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Modulation of PBMC-decay accelerating factor (PBMC-DAF) and cytokines in rheumatoid arthritis
Roma Pahwa1, Uma Kumar2, Nibhriti Das3,4
1Department of Biochemistry, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India. rpahwa@ucdavis.edu.com.
Insights
Declined expression of Decay accelerating factor (DAF) in rheumatoid arthritis (RA) patients
Area of Science:
- Immunology
- Rheumatology
- Complement System Biology
Background:
- Rheumatoid arthritis (RA) pathophysiology involves abnormal complement regulatory proteins and cytokines.
- Decay accelerating factor (DAF), a complement regulatory protein, is increasingly recognized for its role.
- Immune mechanisms are interconnected, suggesting peripheral blood mononuclear cells (PBMCs) involvement in systemic RA.
Purpose of the Study:
- To investigate the modulation and significance of PBMC-DAF and associated cytokines in RA.
- To explore the relationship between DAF, cytokines (IFN-γ, IL-17A, IL-10), and RA disease activity.
- To examine the in vitro effects of key cytokines on DAF expression in PBMCs.
Main Methods:
- Recruited 75 RA patients and 75 healthy controls.
- Quantified DAF and cytokine (IFN-γ, IL-17A, IL-10) expression in PBMCs (mRNA and surface levels).
- Performed correlation analyses between DAF, cytokines, and disease activity; conducted in vitro cytokine treatments.
Main Results:
- PBMC-DAF expression was significantly lower in RA patients, correlating negatively with disease activity.
- IFN-γ levels decreased in RA patients, positively correlating with DAF and negatively with disease activity.
- IL-17A and IL-10 levels were elevated in RA patients, correlating positively with disease activity and negatively with DAF.
Conclusions:
- Reduced PBMC-DAF expression is a contributing factor in RA manifestations.
- The cytokine milieu in RA negatively impacts DAF expression.
- Novel insights into the complement-cytokine axis in RA pathophysiology were revealed.
Abstract:
Studies have suggested that abnormal expression of complement regulatory proteins and cytokines contribute significantly to the path-physiology of rheumatoid arthritis. In this context, Decay accelerating factor (DAF) a complement regulatory protein is gaining increased attention. With the notion that immune effecter mechanisms are all interlinked and circulating peripheral blood mononuclear cells (PBMCs) should have a role in a systemic disease like rheumatoid arthritis, we studied the modulation and significance of PBMC-DAF and cytokines in RA. Seventy-five RA patients and 75 healthy controls were recruited. Expression of DAF and cytokines (IFN-γ, IL-17A and IL-10) in the PBMCs of patients and controls was determined. Correlations among DAF, cytokines, and disease activity were evaluated by standard statistical methods. The effect of IFN-γ, IL-17A, and IL-10 on the expression of DAF in patients and controls was studied in vitro. Expression of PBMC-DAF declined in patients both at mRNA and surface level and correlated negatively with the disease activity. Expression of IFN-γ also declined in patients but correlated positively with DAF and negatively with disease activity. Expression of IL-17A and IL-10 was higher in patients. The levels correlated positively with disease activity and negatively with DAF both in patients and controls. In vitro studies indicated that IFN-γ up-regulated DAF expression in PBMCs, whereas IL-17A and IL-10 had negative effect on the same. The decline in the PBMC-DAF is a contributing factor in manifestations of RA. Cytokine environment contributes to this decline. These findings brought novel insights into the complement-cytokine axis in the path-physiology of RA.
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