Endothelial activation and apoptosis mediated by neutrophil-dependent interleukin 6 trans-signalling: A novel target for systemic sclerosis?

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Abstract

Objectives: Systemic sclerosis (SSc) is a connective tissue disease associated with significant morbidity and mortality and generally inadequate treatment. Endothelial cell activation and apoptosis are thought to be pivotal in the pathogenesis of this disease, but the mechanisms that mediate this remain unknown. Methods: Human dermal microvascular endothelial cells were cultured with healthy control neutrophils in the presence of 25% healthy control or SSc serum for 24 h. Apoptosis was measured by annexin V-FITC binding and endothelial cell activation was measured using an allophycocyanin-conjugated E-selectin antibody. Fluorescence was quantified and localised using confocal microscopy. Results: SSc serum resulted in significantly increased apoptosis (p=0.006) and E-selectin expression (p=0.00004) in endothelial cells compared with control serum, effects that were critically dependent on the presence of neutrophils. Recombinant interleukin 6 (IL-6) reproduced these findings. Immunodepletion of IL-6 and the use of an IL-6 neutralising antibody decreased the effect of SSc serum on E-selectin expression. Soluble gp130, which specifically blocks IL-6 trans-signalling, negated the effect of SSc serum on both E-selectin expression and apoptosis. Conclusions: SSc serum induces endothelial cell activation and apoptosis in endothelial cell-neutrophil co-cultures, mediated largely by IL-6 and dependent on the presence of neutrophils. Together with other pathologically relevant effects of IL-6, these data justify further exploration of IL-6 as a therapeutic target in SSc.

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Barnes, T. C., Spiller, D. G., Anderson, M. E., Edwards, S. W., & Moots, R. J. (2011). Endothelial activation and apoptosis mediated by neutrophil-dependent interleukin 6 trans-signalling: A novel target for systemic sclerosis? Annals of the Rheumatic Diseases, 70(2), 366–372. https://doi.org/10.1136/ard.2010.133587

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