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Review
. 2015 Oct;15(5):314-23; quiz E1-2.
doi: 10.1097/ANC.0000000000000191.

Early Life Experience and Gut Microbiome: The Brain-Gut-Microbiota Signaling System

Affiliations
Review

Early Life Experience and Gut Microbiome: The Brain-Gut-Microbiota Signaling System

Xiaomei Cong et al. Adv Neonatal Care. 2015 Oct.

Abstract

Background: Over the past decades, advances in neonatal care have led to substantial increases in survival among preterm infants. With these gains, recent concerns have focused on increases in neurodevelopment morbidity related to the interplay between stressful early life experiences and the immature neuroimmune systems. This interplay between these complex mechanisms is often described as the brain-gut signaling system. The role of the gut microbiome and the brain-gut signaling system have been found to be remarkably related to both short- and long-term stress and health. Recent evidence supports that microbial species, ligands, and/or products within the developing intestine play a key role in early programming of the central nervous system and regulation of the intestinal innate immunity.

Purpose: The purpose of this state-of-the-science review is to explore the supporting evidence demonstrating the importance of the brain-gut-microbiota axis in regulation of early life experience. We also discuss the role of gut microbiome in modulating stress and pain responses in high-risk infants. A conceptual framework has been developed to illustrate the regulation mechanisms involved in early life experience.

Conclusions: The science in this area is just beginning to be uncovered; having a fundamental understanding of these relationships will be important as new discoveries continue to change our thinking, leading potentially to changes in practice and targeted interventions.

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Conflict of interest statement

Conflicts of Interest

There are no declared conflicts of interest for any of this study’s authors.

Figures

Figure 1
Figure 1
Regulation of early life stress by the brain-gut-microbiota axis. HRV – heart rate variability system; ENS – enteric nervous system

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References

    1. Blencowe H, Cousens S, Oestergaard MZ, et al. National, regional, and worldwide estimates of preterm birth rates in the year 2010 with time trends since 1990 for selected countries: a systematic analysis and implications. Lancet. 2012 Jun 9;379(9832):2162–2172. - PubMed
    1. Stoll BJ, Hansen NI, Bell EF, et al. Neonatal outcomes of extremely preterm infants from the NICHD Neonatal Research Network. Pediatrics. 2010 Sep;126(3):443–456. - PMC - PubMed
    1. Mwaniki MK, Atieno M, Lawn JE, Newton CR. Long-term neurodevelopmental outcomes after intrauterine and neonatal insults: a systematic review. Lancet. 2012 Feb 4;379(9814):445–452. - PMC - PubMed
    1. Smith GC, Gutovich J, Smyser C, et al. Neonatal intensive care unit stress is associated with brain development in preterm infants. Annals of neurology. 2011 Oct;70(4):541–549. - PMC - PubMed
    1. Morken NH. Preterm birth: new data on a global health priority. Lancet. 2012 Jun 9;379(9832):2128–2130. - PubMed

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