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Published on: September 29, 2019
S100-Alarmins Are Essential Pilots of Postnatal Innate Immune Adaptation
Dorothee Viemann1,2,3
1Department of Pediatric Pneumology, Allergy and Neonatology, Hannover Medical School, Hanover, Germany.
Insights
Newborn infants possess high levels of S100-alarmins, a protective mechanism that prevents excessive inflammation during early life. This finding redefines neonatal immune responses as a regulated adaptation, not immaturity.
Area of Science:
- Immunology
- Neonatal Physiology
- Molecular Biology
Background:
- Neonatal sepsis risk is linked to infants' limited inflammatory responses.
- This limited response is now understood as a crucial physiological adaptation for immune development.
- S100-alarmins are key molecular players in this neonatal immune regulation.
Purpose of the Study:
- To re-evaluate the concept of neonatal "immune immaturity".
- To explain the role of S100-alarmins in neonatal immune adaptation.
- To elucidate how S100-alarmins prevent hyperinflammation in newborns.
Main Methods:
- Review of recent evidence on neonatal immune mechanisms.
- Analysis of the physiological role of S100-alarmins in neonates.
- Exploration of epigenetic regulation in early life immunity.
Main Results:
- Neonatal immune responses are regulated by specific, transient mechanisms, not immaturity.
- High physiological levels of S100-alarmins protect infants from excessive inflammation.
- S100-alarmins facilitate a balanced interaction between the neonatal immune system and the environment.
Conclusions:
- Neonatal immune "immaturity" is a protective, regulated state mediated by S100-alarmins.
- S100-alarmins are essential for establishing immune homeostasis in newborns.
- Understanding S100-alarmins offers new perspectives on neonatal immune adaptation and health.
Abstract:
The restricted capacity of newborn infants to mount inflammatory responses toward microbial challenges has traditionally been linked to the high risk of septic diseases during the neonatal period. In recent years, substantial evidence has been provided that this characteristic of the neonatal immune system is actually a meaningful physiologic state that is based on specific transiently active cellular and molecular mechanisms and required for a favorable course of postnatal immune adaptation. The identification of physiologically high amounts of S100-alarmins in neonates has been one of the crucial pieces in the puzzle that contributed to the change of concept. In this context, innate immune immaturity could be redefined and assigned to the epigenetic silence of adult-like cell-autonomous regulation at the beginning of life. S100-alarmins represent an alternative age-specific mechanism of immune regulation that protects neonates from hyperinflammatory immune responses. Here, we summarize how infants are provided with S100-alarmins and why these allow an uneventful clash between the innate immune system and the extrauterine world. The mode of action of S100-alarmins is highlighted including their tuning functions at multiple levels for establishing a state of homeostasis with the environment in the newborn individual.
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