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GM-CSF production by CD4+ T cells in MS patients: regulation by regulatory T cells and vitamin D
E Peelen1, A-H Muris1, J Damoiseaux2
1School for Mental Health and Neuroscience, Maastricht University Medical Center, Maastricht, The Netherlands; Academic MS Center Limburg, Department of Neurology, Orbis Medical Center, Sittard, The Netherlands; Department of Internal Medicine, Division of Clinical and Experimental Immunology, Maastricht University Medical Center, Maastricht, The Netherlands.
Background/Objective:
Data from animal models of MS suggest that GM-CSF(+)CD4(+)T cells are pathogenic cells. Therefore, GM-CSF production by CD4(+)T cells of MS patients and their susceptibility to regulatory mechanisms were investigated.
Methods:
Intracellular flowcytometry was performed to determine the GM-CSF(+)CD4(+)T cell fraction in PBMC and CSF of MS patients and controls. The effect of regulatory T cells (Tregs) on GM-CSF production by CD4(+)T cells was studied in MS patients using a proliferation-suppression assay. Finally, GM-CSF(+)CD4(+)T cell fraction and GM-CSF protein levels in supernatant were assessed in anti-CD3-stimulated CD4(+)T cell cultures derived from healthy controls and MS patients, in the presence or absence of the active vitamin D metabolite calcitriol.
Results:
The GM-CSF(+)CD4(+)T cell fraction in the peripheral blood did not differ between controls and MS patients. This T cell population could also be detected in the CSF of both subjects with MS as well as subjects with another diagnosis. In the CSF, it comprised a significant fraction of the T cell population. Upon in vitro stimulation of PBMC with anti-CD3 antibody, no differences were observed in GM-CSF(+)CD4(+)T cell frequencies. GM-CSF secretion was susceptible to regulation by Treg and vitamin D. Suppression of GM-CSF secretion by vitamin D was reduced in MS patients.
Conclusions:
Our study showed no elevation in GM-CSF(+)CD4(+)T cell fractions in MS patients compared to controls. Furthermore, GM-CSF secretion was prone to regulation by Treg and vitamin D, the latter being less effective in MS patients.
Insights
Granulocyte-macrophage colony-stimulating factor (GM-CSF)(+)CD4(+)T cells are not elevated in multiple sclerosis (MS) patients. However, vitamin D
Area of Science:
- Immunology
- Neuroimmunology
- T cell biology
Background:
- Animal models suggest GM-CSF(+)CD4(+)T cells are pathogenic in MS.
- Investigating these cells in MS patients is crucial for understanding disease mechanisms.
Purpose of the Study:
- To determine GM-CSF production by CD4(+)T cells in MS patients.
- To assess the susceptibility of these cells to regulatory mechanisms.
Main Methods:
- Intracellular flow cytometry to quantify GM-CSF(+)CD4(+)T cells in peripheral blood and CSF.
- Proliferation-suppression assays to evaluate regulatory T cell (Treg) effects.
- Assessing GM-CSF secretion in response to vitamin D (calcitriol).
Main Results:
- No significant difference in GM-CSF(+)CD4(+)T cell fractions in peripheral blood between MS patients and controls.
- GM-CSF(+)CD4(+)T cells were present in CSF of both MS and non-MS subjects.
- GM-CSF secretion was regulated by Tregs and vitamin D, but vitamin D's suppressive effect was reduced in MS patients.
Conclusions:
- GM-CSF(+)CD4(+)T cell fractions are not elevated in MS patients.
- While Tregs and vitamin D regulate GM-CSF secretion, vitamin D's efficacy is diminished in MS patients.
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