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Intrauterine Growth Restriction: New Insight from the Metabolomic Approach
Elena Priante1, Giovanna Verlato1, Giuseppe Giordano2,3
1Neonatal Intensive Care Unit, Department of Women's and Children's Health, University of Padua, 35128 Padua, Italy.
Insights
Intrauterine growth restriction (IUGR) impacts newborn health, potentially leading to long-term issues like cardiometabolic syndrome. Metabolomics shows early signs of glucose intolerance and altered metabolism in IUGR infants, requiring further research for clinical application.
Area of Science:
- Perinatology
- Neonatology
- Metabolomics
Background:
- Intrauterine growth restriction (IUGR) poses significant risks to newborn health, with links to later cardiometabolic syndrome.
- Fetal adaptations to adverse uterine environments may lead to permanent metabolic changes.
- Current diagnostic tools lack biomarkers for early IUGR detection and severity stratification.
Purpose of the Study:
- To review the pathophysiology and clinical aspects of IUGR.
- To focus on insights gained from metabolomic studies in IUGR neonates.
- To explore the potential of metabolomics in understanding IUGR-related metabolic perturbations.
Main Methods:
- This is a narrative review synthesizing existing research.
- Focuses on evidence from untargeted metabolomics studies.
- Examines pathophysiological and clinical data related to IUGR.
Main Results:
- Metabolomic studies suggest early glucose intolerance and insulin resistance in IUGR neonates.
- Evidence points to catabolite accumulation and altered amino acid metabolism.
- Preliminary findings indicate specific metabolic signatures associated with IUGR.
Conclusions:
- Metabolomics offers a promising approach to investigate IUGR-related metabolic changes.
- Early metabolic alterations in IUGR infants warrant further investigation.
- Larger studies are needed to validate findings and guide clinical practice for IUGR management.
Abstract:
Recognizing intrauterine growth restriction (IUGR) is a matter of great concern because this condition can significantly affect the newborn's short- and long-term health. Ever since the first suggestion of the "thrifty phenotype hypothesis" in the last decade of the 20th century, a number of studies have confirmed the association between low birth weight and cardiometabolic syndrome later in life. During intrauterine life, the growth-restricted fetus makes a number of hemodynamic, metabolic, and hormonal adjustments to cope with the adverse uterine environment, and these changes may become permanent and irreversible. Despite advances in our knowledge of IUGR newborns, biomarkers capable of identifying this condition early on, and stratifying its severity both pre- and postnatally, are still lacking. We are also still unsure about these babies' trajectory of postnatal growth and their specific nutritional requirements with a view to preventing, or at least limiting, long-term complications. In this setting, untargeted metabolomics-a relatively new field of '-omics' research-can be a good way to investigate the metabolic perturbations typically associated with IUGR. The aim of this narrative review is to provide a general overview of the pathophysiological and clinical aspects of IUGR, focusing on evidence emerging from metabolomic studies. Though still only preliminary, the reports emerging so far suggest an "early" pattern of glucose intolerance, insulin resistance, catabolite accumulation, and altered amino acid metabolism in IUGR neonates. Further, larger studies are needed to confirm these results and judge their applicability to clinical practice.
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