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Generation of Immature, Mature and Tolerogenic Dendritic Cells with Differing Metabolic Phenotypes
Published on: June 22, 2016
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
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.
Abstract:
Critically ill infants are treated with dexamethasone (Dx) and other glucocorticoids to reduce inflammation and to promote lung and cardiac function. The neonatal immune system is immature, so neonatal dendritic cells (DCs) might be especially sensitive to glucocorticoid-mediated immunosuppression. To test this, we compared Dx treatment of monocyte-derived DCs from cord (CB) and adult blood (AB). Dx decreased CD1a levels on both AB and CB DCs. CB-treated cells also exhibited decreased expression of CD83 and increased expression of CD14, alterations not observed in AB DCs. Characteristic immature endocytic activity was sustained and enhanced in Dx-treated CB DCs, whereas AB DCs matured normally. Maintenance of endocytosis corresponded with CD14 expression. Dx markedly increased CB DC IL-10, a T cell helper 2 (Th2)-preferential cytokine, while reducing IL-12, a counterbalancing Th1 cytokine. AB DCs were also affected, but increases in IL-10 and decreases in IL-12 were more modest. Dx treatment also inhibited DC-induced T cell proliferation, but CB DCs were inhibited more. In short, neonatal DCs seemed to be especially sensitive to the immunosuppressive effects of Dx as indicated by altered phenotype, endocytic function, ability to stimulate T cells, and cytokine shift favoring Th2. These alterations in DC function are consistent with an increased risk for certain infections and atopic diseases.
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