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Updated: May 17, 2026

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Normal neonatal microbiome variation in relation to environmental factors, infection and allergy
Juliette C Madan1, Shohreh F Farzan, Patricia L Hibberd
1Division of Neonatology, Department of Pediatrics, Dartmouth Hitchcock Medical Center, Lebanon, NH 03753, USA. Juliette.C.Madan@Hitchcock.Org
Insights
The infant gut microbiome, established at birth, is shaped by postnatal exposures, not genetics. This early microbial colonization influences lifelong health, immune programming, and risks for allergy and infection.
Area of Science:
- Microbiology
- Immunology
- Neonatal Health
Background:
- Infant gut microbiome establishment begins at birth.
- The neonatal period is critical for lifelong health and disease susceptibility.
- Culture-independent technologies are advancing understanding of infant gut microbiome dynamics.
Purpose of the Study:
- To understand the complex relationship between infant gut bacteria and health parameters.
- To investigate the foundational role of the neonatal microbiome in lifelong health.
- To explore the impact of exposures on the infant microbiome and immune response.
Main Methods:
- Utilizing state-of-the-art culture-independent technologies.
- Analyzing the effects of multiple exposures on the developing infant gut microbiome.
- Correlating microbiome composition with immune response and clinical outcomes.
Main Results:
- Postnatal exposures significantly influence infant microbial colonization, with genetics playing a minor role.
- Delivery mode, diet, antibiotics, and toxicants impact the neonatal gut microbiome.
- Microbiome acquisition in infancy is a key determinant of immune programming, infection, and allergy risk.
Conclusions:
- Neonatal microbiome research reveals substantial information on immune programming.
- Early life exposures can shape the microbiome, influencing major diseases like allergy and infection.
Purpose Of Review:
Bacterial colonization of the infant intestinal tract begins at birth. We are at the forefront of understanding complex relationships between bacteria and multiple parameters of health of the developing infant. Moreover, the establishment of the microbiome in the critical neonatal period is potentially foundational for lifelong health and disease susceptibility. Recent studies utilizing state-of-the-art culture-independent technologies have begun to increase our knowledge about the gut microbiome in infancy, the impact of multiple exposures, and its effects on immune response and clinical outcomes such as allergy and infection.
Recent Findings:
Postnatal exposures play a central role in the complex interactions between the nearly blank canvas of the neonatal intestine, whereas genetic factors do not appear to be a major factor. Infant microbial colonization is affected by delivery mode, dietary exposures, antibiotic exposure, and environmental toxicants. Successive microbiome acquisition in infancy is likely a determinant of early immune programming, subsequent infection, and allergy risk.
Summary:
The novel investigation of the neonatal microbiome is beginning to unearth substantial information, with a focus on immune programming that coevolves with the developing microbiome early in life. Several exposures common to neonatal and infant populations could exert pressure on the development of the microbiome and major diseases including allergy and infection in large populations.
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