Lower birth weight and higher waist circumference are linked to increased insulin resistance in children.
- Adequate maternal-fetal development is crucial for preventing metabolic abnormalities.
- Public health policies should focus on early diagnosis and prevention.
Abstract:
Chronic diseases that are typical of adulthood may originate in intra-uterine life through inadequate fetal development. The present epidemiological cohort study of 506 healthy children aged 5-8 years evaluated the relationship between birth weight and insulin resistance in an age group that has been assessed in few similar studies. Insulin concentration was determined by chemiluminescence and insulin resistance by the homeostasis model assessment (HOMA). Blood glucose, total cholesterol and fractions (LDL cholesterol and HDL cholesterol) and TAG concentrations were determined by automated enzymatic methods. Linear regression analysis investigated the relationship between birth weight (assessed as a continuous variable and in three categories: small for gestational age, SGA; adequate for gestational age and large for gestational age) and the HOMA index, using backward stepwise selection and biological models to explain the causal pathway of the relationship. There were negative associations between birth weight (P < 0.001), SGA (P = 0.027) and the HOMA index, and a positive association between waist circumference (P < 0.001) and the HOMA index. Considering the significant associations between birth weight and waist circumference (P < 0.001) and waist circumference and insulin resistance (P < 0.001), we can probably suspect that lower birth weight is a common cause of higher waist circumference and insulin resistance. In summary, the results of the present study showed increased insulin resistance in apparently healthy, young children, who had lower weight at birth and higher measurements of waist circumference. There is a need to develop public health policies that adopt preventive measures to promote adequate maternal-fetal and child development and enable early diagnosis of metabolic abnormalities.
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