Related Experiment Video
Updated: Jun 9, 2025

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Severe anemia in preterm infants associated with increased bacterial virulence potential and metabolic disequilibrium
Justin A Gibbons1, Leigh-Anne M Worthington2, Elizabeth G Chiu2
1Center for Global Health and Interdisciplinary Research, College of Public Health, University of South Florida, Tampa, FL, USA.
Insights
Severe anemia in preterm infants is linked to gut dysbiosis, characterized by increased bacterial virulence and inflammation. This study used fecal omics to uncover these gut changes, offering insights for clinical management.
Area of Science:
- Neonatal Medicine
- Microbiome Research
- Gastroenterology
Background:
- Anemia in preterm infants is linked to gut dysbiosis and necrotizing enterocolitis.
- Understanding the mechanisms connecting anemia and gut health is crucial for preterm infant care.
Purpose of the Study:
- To identify bacterial functions and metabolites associated with anemia in preterm infants.
- To elucidate the underlying mechanisms of anemia-related gut conditions.
Main Methods:
- A case-control study involving preterm infants with anemia (hematocrit < 25%) and matched controls.
- Collection of fecal samples at multiple time points for metagenomic and metabolomic analyses.
- Utilized a multiomics approach on non-invasive fecal biospecimens.
Main Results:
- Severe anemia was associated with increased virulence factor potential and significant metabolome changes.
- Decreased beta diversity and altered metabolite levels (e.g., N-acetylneuraminate, butyrobetaine) were observed in anemic infants.
- Anemic infants showed reduced levels of prostaglandin and lactic acid.
Conclusions:
- Severe anemia in preterm infants is linked to a pro-inflammatory gut microbiota with enhanced bacterial virulence.
- Multiomics data revealed functional and metabolic gut microbiota alterations explaining anemia-associated conditions.
- Findings provide guidance for clinical management of anemia in preterm infants.
Background:
Anemia in preterm infants is associated with gut dysbiosis and necrotizing enterocolitis. Our study aimed to identify the bacterial functions and metabolites that can explain the underlying mechanisms of anemia associated disease conditions.
Methods:
We conducted a case control study in preterm infants with cases having a hematocrit 25%. The control infants were matched by birth gestational age and weight. Fecal samples were collected before, at the onset, and after the onset of anemia in cases and with matched postnatal age in controls for metagenomics and metabolomics analyzes.
Results:
18 anemic and 20 control infants with fecal samples collected at 17 days, 5 weeks, and 7 weeks postnatal age were included. Virulence factor potential, decrease in beta diversity evolution, and larger changes in metabolome were associated with severe anemia. Metabolite abundances of N-acetylneuraminate and butyrobetaine were associated with virulence factor potential. Anemic group had decreased prostaglandin and lactic acid levels.
Conclusion:
Fecal omics data showed that severe anemia is associated with a pro-inflammatory gut microbiota with more virulent and less commensal anaerobic bacterial activities. Future studies can examine the link between anemia-associated dysbiosis and clinical outcomes and predict an infant-specific hematocrit threshold that negatively affects clinical outcomes.
Impact:
Severe anemia in preterm infants contributes to a pro-inflammatory gut with greater bacterial virulence and less commensal bacterial activities. The multiomics approach using non-invasive fecal biospecimens identified functional and metabolic changes in the gut microbiota and these mechanistic changes are plausible explanations for anemia-associated disease conditions in preterm infants. Our findings identified biological changes of the gut environment in severely anemic preterm infants that can offer guidance for clinical management.
Related Concept Videos
Disorders of Erythrocytes
Erythrocyte disorders can be broadly categorized into two main types: anemic and polycythemic conditions.
A low oxygen-carrying capacity of the blood due to the loss, lower production, or destruction of erythrocytes is termed anemia. Hemorrhagic anemia, for example, occurs when bleeding from an external wound or internal ulcer reduces erythrocyte counts.
On the other...
Factors Affecting the Risk of Infection
The integrity and count of the white blood cells help the body resist pathogens and fight infection. When impaired, it reduces the body's resistance to pathogens. The acidic pH levels of the gastrointestinal, genitourinary tracts, and skin...
Development of Immunocompetence
The initial cells that migrate from the fetal thymus settle within the skin and epithelial tissues lining the mouth, digestive tract, and in females, the uterus and vagina. These cells, including skin-based dendritic cells, serve as antigen-presenting cells, playing a key role in T cell activation.
Subsequent T...

