Key result
Low-fat diet reduces aortic wall enhancement by ~54% vs high-fat diet on P947-enhanced MRI.
Why the study?
The ability of P947-enhanced MRI to detect in vivo arterial wall remodelling related to MMP enzymatic activity in atherosclerosis was evaluated.
Does P947-enhanced MRI correlate with MMP-related enzymatic activity and distinguish dietary-induced variations in arterial wall remodeling in an atherosclerotic rabbit model?
Does P947-enhanced MRI correlate with MMP-related enzymatic activity and distinguish dietary-induced variations in arterial wall remodeling in an atherosclerotic rabbit model?
Absolute Event Rate: 21% vs 46%
p-value: p=0.04
P947-enhanced MRI can detect dietary-induced variations in MMP activity within atherosclerotic plaques in vivo, suggesting potential utility for monitoring arterial wall remodeling.
Supports P947-MRI for tracking diet effects in rabbit atherosclerosis; leaves open human translation.
AIMS: P947 is a gadolinium-based magnetic resonance imaging (MRI) contrast agent with high affinity for several matrix metalloproteinases (MMPs) involved in arterial wall remodelling. We tested whether the intensity of enhancement detected in vivo in the arterial wall with P947 and MRI correlates with actual tissue MMP-related enzymatic activity measured in a rabbit atherosclerotic model subjected to dietary manipulations. METHODS AND RESULTS: Aortas of 15 rabbits in which atherosclerotic lesions were induced by balloon angioplasty and 4 months of hypercholesterolaemic diet were imaged at 'baseline' with P947-enhanced MRI. Atherosclerotic rabbits were divided into three groups: five rabbits were sacrificed ('baseline' group); five rabbits continued to be fed a lipid-supplemented diet ('high-fat' group); and five rabbits were switched from atherogenic to a purified chow diet ('low-fat' group). Four months later, a second P947-enhanced MRI was acquired in the 10 remaining rabbits. A significantly lower signal was detected in the aortic wall of rabbits from the 'low-fat' group as compared with rabbits from the 'high-fat' group (21 ± 6 vs. 46 ± 3%, respectively; P = 0.04). Such differences were not detected with the contrast agent P1135, which lacks the MMP-specific peptide sequence. In addition, the intensity of aortic wall enhancement detected with MRI after injection of P947 strongly correlated with actual MMP-2 gelatinolytic activity measured in corresponding aortic segments using zymography (r = 0.87). CONCLUSION: P947-enhanced MRI can distinguish dietary-induced variations in MMP-related enzymatic activity within plaques in an experimental atherosclerotic model, supporting its utility as a clinical imaging tool for in vivo detection of arterial wall remodelling.
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Hyafil et al. (2010) studied Atherosclerosis (n=15). Purified chow diet ('low-fat' group) vs. Lipid-supplemented diet ('high-fat' group) was evaluated on Signal intensity of enhancement detected in the aortic wall with P947-enhanced MRI (p=0.04). In an atherosclerotic rabbit model, switching to a low-fat diet resulted in a significantly lower aortic wall signal on P947-enhanced MRI compared with a high-fat diet (21% vs 46%; P=0.04).
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