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July 16, 2011AJP Heart and Circulatory Physiology305 citationsOpen Access

Similarity of mouse perivascular and brown adipose tissues and their resistance to diet-induced inflammation

TFTimothy P. FitzgibbonsSKSophia KoganMAMyriam Aouadi

Key Result

Murine thoracic perivascular adipose tissue is virtually identical to brown adipose tissue and highly resistant to diet-induced macrophage infiltration compared with white adipose tissue (1.0% vs 31%).

Structured PICO

Does high-fat diet induce inflammation in thoracic perivascular adipose tissue compared to brown and white adipose tissues in mice?

P
Population
Male C57BL6/J mice (n=24), 8 weeks of age.
I
Intervention
High-fat diet (45 kcal% fat) for 13 or 20 weeks
C
Comparator
Normal diet (chow) for 13 or 20 weeks
O
Outcome
Global gene expression profiles, morphological characteristics, and macrophage infiltration of thoracic perivascular adipose tissue (PVAT) compared to interscapular brown adipose tissue (BAT) and white adipose tissue (WAT)surrogate

Murine thoracic PVAT is phenotypically and transcriptionally identical to interscapular BAT and is resistant to obesity-induced inflammation, suggesting a protective role against vascular inflammatory stress.

Main Result

Absolute Event Rate: 1% vs 31%

Abstract

Thoracic perivascular adipose tissue (PVAT) is a unique adipose depot that likely influences vascular function and susceptibility to pathogenesis in obesity and the metabolic syndrome. Surprisingly, PVAT has been reported to share characteristics of both brown and white adipose, but a detailed direct comparison to interscapular brown adipose tissue (BAT) has not been performed. Here we show by full genome DNA microarray analysis that global gene expression profiles of PVAT are virtually identical to BAT, with equally high expression of Ucp-1, Cidea, and other genes known to be uniquely or very highly expressed in BAT. PVAT and BAT also displayed nearly identical phenotypes upon immunohistochemical analysis, and electron microscopy confirmed that PVAT contained multilocular lipid droplets and abundant mitochondria. Compared with white adipose tissue (WAT), PVAT and BAT from C57BL6/J mice fed a high-fat diet for 13 wk had markedly lower expression of immune cell-enriched mRNAs, suggesting resistance to obesity-induced inflammation. Indeed, staining of BAT and PVAT for macrophage markers (F4/80 and CD68) in obese mice showed virtually no macrophage infiltration, and FACS analysis of BAT confirmed the presence of very few CD11b(+)/CD11c(+) macrophages in BAT (1.0%) compared with WAT (31%). In summary, murine PVAT from the thoracic aorta is virtually identical to interscapular BAT, is resistant to diet-induced macrophage infiltration, and thus may play an important role in protecting the vascular bed from inflammatory stress.

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Cite This Study

Fitzgibbons et al. (2011) studied Obesity-induced inflammation. Perivascular adipose tissue (PVAT) and brown adipose tissue (BAT) vs. White adipose tissue (WAT) was evaluated on Macrophage infiltration (CD11b+/CD11c+ macrophages). Murine thoracic perivascular adipose tissue is virtually identical to brown adipose tissue and highly resistant to diet-induced macrophage infiltration compared with white adipose tissue (1.0% vs 31%).

synapsesocial.com/papers/6a05123670c113c9996a6314https://doi.org/10.1152/ajpheart.00376.2011
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