Local production of tenascin-C acts as a trigger for monocyte/macrophage recruitment that provokes cardiac dysfunction

Author:

Abbadi Dounia1,Laroumanie Fanny1,Bizou Mathilde1,Pozzo Joffrey12,Daviaud Danièle1,Delage Christine3,Calise Denis3,Gaits-Iacovoni Fréderique1,Dutaur Marianne1,Tortosa Florence1,Renaud-Gabardos Edith1,Douin-Echinard Victorine1,Prats Anne-Catherine1,Roncalli Jerome12,Parini Angelo1,Pizzinat Nathalie1

Affiliation:

1. I2MC, Toulouse University, Inserm, UPS, Toulouse, France

2. Department of Cardiology, University Hospital of Rangueil, Toulouse, France

3. UMS006-Microsurgery Facility, 1, avenue du Professeur Jean Poulhés, Toulouse, France

Abstract

Abstract Aims Tenascin-C (TNC) is an endogenous danger signal molecule strongly associated with inflammatory diseases and with poor outcome in patients with cardiomyopathies. Its function within pathological cardiac tissue during pressure overload remains poorly understood. Methods and results We showed that TNC accumulates after 1 week of transverse aortic constriction (TAC) in the heart of 12-week-old male mice. By cross bone marrow transplantation experiments, we determined that TNC deposition relied on cardiac cells and not on haematopoietic cells. The expression of TNC induced by TAC, or by administration of a recombinant lentivector coding for TNC, triggered a pro-inflammatory cardiac microenvironment, monocyte/macrophage (MO/MΦ) accumulation, and systolic dysfunction. TNC modified macrophage polarization towards the pro-inflammatory phenotype and stimulated RhoA/Rho-associated protein kinase (ROCK) pathways to promote mesenchymal to amoeboid transition that enhanced macrophage migration into fibrillar collagen matrices. The amplification of inflammation and MO/MΦ recruitment by TNC was abrogated by genetic invalidation of TNC in knockout mice. These mice showed less ventricular remodelling and an improved cardiac function after TAC as compared with wild-type mice. Conclusions By promoting a pro-inflammatory microenvironment and macrophage migration, TNC appears to be a key factor to enable the MO/MΦ accumulation within fibrotic hearts leading to cardiac dysfunction. As TNC is highly expressed during inflammation and sparsely during the steady state, its inhibition could be a promising therapeutic strategy to control inflammation and immune cell infiltration in heart disease.

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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