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Published on: August 12, 2020
Effects of bilirubin on neutrophil responses in newborn infants
Barry Weinberger1, Faith E Archer, Suganya Kathiravan
1Division of Neonatology, Department of Pediatrics, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School, New Brunswick, NJ 08903, USA.
Insights
Bilirubin, a substance found in jaundiced infants, may protect newborns by reducing inflammation and boosting antioxidant defenses in immune cells. Further research is needed to determine optimal bilirubin levels for these protective effects.
Area of Science:
- Neonatal Immunology
- Molecular Biology
- Biochemistry
Background:
- Newborns are vulnerable to inflammatory diseases due to immature immune cell clearance.
- Bilirubin possesses antioxidant properties, suggesting potential immunomodulatory roles in jaundiced infants.
Purpose of the Study:
- To investigate bilirubin's effects on antioxidant gene expression and inflammatory protein production in neonatal neutrophils.
- To test the hypothesis that bilirubin enhances antioxidant gene expression and reduces inflammatory protein synthesis.
Main Methods:
- Neutrophils isolated from umbilical cord blood and adult blood.
- Cells treated with varying concentrations of bilirubin, with or without lipopolysaccharide (LPS).
- Gene expression of antioxidant enzymes (SOD, HO-1) and inflammatory enzymes (NOX-1, COX-2) analyzed by PCR; cytokine production measured by flow cytometry.
Main Results:
- Bilirubin upregulated antioxidant genes (SOD, HO-1) and modulated inflammatory cytokine production.
- While bilirubin increased basal IL-8 and IL-1β, it downregulated LPS-induced IL-8 and MIP-1β.
- Unexpectedly, bilirubin increased NOX-1 and COX-2 gene expression in activated and resting cells, respectively.
Conclusions:
- Bilirubin appears to suppress inflammation and enhance antioxidant enzyme production in neonatal neutrophils.
- The observed increases in NOX-1 and COX-2 warrant further investigation regarding their physiological impact and potential mitigation by antioxidant activity.
- Defining bilirubin levels that maximize protective benefits while minimizing toxicity is crucial.
Background:
Newborns are susceptible to inflammatory diseases due to defects in clearing activated immune cells from tissues. Therefore, mechanisms have likely evolved to protect neonates from leukocyte-mediated cytotoxicity. Bilirubin has antioxidant activity, and it is possible that it also exerts effects on cellular immune responses in jaundiced infants.
Objectives:
We hypothesize that bilirubin increases expression of antioxidant genes and decreases production of inflammatory proteins in neonatal neutrophils.
Methods:
Neutrophils were isolated from umbilical cord blood, and from adults for comparison, and treated with bilirubin (10-300 µmol/l, equivalent to unbound bilirubin 3-40 nmol/l), in the presence or absence of lipopolysaccharide (LPS). Expression of genes for antioxidant enzymes [superoxide dismutase (SOD), heme-oxygenase-1 (HO-1)] and heme-dependent enzymes involved in inflammation [NADPH oxidase-1 (NOX-1), cyclooxygenase-2 (COX-2)] was measured by PCR. Inflammatory cytokines were measured by bead array analysis using flow cytometry.
Results:
We found that LPS induced production of interleukin (IL)-8, IL-1β, and macrophage inhibitory protein-1β (MIP-1β). Bilirubin increased basal production of IL-8 and IL-1β, but downregulated LPS-induced generation of IL-8 and MIP-1β. It also upregulated SOD and HO-1 gene expression. We observed an unexpected bilirubin-induced increase in gene expression of NOX-1 in LPS-activated cells, and of COX-2 in both resting and activated cells.
Conclusions:
These findings suggest that bilirubin suppresses inflammation and increases antioxidant enzyme generation in activated neonatal neutrophils. The unexpected increases in NOX-1 and COX-2 expression may represent an early response, with physiologic effects mitigated by increased antioxidant activity. Further studies will be needed to define levels of bilirubin that optimize its protective effects, while minimizing potential inflammatory toxicity.
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