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Published on: January 29, 2018
[Growth and body composition in the premature infant]
M L Giannì1, P Roggero, F Mosca
1U.O. di Neonatologia e Terapia Intensiva Neonatale, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Dipartimento di Scienze Materno Infantili, Università degli Studi di Milano.
Insights
Early nutrition significantly impacts long-term health by influencing infant growth and body composition. Monitoring these factors in preterm infants is crucial for preventing future metabolic syndrome risks.
Area of Science:
- Neonatal nutrition and development
- Pediatric health outcomes
- Metabolic programming
Background:
- Early life nutrition and growth patterns are linked to later-life disease risk.
- Body composition quality, alongside weight gain, is critical in infant development.
- Preterm infants often face postnatal growth retardation and altered body composition.
Purpose of the Study:
- To emphasize the importance of monitoring somatic growth and body composition in preterm infants.
- To highlight the role of early nutrition in preventing long-term health issues.
- To individualize nutritional management for preterm infants.
Main Methods:
- Assessing dynamic changes in body composition.
- Monitoring somatic growth patterns.
- Evaluating the quality of weight gain in preterm infants.
Main Results:
- Postnatal growth retardation and altered adiposity are common in preterm infants.
- Accurate assessment of body composition is vital for nutritional follow-up.
- Monitoring growth aids in preventing and recovering from growth deficits.
Conclusions:
- Monitoring infant body composition is key for personalized nutrition.
- Early nutritional interventions can mitigate risks of metabolic syndrome.
- Tracking growth quality is essential for preterm infant health.
Abstract:
Great interest has focused recently on the relationship between early nutrition, growth and subsequent health. Indeed, several studies have demonstrated that early life growth patterns exert programming effects on disease risk in later life, highlighting the key role played by early nutrition. Body composition, an index of quality of growth, is one of the factors apparently involved into this "programming" process. The American Academy of Pediatrics recommends to supply adequate amounts of nutrients so that growth and body composition of the preterm infant approximates that of the intrauterine fetus at the same gestational age. However, in clinical practice, the achievement of intrauterine growth rate and body composition is difficult Indeed, most preterm infants experience a significant postnatal growth retardation which can be accompanied by an increased and/or altered adiposity. The estimation of the dynamic features of body composition changes, in order to evaluate the quality, in addition to t he amount of weight gain plays a major role in the nutritional follow-up of preterm infants. Certainly, monitoring the somatic growth and the development of body composition in early infancy represents an extremely important clinical tool in the individualization of the nutritional management, the prevention and/or the recovery from the postnatal retardation and the identification of the subjects at high risk for developing the metabolic syndrome in young adulthood.
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