An antibody to IL-1 receptor 7 protects mice from LPS-induced tissue and systemic inflammation

IL-1 受体 7 抗体可保护小鼠免受 LPS 诱发的组织和全身炎症

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作者:Liqiong Jiang #, Lars P Lunding #, William S Webber, Karsten Beckmann, Tania Azam, Jesper Falkesgaard Højen, Jesus Amo-Aparicio, Alberto Dinarello, Tom T Nguyen, Ulrich Pessara, Daniel Parera, David J Orlicky, Stephan Fischer, Michael Wegmann, Charles A Dinarello, Suzhao Li

Discussion

Altogether, our data suggest that blocking IL-1R7 represents a potential therapeutic strategy to specificallymodulate IL-18-mediated hyperinflammation, warranting further investigation of its clinical application intreating IL-18-mediated diseases, including MAS and COVID-19.

Methods

We reported earlier the development of a novel humanized monoclonal anti-human IL-1R7 antibody whichspecifically blocks the activity of human IL-18 and its inflammatory signaling in human cell and wholeblood cultures. In the current study, we further explored the strategy of blocking IL-1R7 inhyperinflammation in vivo using animal models.

Results

We first identified an anti-mouse IL-1R7 antibody that significantly suppressed mouse IL-18 andlipopolysaccharide (LPS)-induced IFNg production in mouse splenocyte and peritoneal cell cultures. Whenapplied in vivo, the antibody reduced Propionibacterium acnes and LPS-induced liver injury and protectedmice from tissue and systemic hyperinflammation. Importantly, anti-IL-1R7 significantly inhibited plasma,liver cell and spleen cell IFNg production. Also, anti-IL-1R7 downregulated plasma TNFa, IL-6, IL-1b,MIP-2 production and the production of the liver enzyme ALT. In parallel, anti-IL-1R7 suppressed LPSinducedinflammatory cell infiltration in lungs and inhibited the subsequent IFNg production andinflammation in mice when assessed using an acute lung injury model.

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