Systemic Lupus Erythematosus (SLE) is a chronic invalidating chronic condition, with potential articular, cutaneous, renal, and neurologic involvement. Its pathophysiology is complex, and involves genetic, environmental and hormonal factors, leading to tolerance rupture. Among regulatory cells, Myeloid Derived Suppressor Cells (MDSCs) have been described as being increased during SLE, furthermore during flares. MDSCs are defined phenotypically as being HLA-DR-CD3-CD19-CD33+CD11b+, and either CD14+ (Monocytic MDSCs), CD15+ (Granulocytic MDSCs), or CD14-CD15- (Early-stage MDSCs). However, data regarding their immunosuppressive properties are conflicting, some studies identifying regulatory properties, while other have demonstrated a pro-inflammatory involvement through the induction of Th17 lymphocytes. The objectives of this study is to assess the involvement of MDSC in SLE through accurate phenotypical and functional assessment, as well as characterizing their immunometabolic profile, and to identify innovative therapeutic strategies.
Systemic Lupus Erythematosus (SLE) is a chronic invalidating chronic condition, with potential articular, cutaneous, renal, and neurologic involvement. Its pathophysiology is complex, and involves genetic, environmental and hormonal factors, leading to tolerance rupture. Among regulatory cells, Myeloid Derived Suppressor Cells (MDSCs) have been described as being increased during SLE, furthermore during flares. MDSCs are defined phenotypically as being HLA-DR-CD3-CD19-CD33+CD11b+, and either CD14+ (Monocytic MDSCs), CD15+ (Granulocytic MDSCs), or CD14-CD15- (Early-stage MDSCs). However, data regarding their immunosuppressive properties are conflicting, some studies identifying regulatory properties, while other have demonstrated a pro-inflammatory involvement through the induction of Th17 lymphocytes. To gain insight into the involvement of MDSC in SLE, both deep phenotypical characterization of MDSC and functional assessment will be performed, as well as immunometabolic characterization. This data will be correlated to the clinical presentation and activity of SLE.
Study Type
OBSERVATIONAL
Enrollment
80
Thomas Moulinet
Vandœuvre-lès-Nancy, Lorraine, France
MDSC percentage among total PBMC
Correlation between MDSC percentage among total PBMC and Clinical activity of SLE (SLEDAI score)
Time frame: Baseline
MDSC percentage among total PBMC
Correlation between MDSC percentage among total PBMC and Clinical activity of SLE (SLEDAI score)
Time frame: 3 months
MDSC percentage among total PBMC
Correlation between MDSC percentage among total PBMC and Clinical activity of SLE (SLEDAI score)
Time frame: 6 months
MDSC percentage among total PBMC
Correlation between MDSC percentage among total PBMC and Clinical activity of SLE (SLEDAI score)
Time frame: Between 9 and 24 months if patient experience relapse during follow-up
Serum cytokine levels
pro and anti-inflammatory cytokine levels in serum
Time frame: Baseline
Serum cytokine levels
pro and anti-inflammatory cytokine levels in serum
Time frame: 3 months
Serum cytokine levels
pro and anti-inflammatory cytokine levels in serum
Time frame: 6 months
Serum cytokine levels
pro and anti-inflammatory cytokine levels in serum
Time frame: Between 9 and 24 months if patient experience relapse during follow-up
MDSC inflammasome activation
flow cytometry assessment of inflammasome activation within MDSCs
Time frame: Baseline
MDSC inflammasome activation
flow cytometry assessment of inflammasome activation within MDSCs
Time frame: 3 months
MDSC inflammasome activation
flow cytometry assessment of inflammasome activation within MDSCs
Time frame: 6 months
MDSC inflammasome activation
flow cytometry assessment of inflammasome activation within MDSCs
Time frame: Between 9 and 24 months if patient experience relapse during follow-up
Immunometabolic profile
flow cytometry assessment of metabolic profile of MDSCs
Time frame: Baseline
Immunometabolic profile
flow cytometry assessment of metabolic profile of MDSCs
Time frame: 3 months
Immunometabolic profile
flow cytometry assessment of metabolic profile of MDSCs
Time frame: 6 months
Immunometabolic profile
flow cytometry assessment of metabolic profile of MDSCs
Time frame: Between 9 and 24 months if patient experience relapse during follow-up
MDSC subpopulations percentage
flow cytometry assessment of known (Monocytic, Granulocytic, Early-stage) and unknow subpopulations of MDSC
Time frame: Baseline
MDSC subpopulations percentage
flow cytometry assessment of known (Monocytic, Granulocytic, Early-stage) and unknow subpopulations of MDSC
Time frame: 3 months
MDSC subpopulations percentage
flow cytometry assessment of known (Monocytic, Granulocytic, Early-stage) and unknow subpopulations of MDSC
Time frame: 6 months
MDSC subpopulations percentage
flow cytometry assessment of known (Monocytic, Granulocytic, Early-stage) and unknow subpopulations of MDSC
Time frame: Between 9 and 24 months if patient experience relapse during follow-up
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.