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July 24, 2009Arteriosclerosis Thrombosis and Vascular Biology25 citationsOpen Access

Monocyte Chemoattractant Proteins Mediate Myocardial Microvascular Dysfunction in Swine Renovascular Hypertension

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JLJing LinXZXiangyang ZhuACAlejandro Chade

Structured PICO

Does bindarit (MCPs inhibitor) improve myocardial microvascular dysfunction and remodeling in a swine model of renovascular hypertension?

P
Population
Pigs (n=18, 6 per group) with normal or renovascular hypertension
I
Intervention
Bindarit (MCPs inhibitor, 50 mg/kg/d PO) for 10 weeks
C
Comparator
Normal pigs and untreated renovascular hypertension pigs
O
Outcome
Left ventricular (LV) function, myocardial microvascular permeability, and fractional vascular volume assessed by fast computed tomography before and after adenosine infusionsurrogate

Inhibition of monocyte chemoattractant proteins with bindarit improves myocardial inflammation, fibrosis, vascular remodeling, and vascular integrity in a swine model of renovascular hypertension.

Abstract

BACKGROUND: Monocyte chemoattractant proteins (MCPs) play an important role in mediating inflammatory processes. Hypertension (HTN) is associated with inflammation as well as impaired cardiac microcirculatory function and structure, but the contribution of MCPs to these alterations remained unclear. This study tested the hypothesis that MCPs regulate cardiac microvascular function and structure in experimental HTN. METHODS AND RESULTS: Pigs (n=6 per group) were studied after 10 weeks of normal, renovascular HTN, or renovascular HTN+ bindarit (MCPs inhibitor, 50 mg/kg/d PO). Left ventricular (LV) function, myocardial microvascular permeability, and fractional vascular volume were assessed by fast computed tomography before and after adenosine infusion (400 microg/kg/min). Myocardial fibrosis, inflammation, and microvascular remodeling were determined ex vivo. Hypertension was not altered by bindarit, but LV hypertrophy and diastolic function were improved. In response to adenosine, myocardial microvascular permeability increased in HTN (from 0.0083+/-0.0009 to 0.0103+/-0.0011 AU, P=0.038 versus baseline) and fractional vascular volume decreased, whereas both remained unchanged in normal and HTN+bindarit pigs. HTN upregulated endothelin-1 expression, myocardial inflammation, and microvascular wall thickening, which were inhibited by bindarit. CONCLUSIONS: MCPs partly mediate myocardial inflammation, fibrosis, vascular remodeling, and impaired vascular integrity induced by hypertension. Inhibition of MCPs could potentially be a therapeutic target in hypertensive cardiomyopathy.

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Cite This Study

Lin et al. (2009) studied this question.

synapsesocial.com/papers/6a1aa5b349c6765e3885bf87https://doi.org/10.1161/atvbaha.109.190546
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