Targeting endogenous kidney regeneration using anti-IL11 therapy in acute and chronic models of kidney disease

Author:

Widjaja Anissa A.ORCID,Viswanathan SivakumarORCID,Shekeran Shamini G.,Adami Eleonora,Lim Wei-WenORCID,Chothani Sonia,Tan Jessie,Goh Joyce Wei TingORCID,Chen Hui MeiORCID,Lim Sze Yun,Boustany-Kari Carine M.,Hawkins Julie,Petretto EnricoORCID,Hübner NorbertORCID,Schafer SebastianORCID,Coffman Thomas M.,Cook Stuart A.ORCID

Abstract

AbstractThe kidney has large regenerative capacity, but this is compromised when kidney damage is excessive and renal tubular epithelial cells (TECs) undergo SNAI1-driven growth arrest. Here we investigate the role of IL11 in TECs, kidney injury and renal repair. IL11 stimulation of TECs induces ERK- and p90RSK-mediated GSK3β inactivation, SNAI1 upregulation and pro-inflammatory gene expression. Mice with acute kidney injury upregulate IL11 in TECs leading to SNAI1 expression and kidney dysfunction, which is not seen inIl11deleted mice or in mice administered a neutralizing IL11 antibody in either preemptive or treatment modes. In acute kidney injury, anti-TGFβ reduces renal fibrosis but exacerbates inflammation and tubule damage whereas anti-IL11 reduces all pathologies. Mice with TEC-specific deletion ofIl11ra1have reduced pathogenic signaling and are protected from renal injury-induced inflammation, fibrosis, and failure. In a model of chronic kidney disease, anti-IL11 therapy promotes TEC proliferation and parenchymal regeneration, reverses fibroinflammation and restores renal mass and function. These data highlight IL11-induced mesenchymal transition of injured TECs as an important renal pathology and suggest IL11 as a therapeutic target for restoring stalled endogenous regeneration in the diseased kidney.

Funder

MOH | National Medical Research Council

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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