Liver growth factor treatment restores cell-extracellular matrix balance in resistance arteries and improves left ventricular hypertrophy in SHR

Author:

Conde M. Victoria1,Gonzalez M. Carmen1,Quintana-Villamandos Begoña2,Abderrahim Fatima1,Briones Ana M.3,Condezo-Hoyos Luis1,Regadera Javier4,Susin Cristina1,Gomez de Diego Jose J.5,Delgado-Baeza Emilio4,Diaz-Gil Juan J.6,Arribas Silvia M.1

Affiliation:

1. Facultad de Medicina, Departamentos de 1Fisiologia,

2. Servicios de 4Anestesiología y Reanimación and

3. Farmacologia y Terapeutica, and

4. Anatomia, Histologia y Neurociencia, Universidad Autonoma de Madrid, Madrid;

5. Cardiología, Hospital General Universitario Gregorio Marañón, Madrid; y

6. Servicio de Bioquimica Experimental, Hospital Universitario Puerta de Hierro Majadahonda, Majadahonda, Spain

Abstract

Liver growth factor (LGF) is an endogenous albumin-bilirubin complex with antihypertensive effects in spontaneously hypertensive rats (SHR). We assessed the actions of LGF treatment on SHR mesenteric resistance and intramyocardial arteries (MRA and IMA, respectively), heart, and vascular smooth muscle cells (VSMC). SHR and Wistar-Kyoto (WKY) rats treated with vehicle or LGF (4.5 μg LGF/rat, 4 ip injections over 12 days) were used. Intra-arterial blood pressure was measured in anesthetized rats. The heart was weighted and paraffin-embedded. Proliferation, ploidy, and fibronectin deposition were studied in carotid artery-derived VSMC by immunocytochemistry. In MRA, we assessed: 1) geometry and mechanics by pressure myography; 2) function by wire myography; 3) collagen by sirius red staining and polarized light microscopy, and 4) elastin, cell density, nitric oxide (NO), and superoxide anion by confocal microscopy. Heart sections were used to assess cell density and collagen content in IMA. Left ventricular hypertrophy (LVH) regression was assessed by echocardiography. LGF reduced blood pressure only in SHR. LGF in vitro or as treatment normalized the alterations in proliferation and fibronectin in SHR-derived VSMC with no effect on WKY cells. In MRA, LGF treatment normalized collagen, elastin, and VSMC content and passive mechanical properties. In addition, it improved NO availability through reduction of superoxide anion. In IMA, LGF treatment normalized perivascular collagen and VSMC density, improving the wall-to-lumen ratio. Paired experiments demonstrated a partial regression of SHR LVH by LGF treatment. The effective cardiovascular antifibrotic and regenerative actions of LGF support its potential in the treatment of hypertension and its complications.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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