Lupus Nephritis is one of the most severe organ manifestations of systemic lupus erythematosus and represents a major cause of morbidity, chronic kidney disease, and long-term mortality. Despite significant advances in immunosuppressive therapies, a substantial proportion of patients fail to achieve sustained renal remission or progress to end-stage renal disease, highlighting the need for improved understanding of disease mechanisms and more reliable biomarkers for disease monitoring and therapeutic response
In recent years, growing evidence has emphasized the role of innate immune dysregulation in the pathogenesis of lupus nephritis, particularly the involvement of neutrophils and aberrant cell death pathways. Among these mechanisms, neutrophil extracellular traps (NETs) have emerged as key mediators of autoimmune-driven inflammation. NETs are extracellular chromatin networks composed of DNA, histones, and granular proteins released by activated neutrophils during NETosis. Although originally described as antimicrobial defense structures, excessive NET formation and impaired degradation have been strongly implicated in systemic autoimmunity. In lupus nephritis, NETs contribute to renal injury through multiple mechanisms, including exposure of nuclear autoantigens, amplification of type I interferon signaling, activation of complement pathways, and direct cytotoxic effects on endothelial cells and podocytes. Moreover, impaired NET clearance has been demonstrated in SLE, further promoting persistent immune activation and renal inflammation. Recent studies have also suggested that circulating NETs levels are elevated in patients with renal involvement and may correlate with disease activity and outcomes. However, most available data are cross-sectional, and limited evidence exists regarding the dynamic changes of NETs in response to therapy. Therefore, evaluating NETs before and after treatment may provide important insights into their role as predictive and prognostic biomarkers and potential therapeutic targets in lupus nephritis.
Study Type
OBSERVATIONAL
Enrollment
100
Serum sample should be collected into a serum separator tube. After clotting for 2 hours at room temperature or overnight at 4°C, and then centrifuging at 1000 × g for 20 minutes. Assay freshly prepared serum immediately or store samples in aliquot at -20°C or -80°C for later use. Avoid repeated freeze-thaw cycles.
The primary outcome of the study is the change in circulating neutrophil extracellular traps (NETs) levels, in patients with Lupus Nephritis
The primary outcome of the study is the change in circulating neutrophil extracellular traps (NETs) levels, in patients with Lupus Nephritis. NETs levels will be assessed at baseline (prior to initiation of therapy), and at 6 months following treatment
Time frame: 2 years
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