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Immune and metabolic shifts during neonatal development reprogram liver identity and function
- Source :
- Journal of hepatology. 69(6)
- Publication Year :
- 2018
-
Abstract
- Background & Aims The liver is the main hematopoietic site in embryos, becoming a crucial organ in both immunity and metabolism in adults. However, how the liver adapts both the immune system and enzymatic profile to challenges in the postnatal period remains elusive. We aimed to identify the mechanisms underlying this adaptation. Methods We analyzed liver samples from mice on day 0 after birth until adulthood. Human biopsies from newborns and adults were also examined. Liver immune cells were phenotyped using mass cytometry (CyTOF) and expression of several genes belonging to immune and metabolic pathways were measured. Mortality rate, bacteremia and hepatic bacterial retention after E. coli challenge were analyzed using intravital and in vitro approaches. In a set of experiments, mice were prematurely weaned and the impact on gene expression of metabolic pathways was evaluated. Results Human and mouse newborns have a sharply different hepatic cellular composition and arrangement compared to adults. We also found that myeloid cells and immature B cells primarily compose the neonatal hepatic immune system. Although neonatal mice were more susceptible to infections, a rapid evolution to an efficient immune response was observed. Concomitantly, newborns displayed a reduction of several macronutrient metabolic functions and the normal expression level of enzymes belonging to lipid and carbohydrate metabolism was reached around the weaning period. Interestingly, early weaning profoundly disturbed the expression of several hepatic metabolic pathways, providing novel insights into how dietary schemes affect the metabolic maturation of the liver. Conclusion In newborns, the immune and metabolic profiles of the liver are dramatically different to those of the adult liver, which can be explained by the differences in the liver cell repertoire and phenotype. Also, dietary and antigen cues may be crucial to guide liver development during the postnatal phase. Lay summary Newborns face major challenges in the extra-uterine life. In fact, organs need to modify their cellular composition and gene expression profile in order to adapt to changes in both microbiota and diet throughout life. The liver is interposed between the gastrointestinal system and the systemic circulation, being the destination of all macronutrients and microbial products from the gut. Therefore, it is expected that delicately balanced mechanisms govern the transformation of a neonatal liver to a key organ in adults.
- Subjects :
- 0301 basic medicine
Adult
Biopsy
Physiology
Weaning
Carbohydrate metabolism
Biology
03 medical and health sciences
Mice
Immune system
Antigen
Immunity
Gene expression
Animals
Humans
Escherichia coli Infections
Myeloid Progenitor Cells
Phagocytes
Hepatology
Liver cell
Precursor Cells, B-Lymphoid
Infant, Newborn
Lipid Metabolism
Phenotype
Mice, Inbred C57BL
Haematopoiesis
030104 developmental biology
Animals, Newborn
Liver
Hepatocytes
Metabolome
Female
Nutritive Value
Subjects
Details
- ISSN :
- 16000641
- Volume :
- 69
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- Journal of hepatology
- Accession number :
- edsair.doi.dedup.....3a64d75b884c06783359eccfae29beba