Key result
A2AR disruption in mice fed a high-fat diet enhanced adipose tissue inflammation and insulin resistance, suggesting A2AR plays a protective role against obesity-associated inflammation.
Why the study?
Does A2AR disruption exacerbate adipose tissue inflammation and insulin resistance in mice fed a high-fat diet?
Does A2AR disruption exacerbate adipose tissue inflammation and insulin resistance in mice fed a high-fat diet?
A2AR plays a protective role against obesity-associated adipose tissue inflammation by suppressing macrophage proinflammatory activation.
A2AR may protect against murine obesity inflammation; leaves open whether modulation benefits human cardiometabolic disease.
Adenosine 2A receptor (A2AR) exerts anti-inflammatory effects. However, the role of A2AR in obesity-associated adipose tissue inflammation remains to be elucidated. The present study examined the expression of A2AR in adipose tissue of mice with diet-induced obesity and determined the effect of A2AR disruption on the status of obesity-associated adipose tissue inflammation. WT C57BL/6J mice and A2AR-disrupted mice were fed a high-fat diet (HFD) for 12 weeks to induce obesity and adipose tissue inflammation. In vitro, bone marrow-derived macrophages from A2AR-disrupted mice and WT control mice were treated with palmitate and examined for macrophage proinflammatory activation. Compared with that of low-fat diet (LFD)-fed WT mice, A2AR expression in adipose tissue of HFD-fed WT mice was increased significantly and was present predominantly in adipose tissue macrophages. The increase in adipose tissue A2AR expression in HFD-fed mice was accompanied with increased phosphorylation states of c-Jun N-terminal kinase 1 p46 and nuclear factor kappa B p65 and mRNA levels of interleukin (Il)-1beta, Il6 and tumor necrosis factor alpha. In A2AR-disrupted mice, HFD feeding induced significant increases in adipose tissue inflammation, indicated by enhanced proinflammatory signaling and increased proinflammatory cytokine expression, and adipose tissue insulin resistance, indicated by a decrease in insulin-stimulated Akt phosphorylation relative to those in WT mice. Lastly, A2AR disruption enhanced palmitate-induced macrophage proinflammatory activation. Taken together, these results suggest that A2AR plays a protective role in obesity-associated adipose tissue inflammation, which is attributable to, in large part, A2AR suppression of macrophage proinflammatory activation.
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Pei et al. (2018) studied Obesity-associated adipose tissue inflammation. A2AR disruption vs. WT control mice was evaluated on Adipose tissue inflammation and insulin resistance. A2AR disruption in mice fed a high-fat diet enhanced adipose tissue inflammation and insulin resistance, suggesting A2AR plays a protective role against obesity-associated inflammation.
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