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Published on: June 24, 2020
Nutrients and Microbiota in Lung Diseases of Prematurity: The Placenta-Gut-Lung Triangle
Fiammetta Piersigilli1, Bénédicte Van Grambezen1, Catheline Hocq1
1Division of Neonatology, St-Luc University Hospital, Catholic University of Louvain, Brussels 1200, Belgium.
Insights
Nutritional strategies significantly impact cardiorespiratory outcomes in premature infants. Optimizing nutrition and the microbiome is crucial for preventing and treating respiratory disorders in preterm infants.
Area of Science:
- Neonatology
- Respiratory Physiology
- Nutritional Science
Background:
- Cardiorespiratory function is critical for survival and long-term outcomes in preterm infants.
- The transition to nutritional autonomy presents challenges, influencing respiratory health.
- Nutritional interventions directly impact lung development, homeostasis, and respiratory diseases.
Purpose of the Study:
- To review the gut-lung axis pathophysiology in preterm infants' respiratory disorders.
- To explore established and novel nutritional strategies for prevention and treatment.
- To highlight the role of nutrition in lung development and disease.
Main Methods:
- Literature review focusing on nutrition, microbiome, and respiratory outcomes in preterm infants.
- Analysis of the impact of nutrients (amino acids, lipids, vitamins) and administration routes (parenteral, enteral).
- Examination of metabolomic signatures and microbiome influence on lung injury and repair.
Main Results:
- Specific nutrients and administration methods affect lung tissue and function.
- Metabolomic signatures indicate roles in lung injury, repair, and immune modulation.
- Human milk and microbiome modulation show promise in preventing bronchopulmonary dysplasia.
Conclusions:
- The gut-lung axis is central to respiratory health in preterm infants.
- Nutritional approaches, including human milk, prebiotics, and probiotics, are key for managing respiratory disorders.
- Personalized nutrition strategies are essential for optimizing preterm infant outcomes.
Abstract:
Cardiorespiratory function is not only the foremost determinant of life after premature birth, but also a major factor of long-term outcomes. However, the path from placental disconnection to nutritional autonomy is enduring and challenging for the preterm infant and, at each step, will have profound influences on respiratory physiology and disease. Fluid and energy intake, specific nutrients such as amino-acids, lipids and vitamins, and their ways of administration -parenteral or enteral-have direct implications on lung tissue composition and cellular functions, thus affect lung development and homeostasis and contributing to acute and chronic respiratory disorders. In addition, metabolomic signatures have recently emerged as biomarkers of bronchopulmonary dysplasia and other neonatal diseases, suggesting a profound implication of specific metabolites such as amino-acids, acylcarnitine and fatty acids in lung injury and repair, inflammation and immune modulation. Recent advances have highlighted the profound influence of the microbiome on many short- and long-term outcomes in the preterm infant. Lung and intestinal microbiomes are deeply intricated, and nutrition plays a prominent role in their establishment and regulation. There is an emerging evidence that human milk prevents bronchopulmonary dysplasia in premature infants, potentially through microbiome composition and/or inflammation modulation. Restoring antibiotic therapy-mediated microbiome disruption is another potentially beneficial action of human milk, which can be in part emulated by pre- and probiotics and supplements. This review will explore the many facets of the gut-lung axis and its pathophysiology in acute and chronic respiratory disorders of the prematurely born infant, and explore established and innovative nutritional approaches for prevention and treatment.
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