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January 28, 2011Arteriosclerosis Thrombosis and Vascular Biology117 citationsOpen Access

Macrophage Activation Is Responsible for Loss of Anticontractile Function in Inflamed Perivascular Fat

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SWSarah WithersCAClaudia Agabiti-RoseiDLDaniel M. Livingstone

Structured PICO

P
Population
In vitro small arterial segments from a mouse model of inducible macrophage ablation (CD11b-DTR) and wild-type animals, with and without perivascular fat
I
Intervention
Induction of inflammation via aldosterone and hypoxia; treatment with aldosterone receptor antagonism (eplerenone) and free radical scavengers
C
Comparator
Wild-type mice vs macrophage-deficient mice; presence vs absence of perivascular fat; presence vs absence of inflammatory stimuli
O
Outcome
Arterial contractility and macrophage activationsurrogate

Macrophage activation in perivascular adipose tissue is essential for the loss of arterial anticontractile function during inflammation, an effect that can be ameliorated by eplerenone.

Abstract

OBJECTIVE: The aim of this study was to determine whether macrophages dispersed throughout perivascular fat are crucial to the loss of anticontractile function when healthy adipose tissue becomes inflamed and to gain an understanding of the mechanisms involved. METHODS AND RESULTS: Pharmacological studies on in vitro small arterial segments from a mouse model of inducible macrophage ablation and on wild-type animals were carried out with and without perivascular fat using 2 physiological stimuli of inflammation: aldosterone and hypoxia. Both inflammatory insults caused a similar loss of anticontractile capacity of perivascular fat and increased macrophage activation. Aldosterone receptor antagonism and free radical scavengers were able to restore this capacity and reduce macrophage activation. However, in a mouse deficient of macrophages CD11b-diptheria toxin receptor (CD11b-DTR), there was no increase in contractility of arteries following aldosterone incubation or hypoxia. CONCLUSIONS: The presence and activation of macrophages in adipose tissue is the key modulator of the increase in contractility in arteries with perivascular fat following induction of inflammation. Despite multiple factors that may be involved in bringing about the vascular consequences of obesity, the ability of eplerenone to ameliorate the inflammatory effects of both aldosterone and hypoxia may be of potential therapeutic interest.

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Cite This Study

Withers et al. (2011) studied this question.

synapsesocial.com/papers/6a7d085e34f270f904424c21https://doi.org/10.1161/atvbaha.110.221705
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