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Published on: July 28, 2022
Mechanisms Affecting the Gut of Preterm Infants in Enteral Feeding Trials
Nicholas D Embleton1,2, Janet E Berrington1,3, Jon Dorling4
1Newcastle Neonatal Service, Newcastle Hospitals NHS Foundation Trust, Newcastle upon Tyne, UK.
Insights
This study investigates the gut mechanisms behind necrotizing enterocolitis (NEC) and late-onset sepsis (LOS) in preterm infants. By analyzing gut microbes and metabolites in infants from feeding trials, it aims to uncover new strategies for preventing these serious conditions.
Area of Science:
- Neonatal research
- Gastroenterology
- Microbiome research
Background:
- Necrotizing enterocolitis (NEC) and late-onset sepsis (LOS) are significant causes of mortality and long-term morbidity in preterm infants.
- Existing large randomized controlled trials (RCTs) provide opportunities to investigate the underlying mechanisms of these conditions.
- Current hypotheses link NEC and LOS to a dysregulated immune system and gut dysbiosis, but mechanistic insights from large RCTs are lacking.
Purpose of the Study:
- To conduct a mechanistic evaluation of risk factors and interventions for NEC and LOS in preterm infants.
- To explore the effects of feeding strategies and enteral lactoferrin on gut microbiota, metabolites, and host immune function.
- To identify novel non-invasive biomarkers and therapeutic targets for NEC and LOS.
Main Methods:
- Recruitment of approximately 480 preterm infants from the Speed of Increasing Milk Feeds Trial (SIFT) and Enteral Lactoferrin in Neonates (ELFIN) trials.
- Non-invasive sampling of stool and urine, with optional collection of resected gut tissue.
- Utilizing next-generation sequencing for microbiomic analysis and mass spectrometry for metabolite assessment.
Main Results:
- The study is designed to explore differences between disease cases and controls.
- It will investigate the impact of trial interventions on gut microbial composition and metabolic profiles.
- Mechanistic data will be gathered to explain primary trial outcomes and inform future research.
Conclusions:
- Understanding the gut mechanisms in preterm infants can lead to improved health outcomes and novel preventative strategies for NEC and LOS.
- The findings may identify new non-invasive diagnostic or monitoring techniques.
- Mechanistic evaluation is crucial, especially when primary trial outcomes are not significantly affected.
Abstract:
Large randomized controlled trials (RCTs) in preterm infants offer unique opportunities for mechanistic evaluation of the risk factors leading to serious diseases, as well as the actions of interventions designed to prevent them. Necrotizing enterocolitis (NEC) a serious inflammatory gut condition and late-onset sepsis (LOS) are common feeding and nutrition-related problems that may cause death or serious long-term morbidity and are key outcomes in two current UK National Institutes for Health Research (NIHR) trials. Speed of increasing milk feeds trial (SIFT) randomized preterm infants to different rates of increases in milk feeds with a primary outcome of survival without disability at 2 years corrected age. Enteral lactoferrin in neonates (ELFIN) randomizes infants to supplemental enteral lactoferrin or placebo with a primary outcome of LOS. This is a protocol for the mechanisms affecting the gut of preterm infants in enteral feeding trials (MAGPIE) study and is funded by the UK NIHR Efficacy and Mechanistic Evaluation programme. MAGPIE will recruit ~480 preterm infants who were enrolled in SIFT or ELFIN. Participation in MAGPIE does not change the main trial protocols and uses non-invasive sampling of stool and urine, along with any residual resected gut tissue if infants required surgery. Trial interventions may involve effects on gut microbes, metabolites (e.g., short-chain fatty acids), and aspects of host immune function. Current hypotheses suggest that NEC and/or LOS are due to a dysregulated immune system in the context of gut dysbiosis, but mechanisms have not been systematically studied within large RCTs. Microbiomic analysis will use next-generation sequencing, and metabolites will be assessed by mass spectrometry to detect volatile organic and other compounds produced by microbes or the host. We will explore differences between disease cases and controls, as well as exploring the actions of trial interventions. Impacts of this research are multiple: translation of knowledge of mechanisms promoting gut health may explain outcomes or suggest alternate strategies to improve health. Results may identify new non-invasive diagnostic or monitoring techniques, preventative or treatment strategies for NEC or LOS, or provide data useful for risk stratification in future studies. Mechanistic evaluation might be especially informative where there are not clear effects on the primary outcome (ISRCTN 12554594).
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