Neutralization of CXCL12 attenuates established pulmonary hypertension in rats Short Title: CXCL12 neutraligands in severe PH in the rat

Archive ouverte

Bordenave, Jennifer | Thuillet, Raphaël | Tu, Ly | Phan, Carole | Cumont, Amélie | Marsol, Claire | Huertas, Alice | Savale, Laurent | Hibert, Marcel | Galzi, Jean-Luc | Bonnet, Dominique | Humbert, Marc | Frossard, Nelly | Guignabert, Christophe

Edité par CCSD ; Oxford University Press (OUP) -

International audience. Aims: The progressive accumulation of cells in pulmonary vascular walls is a key pathological feature of pulmonary arterial hypertension (PAH) that results in narrowing of the vessel lumen, but treatments targeting this mechanism are lacking. The C-X-C motif chemokine 12 (CXCL12) appears to be crucial in these processes. We investigated the activity of two CXCL12 neutraligands on experimental pulmonary hypertension (PH), using two complementary animal models.Methods and results: Male Wistar rats were injected with monocrotaline (MCT) or were subjected to SU5416 followed by 3-week hypoxia to induce severe PH. After PH establishment, assessed by pulsed-wave Doppler echocardiography, MCT-injected or SU5416 plus chronic hypoxia (SuHx) rats were randomized to receive CXCL12 neutraligands chalcone 4 or LIT-927 (100 mg/kg/day), the C-X-C motif chemokine receptor 4 (CXCR4) antagonist AMD3100 (5 mg/kg/day), or vehicle, for 2 or 3 weeks, respectively. At the end of these treatment periods, echocardiographic and haemodynamic measurements were performed and tissue samples were collected for protein expression and histological analysis. Daily treatment of MCT-injected or SuHx rats with established PH with chalcone 4 or LIT-927 partially reversed established PH, reducing total pulmonary vascular resistance, and remodelling of pulmonary arterioles. Consistent with these observations, we found that neutralization of CXCL12 attenuates right ventricular hypertrophy, pulmonary vascular remodelling, and decreases pulmonary artery smooth muscle cell (PA-SMC) proliferation in lungs of MCT-injected rats and SuHx rats. Importantly, CXCL12 neutralization with either chalcone 4 or LIT-927 inhibited the migration of PA-SMCs and pericytes in vitro with a better efficacy than AMD3100. Finally, we found that CXCL12 neutralization decreases vascular pericyte coverage and macrophage infiltration in lungs of both MCT-injected and SuHx rats.Conclusion: We report here a greater beneficial effect of CXCL12 neutralization vs. the conventional CXCR4 blockade with AMD3100 in the MCT and SuHx rat models of severe PH, supporting a role for CXCL12 in the progression of vascular complications in PH and opening to new therapeutic options.

Suggestions

Du même auteur

Therapeutic effect of pirfenidone in the sugen/hypoxia rat model of severe pulmonary hypertension

Archive ouverte | Poble, Paul-Benoit | CCSD

International audience. Heightened pulmonary artery smooth muscle cell (PA-SMC) proliferation and migration and dynamic remodeling of the extracellular matrix are hallmark pathogenic features of pulmonary arterial h...

Selective BMP-9 Inhibition Partially Protects Against Experimental Pulmonary Hypertension

Archive ouverte | Tu, Ly | CCSD

Comment inThe Janus Faces of Bone Morphogenetic Protein 9 in Pulmonary Arterial Hypertension. [Circ Res. 2019]Letter by Morrell et al Regarding Article, "Selective BMP-9 Inhibition Partially Protects Against Experimental Pulmonary...

Lineage Tracing Reveals the Dynamic Contribution of Pericytes to the Blood Vessel Remodeling in Pulmonary Hypertension

Archive ouverte | Bordenave, Jennifer | CCSD

International audience. OBJECTIVE:Excessive accumulation of resident cells within the pulmonary vascular wall represents the hallmark feature of the remodeling occurring in pulmonary arterial hypertension (PAH). Fur...

Chargement des enrichissements...