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Published on: May 22, 2020
A novel anti-human IL-1R7 antibody reduces IL-18-mediated inflammatory signaling
Suzhao Li1, Liqiong Jiang2, Karsten Beckmann3
1Department of Medicine, University of Colorado Denver Anschutz Medical Campus, Aurora, Colorado, USA.
Abstract:
Unchecked inflammation can result in severe diseases with high mortality, such as macrophage activation syndrome (MAS). MAS and associated cytokine storms have been observed in COVID-19 patients exhibiting systemic hyperinflammation. Interleukin-18 (IL-18), a proinflammatory cytokine belonging to the IL-1 family, is elevated in both MAS and COVID-19 patients, and its level is known to correlate with the severity of COVID-19 symptoms. IL-18 binds its specific receptor IL-1 receptor 5 (IL-1R5, also known as IL-18 receptor alpha chain), leading to the recruitment of the coreceptor, IL-1 receptor 7 (IL-1R7, also known as IL-18 receptor beta chain). This heterotrimeric complex then initiates downstream signaling, resulting in systemic and local inflammation. Here, we developed a novel humanized monoclonal anti-IL-1R7 antibody to specifically block the activity of IL-18 and its inflammatory signaling. We characterized the function of this antibody in human cell lines, in freshly obtained peripheral blood mononuclear cells (PBMCs) and in human whole blood cultures. We found that the anti-IL-1R7 antibody significantly suppressed IL-18-mediated NFκB activation, reduced IL-18-stimulated IFNγ and IL-6 production in human cell lines, and reduced IL-18-induced IFNγ, IL-6, and TNFα production in PBMCs. Moreover, the anti-IL-1R7 antibody significantly inhibited LPS- and Candida albicans-induced IFNγ production in PBMCs, as well as LPS-induced IFNγ production in whole blood cultures. Our data suggest that blocking IL-1R7 could represent a potential therapeutic strategy to specifically modulate IL-18 signaling and may warrant further investigation into its clinical potential for treating IL-18-mediated diseases, including MAS and COVID-19.
Insights
A new antibody targeting Interleukin-18 receptor 7 (IL-1R7) effectively blocks IL-18 signaling. This approach shows promise for treating inflammatory diseases like Macrophage Activation Syndrome and COVID-19.
Area of Science:
- Immunology
- Molecular Biology
- Therapeutics
Background:
- Uncontrolled inflammation causes severe diseases like Macrophage Activation Syndrome (MAS).
- Cytokine storms and elevated Interleukin-18 (IL-18) are implicated in MAS and COVID-19 hyperinflammation.
- IL-18 signaling, mediated by IL-1R5 and IL-1R7, drives inflammatory responses.
Purpose of the Study:
- To develop and characterize a novel humanized monoclonal antibody targeting IL-1R7.
- To evaluate the antibody's efficacy in blocking IL-18-mediated inflammatory signaling in vitro.
- To explore the therapeutic potential of targeting IL-1R7 for IL-18-driven diseases.
Main Methods:
- Development of a humanized monoclonal anti-IL-1R7 antibody.
- Functional characterization in human cell lines, peripheral blood mononuclear cells (PBMCs), and whole blood cultures.
- Assays included NFκB activation, cytokine production (IFNγ, IL-6, TNFα), and responses to LPS and Candida albicans.
Main Results:
- The anti-IL-1R7 antibody significantly suppressed IL-18-induced NFκB activation and cytokine production in cell lines and PBMCs.
- It reduced IL-18-stimulated IFNγ, IL-6, and TNFα production in human PBMCs.
- The antibody also inhibited pathogen- and LPS-induced IFNγ production in PBMCs and whole blood.
Conclusions:
- Blocking IL-1R7 with the novel antibody is a viable strategy to specifically inhibit IL-18 inflammatory signaling.
- Targeting IL-1R7 warrants further investigation for clinical applications in treating MAS, COVID-19, and other IL-18-mediated conditions.
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