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Updated: Dec 31, 2025

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Susceptibility to infection in early life: a growing role for human genetics
Alessandro Borghesi1,2, Antonio Marzollo3, Alexandre Michev4
1Neonatal Intensive Care Unit, Fondazione IRCCS Policlinico "San Matteo", Pavia, Italy. a.borghesi@smatteo.pv.it.
Insights
Infants
Area of Science:
- Immunology
- Genetics
- Pediatrics
Background:
- Neonatal immune immaturity explains infant infection vulnerability at a population level.
- Individual genetic variation significantly impacts infant susceptibility to specific infections.
- Inborn errors of immunity and common genetic variations play roles in infant infections.
Purpose of the Study:
- To reconcile the developmental view of early-life infections with a genetic model.
- To explore the role of genetic variation in infant infectious disease susceptibility.
- To discuss the age-dependent genetic architecture of human infectious diseases.
Main Methods:
- Review of existing literature on infant immunity and genetics.
- Analysis of the interplay between developmental immunology and genetic factors.
- Discussion of a unified theory of infectious diseases.
Main Results:
- Genetic variation, including single-gene disorders and common variations, contributes to infant infection susceptibility.
- A hypothetical age-dependent genetic model of infectious diseases is proposed.
- Reconciliation of genetic factors with the developmental view of early-life immunity is discussed.
Conclusions:
- Genetic factors are crucial in understanding individual differences in infant infection susceptibility.
- The proposed genetic model complements the developmental perspective on early-life infections.
- Further research into the genetic architecture of infant infectious diseases is warranted.
Abstract:
The unique vulnerability to infection of newborns and young infants is generally explained by a constellation of differences between early-life immune responses and immune responses at later ages, often referred to as neonatal immune immaturity. This developmental view, corroborated by robust evidence, offers a plausible, population-level description of the pathogenesis of life-threatening infectious diseases during the early-life period, but provides little explanation on the wide inter-individual differences in susceptibility and resistance to specific infections during the first months of life. In this context, the role of individual human genetic variation is increasingly recognized. A life-threatening infection caused by an opportunistic pathogen in an otherwise healthy infant likely represents the first manifestation of an inborn error of immunity. Single-gene disorders may also underlie common infections in full-term infants with no comorbidities or in preterm infants. In addition, there is increasing evidence of a possible role for common genetic variation in the pathogenesis of infection in preterm infants. Over the past years, a unified theory of infectious diseases emerged, supporting a hypothetical, age-dependent general model of genetic architecture of human infectious diseases. We discuss here how the proposed genetic model can be reconciled with the widely accepted developmental view of early-life infections in humans.
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