IL-11 is a crucial determinant of cardiovascular fibrosis
File(s)-Manuscript-combined.pdf (22.72 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Fibrosis is a final common pathology in cardiovascular disease1. In the heart, fibrosis causes mechanical and electrical dysfunction1,2 and in the kidney, it predicts the onset of renal failure3. Transforming growth factor β1 (TGFB1) is the principal pro-fibrotic factor4,5 but its inhibition is associated with side effects due to its pleiotropic roles6,7. We hypothesised that downstream effectors of TGFB1 in fibroblasts could be attractive therapeutic targets and lack upstream toxicities. Using integrated imaging-genomics analyses of primary human fibroblasts, we found that Interleukin 11 (IL11) upregulation is the dominant transcriptional response to TGFB1 exposure and required for its profibrotic effect. IL11 and its receptor (IL11RA) are expressed specifically in fibroblasts where they drive non-canonical, ERK-dependent autocrine signalling that is required for fibrogenic protein synthesis. In mice, fibroblast-specific Il11 transgene expression or Il11 injection causes heart and kidney fibrosis and organ failure whereas genetic deletion of Il11ra1 is protective against disease. Thus, inhibition of IL11 prevents fibroblast activation across organs and species in response to a range of important pro-fibrotic stimuli. These data reveal a central role of IL11 in fibrosis and we propose inhibition of IL11 as a new therapeutic strategy to treat fibrotic diseases.
Date Issued
2017-11-13
Date Acceptance
2017-11-02
Citation
Nature, 2017, 552, pp.110-115
ISSN
0028-0836
Publisher
Nature Publishing Group
Start Page
110
End Page
115
Journal / Book Title
Nature
Volume
552
Copyright Statement
Copyright © 2017, Rights Managed by Nature Publishing Group
Identifier
PII: nature24676
Subjects
Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
INTERLEUKIN-11
FIBROBLASTS
MECHANISMS
MUTATION
PATHWAY
HEART
MICE
Animals
Autocrine Communication
Cardiovascular System
Cells, Cultured
Female
Fibroblasts
Fibrosis
Heart
Humans
Interleukin-11
Interleukin-11 Receptor alpha Subunit
Kidney
Male
Mice
Mice, Knockout
Middle Aged
Myocardium
Organ Dysfunction Scores
Protein Biosynthesis
Transforming Growth Factor beta1
Transgenes
Myocardium
Kidney
Cardiovascular System
Heart
Cells, Cultured
Fibroblasts
Animals
Mice, Knockout
Humans
Mice
Fibrosis
Interleukin-11
Autocrine Communication
Protein Biosynthesis
Transgenes
Middle Aged
Female
Male
Transforming Growth Factor beta1
Interleukin-11 Receptor alpha Subunit
Organ Dysfunction Scores
General Science & Technology
Publication Status
Published
Date Publish Online
2017-11-13