Key result
Perivascular adipose tissue distribution shows no clinically meaningful correlation with carotid or aortic wall thickening.
Why the study?
Does perivascular adipose tissue thickness correlate with adjacent wall thickness in carotid and aortic arteries?
Cross-Sectional (n=28)
Single-blind
No
Does perivascular adipose tissue thickness correlate with adjacent wall thickness in carotid and aortic arteries?
Effect estimate: r = 0.040 (95% CI 0.016 to 0.065)
p-value: p=0.001
The dissociation between spatial distribution of perivascular adipose tissue and arterial wall thickening does not support a causal paracrine role of PVAT in promoting atherosclerotic plaque.
No meaningful PVAT-wall thickness correlation; challenges paracrine role in atherosclerosis and leaves open need for longitudinal studies.
BACKGROUND AND AIMS: Imaging studies have relied on the 'overall' volumetric quantification of perivascular adipose tissue. We sought to assess the relationship of circumferential distribution between perivascular adipose tissue and adjacent wall thickness of carotid and aortic arteries using dedicated magnetic resonance imaging sequences. METHODS: Vessel wall and perivascular adipose tissue were acquired using magnetic resonance imaging (1.5 T). Co-registered images were segmented separately, and measurements of both perivascular adipose tissue and vessel wall were obtained along radii of the vessel spaced at angles of 5° each. RESULTS: In total, 29 patients were recruited. Perivascular adipose tissue thickness of the aorta was 3.34 ± 0.79 mm with specific pattern of 'double peaks' distribution, while carotid perivascular adipose tissue had no identifiable pattern with thickness of 0.8 ± 0.91 mm. Although statistically significant, the correlation between perivascular adipose tissue thickness and wall thickness in carotid arteries with normal (r = 0.040, p = 0.001) or with abnormal wall thickness (r = -0.039, p = 0.015) was merely nominal. Similarly, perivascular adipose tissue of the aorta had very weak correlation with normal aortic wall thickness (r = 0.010, p = 0.008) but not with the abnormal ones (r = -0.05, p = 0.29). CONCLUSION: Dissociation between the spatial distribution of perivascular adipose tissue and arterial wall thickening in the aorta and carotid arteries does not support that perivascular adipose tissue has a causal role in promoting atherosclerotic plaque via a paracrine route. Yet, perivascular adipose tissue functional properties were not examined in this study.
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Alkhalil et al. (2018) conducted a cross-sectional in Coronary artery disease or acute coronary syndrome (n=28). Perivascular adipose tissue (PVAT) thickness was evaluated on Correlation between perivascular adipose tissue thickness and normal carotid wall thickness (r = 0.040, 95% CI 0.016 to 0.065, p=0.001). The spatial distribution of perivascular adipose tissue showed only a nominal, non-clinically meaningful correlation with arterial wall thickening in the carotid arteries (r=0.040) and aorta (r=0.010).
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