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  • Circulating neutrophil extracellular trap remnants as a biomarker to predict outcomes in lupus nephritis.

Circulating neutrophil extracellular trap remnants as a biomarker to predict outcomes in lupus nephritis.

Lupus science & medicine (2024-01-05)
Laura Patricia Whittall-Garcia, Farnoosh Naderinabi, Dafna D Gladman, Murray Urowitz, Zahi Touma, Ana Konvalinka, Joan Wither
ANOTACE

To determine if the serum levels of neutrophil extracellular trap (NET) remnants (Elastase-DNA and HMGB1-DNA complexes) at the time of a lupus nephritis (LN) flare predict renal outcomes in the following 24 months. This was a retrospective study performed in prospectively followed cohorts. The study included two cohorts: an exploratory cohort to assess the association between NET remnant levels and the presence of active LN, and a separate LN cohort to determine the utility of NET remnants to predict renal outcomes over the subsequent 24 months. Ninety-two individuals were included in the exploratory cohort (49 active systemic lupus erythematosus (SLE), 23 inactive SLE and 20 healthy controls (HC)). NET remnants were significantly higher in patients with SLE patients compared with HC (p<0.0001 for both complexes) and those with active LN (36%) had significantly higher levels of NET remnants compared with active SLE without LN (Elastase-DNA: p=0.03; HMGB1-DNA: p=0.02). The LN cohort included 109 active LN patients. Patients with proliferative LN had significantly higher levels of NET remnants than non-proliferative LN (Elastase-DNA: p<0.0001; HMGB1-DNA: p=0.0003). Patients with higher baseline levels of NET remnants had higher odds of not achieving complete remission (Elastase-DNA: OR 2.34, p=0.007; HMGB1-DNA: OR 2.61, p=0.009) and of progressing to severe renal impairment (Elastase-DNA: OR 2.84, p=0.006; HMGB1-DNA: OR 2.04, p=0.02) at 24 months after the flare. Elastase-DNA and HMGB1-DNA complexes predict renal outcomes, suggesting they could be used to identify patients requiring more aggressive therapy at flare onset.

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Sigma-Aldrich
Anti-DNA Antibody, double stranded, clone BV16-13, culture supernatant, clone BV16-13, Chemicon®
Sigma-Aldrich
Anti-HMGB1 antibody produced in rabbit, affinity isolated antibody
Sigma-Aldrich
Anti-Neutrophil Elastase Rabbit pAb, liquid, Calbiochem®