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Molecular Analysis of Endothelial-mesenchymal Transition Induced by Transforming Growth Factor-β Signaling
Published on: August 3, 2018
IL-11 is a crucial determinant of cardiovascular fibrosis
Sebastian Schafer1,2, Sivakumar Viswanathan2, Anissa A Widjaja2
1National Heart Centre Singapore, Singapore.
Abstract:
Fibrosis is a common pathology in cardiovascular disease. In the heart, fibrosis causes mechanical and electrical dysfunction and in the kidney, it predicts the onset of renal failure. Transforming growth factor β1 (TGFβ1) is the principal pro-fibrotic factor, but its inhibition is associated with side effects due to its pleiotropic roles. We hypothesized that downstream effectors of TGFβ1 in fibroblasts could be attractive therapeutic targets and lack upstream toxicity. Here we show, using integrated imaging-genomics analyses of primary human fibroblasts, that upregulation of interleukin-11 (IL-11) is the dominant transcriptional response to TGFβ1 exposure and required for its pro-fibrotic effect. IL-11 and its receptor (IL11RA) are expressed specifically in fibroblasts, in which they drive non-canonical, ERK-dependent autocrine signalling that is required for fibrogenic protein synthesis. In mice, fibroblast-specific Il11 transgene expression or Il-11 injection causes heart and kidney fibrosis and organ failure, whereas genetic deletion of Il11ra1 protects against disease. Therefore, inhibition of IL-11 prevents fibroblast activation across organs and species in response to a range of important pro-fibrotic stimuli. These results reveal a central role of IL-11 in fibrosis and we propose that inhibition of IL-11 is a potential therapeutic strategy to treat fibrotic diseases.
Insights
Interleukin-11 (IL-11) drives fibrosis by activating fibroblasts. Inhibiting IL-11 offers a potential therapeutic strategy for fibrotic diseases, bypassing the side effects of targeting transforming growth factor β1 (TGFβ1).
Area of Science:
- Cardiovascular Biology
- Renal Pathophysiology
- Cell Signaling
Background:
- Fibrosis is a major cause of cardiovascular and kidney disease.
- Transforming growth factor β1 (TGFβ1) promotes fibrosis but has pleiotropic effects.
- Targeting downstream effectors of TGFβ1 may offer safer therapeutic strategies.
Purpose of the Study:
- To identify downstream effectors of TGFβ1 in fibroblasts.
- To investigate the role of interleukin-11 (IL-11) in mediating TGFβ1-induced fibrosis.
- To evaluate IL-11 inhibition as a therapeutic strategy for fibrotic diseases.
Main Methods:
- Integrated imaging-genomics analyses of human fibroblasts.
- Investigated IL-11 and IL11RA expression and function.
- Utilized mouse models of cardiac and renal fibrosis.
Main Results:
- IL-11 is the dominant transcriptional response to TGFβ1 in fibroblasts.
- IL-11 drives autocrine ERK-dependent signaling required for fibrogenesis.
- Fibroblast-specific IL-11 activation causes organ fibrosis; IL-11 receptor blockade prevents it.
Conclusions:
- IL-11 is a central mediator of fibroblast activation and fibrosis.
- Inhibition of IL-11 represents a promising therapeutic approach for fibrotic diseases.
- Targeting IL-11 may avoid the toxicity associated with TGFβ1 inhibition.
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