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Updated: Nov 6, 2025

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
COVID-19 and the neonatal microbiome: will the pandemic cost infants their microbes?
Joann Romano-Keeler1, Jilei Zhang2, Jun Sun2,3,4
1Division of Neonatology, Department of Pediatrics, University of Illinois at Chicago, Chicago, IL, USA.
Insights
The COVID-19 pandemic may impact the infant microbiome, affecting long-term health. Early pandemic care changes and altered exposures can disrupt crucial early-life microbial colonization, potentially influencing children's health outcomes.
Area of Science:
- Microbiology
- Pediatrics
- Public Health
Background:
- The COVID-19 pandemic has introduced unforeseen health complications in children, beyond direct infection.
- Early pandemic responses included increased C-sections and altered infant care practices, potentially affecting the newborn microbiome.
- Changes in hygiene, social interaction, and travel also influence early-life microbial colonization.
Purpose of the Study:
- To discuss the potential impact of the COVID-19 pandemic on the inheritance and assembly of the newborn microbiome.
- To explore how pandemic-related shifts in perinatal care and early life exposures may affect microbial colonization.
- To highlight the need for research into the role of the infant microbiome in COVID-19 susceptibility and severity.
Main Methods:
- This commentary synthesizes existing literature and expert opinion.
- It reviews changes in obstetric and neonatal care during the early COVID-19 pandemic.
- It discusses the influence of altered infant environmental exposures on microbiome development.
Main Results:
- Pandemic-related changes in perinatal care (e.g., C-sections, restricted breastfeeding/skin-to-skin) may negatively impact initial microbial colonization.
- Increased hygiene, reduced social interaction, and decreased travel alter environmental exposures crucial for gut microbiome assembly.
- The long-term consequences of these disruptions on children's health and COVID-19 susceptibility are currently unknown.
Conclusions:
- The COVID-19 pandemic's effects on the neonatal microbiome warrant further investigation.
- Balancing infection control with strategies promoting microbial diversity is crucial for optimal infant health.
- Understanding the infant microbiome's role in COVID-19 may inform future public health strategies for children.
Abstract:
Mortality and morbidity from SARS-CoV2 (COVID-19) infections in children remains low, including an exceedingly low rate of horizontal and vertical transmission. However, unforeseen complications to childhood health have emerged secondary to the pandemic. Few studies to date have examined unintended complications of the pandemic in newborns and infants. In this Commentary, we discuss the impact that COVID-19 may have on inheritance of the newborn microbiome and its assembly throughout the first years of life. In the early stages of the pandemic when vertical transmission of COVID-19 was poorly understood, several studies reported increased rates of C-sections in COVID-19 positive women. Initial recommendations discouraged COVID-19 positive mothers from breastfeeding and participating in skin-to-skin care, advising them to isolate during their window of infectivity. These shifts in perinatal care can adversely impact microbial colonization during the first 1000 days of life. While obstetrical and neonatal management have evolved to reflect our current knowledge of perinatal transmission, we are observing other changes in early life exposures of infants, including increased attention to hygiene, fewer social interactions, and decreased global travel, all of which are major drivers of early-life gut colonization. Composition of the gut microbiota in adults directly impacts severity of infection, suggesting a role of microbial communities in modulating immune responses to COVID-19. Conversely, the role of the intestinal microbiome in susceptibility and severity of COVID-19 in newborns and children remains unknown. The onset of adulthood diseases is related to the establishment of a healthy gut microbiome during childhood. As we continue to define COVID-19 biology, further research is necessary to understand how acquisition of the neonatal microbiome is affected by the pandemic. Furthermore, infection control measures must be balanced with strategies that promote microbial diversity to impart optimal health outcomes and potentially modulate susceptibility of children to COVID-19.
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