Dexamethasone inhibits maturation and alters function of monocyte-derived dendritic cells from cord blood

Elsie S Mainali1, Takeshi Kikuchi, John G Tew

  • 1Department of Pediatrics, VA Commomnwealth University Health System, Richmond, VA 23298, USA. emainali@hsc.vsc.edu

Pediatric Research
|March 19, 2005
PubMed

Insights

Neonatal dendritic cells (DCs) are uniquely sensitive to dexamethasone (Dx) immunosuppression. This sensitivity may increase infants' risk for infections and atopic diseases.

Area of Science:

  • Immunology
  • Neonatal immunology

Background:

  • Critically ill infants receive dexamethasone (Dx) for inflammation and organ function.
  • Neonatal immune systems are immature, potentially making neonatal dendritic cells (DCs) more susceptible to glucocorticoid-induced immunosuppression.

Purpose of the Study:

  • To compare the effects of Dx on monocyte-derived DCs from cord blood (CB) and adult blood (AB).
  • To investigate the impact of Dx on DC phenotype, function, and T cell stimulation in neonates versus adults.

Main Methods:

  • Monocyte-derived DCs were generated from cord blood (CB) and adult blood (AB).
  • DCs were treated with dexamethasone (Dx).
  • Phenotypic markers (CD1a, CD83, CD14), endocytic activity, cytokine production (IL-10, IL-12), and T cell proliferation were analyzed.

Main Results:

  • Dx decreased CD1a on both CB and AB DCs.
  • CB DCs showed decreased CD83, increased CD14, and sustained/enhanced endocytic activity, unlike mature AB DCs.
  • Dx treatment induced a greater shift towards Th2 (IL-10) and away from Th1 (IL-12) cytokines in CB DCs compared to AB DCs.
  • Dx more potently inhibited DC-induced T cell proliferation in CB DCs.

Conclusions:

  • Neonatal DCs exhibit heightened sensitivity to the immunosuppressive effects of Dx.
  • Altered DC phenotype, function, and cytokine profiles in neonates may increase susceptibility to infections and atopic diseases.