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Updated: May 5, 2026

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Immunosuppressive CD71+ erythroid cells compromise neonatal host defence against infection
Shokrollah Elahi1, James M Ertelt, Jeremy M Kinder
1Division of Infectious Diseases and Perinatal Institute, Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, Ohio 45229, USA.
Insights
Newborns
Area of Science:
- Immunology
- Neonatal development
- Host defense mechanisms
Background:
- Neonatal infants exhibit increased susceptibility to infections.
- Immune cell immaturity is a primary explanation for compromised neonatal immunity.
- Variability in immune responses necessitates a unified explanation for neonatal hyporesponsiveness.
Purpose of the Study:
- To investigate the immunosuppressive properties of CD71(+) erythroid cells in neonates.
- To elucidate the role of arginase-2 in neonatal immunosuppression.
- To understand the dual function of CD71(+) cells in infection susceptibility and protection.
Main Methods:
- Co-culture of adult and neonatal immune cells.
- Transfer of adult cells into neonatal mice.
- Molecular inhibition of arginase-2 and L-arginine supplementation.
- Ablation of CD71(+) cells in neonatal mice.
- Studies in germ-free and antimicrobial-treated mice.
Main Results:
- Physiologically enriched CD71(+) erythroid cells in neonates possess distinct immunosuppressive properties.
- Neonatal CD71(+) cells express arginase-2, crucial for immunosuppression; its inhibition or L-arginine supplementation reverses this effect.
- Ablation or reduction of CD71(+) cells in neonates correlates with decreased immunosuppression and increased resistance to pathogens like Listeria monocytogenes and Escherichia coli.
- CD71(+) cells protect against excessive intestinal inflammation caused by commensal microbial colonization post-parturition.
Conclusions:
- Neonatal susceptibility to infection may not solely stem from intrinsic immune cell defects.
- CD71(+) erythroid cells play a critical role in balancing immune responses in neonates, mitigating inflammation from microbial colonization.
- These findings suggest a developmental need for immunosuppression in neonates, impacting strategies for enhancing host defense.
Abstract:
Newborn infants are highly susceptible to infection. This defect in host defence has generally been ascribed to the immaturity of neonatal immune cells; however, the degree of hyporesponsiveness is highly variable and depends on the stimulation conditions. These discordant responses illustrate the need for a more unified explanation for why immunity is compromised in neonates. Here we show that physiologically enriched CD71(+) erythroid cells in neonatal mice and human cord blood have distinctive immunosuppressive properties. The production of innate immune protective cytokines by adult cells is diminished after transfer to neonatal mice or after co-culture with neonatal splenocytes. Neonatal CD71(+) cells express the enzyme arginase-2, and arginase activity is essential for the immunosuppressive properties of these cells because molecular inhibition of this enzyme or supplementation with L-arginine overrides immunosuppression. In addition, the ablation of CD71(+) cells in neonatal mice, or the decline in number of these cells as postnatal development progresses parallels the loss of suppression, and restored resistance to the perinatal pathogens Listeria monocytogenes and Escherichia coli. However, CD71(+) cell-mediated susceptibility to infection is counterbalanced by CD71(+) cell-mediated protection against aberrant immune cell activation in the intestine, where colonization with commensal microorganisms occurs swiftly after parturition. Conversely, circumventing such colonization by using antimicrobials or gnotobiotic germ-free mice overrides these protective benefits. Thus, CD71(+) cells quench the excessive inflammation induced by abrupt colonization with commensal microorganisms after parturition. This finding challenges the idea that the susceptibility of neonates to infection reflects immune-cell-intrinsic defects and instead highlights processes that are developmentally more essential and inadvertently mitigate innate immune protection. We anticipate that these results will spark renewed investigation into the need for immunosuppression in neonates, as well as improved strategies for augmenting host defence in this vulnerable population.
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