ArticleJournal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance
A disintegrin and metalloproteinase with thrombospondin motifs 4-targeted molecular magnetic resonance imaging for early detection of extracellular matrix remodeling in a porcine model of abdominal aortic aneurysm.
Article in Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
backgroundAbdominal aortic aneurysm (AAA) progression is driven by extracellular matrix (ECM) proteolysis and vascular smooth muscle cell loss, processes insufficiently captured by diameter-based surveillance. A disintegrin and metalloproteinase with thrombospondin motifs 4 (ADAMTS4) is upregulated during early ECM remodeling, making it a compelling target for molecular imaging.
methodsEighteen female German Landrace swine were enrolled. Eight animals underwent AAA induction and four served as controls; six animals were excluded due to procedural complications. Molecular 3 T MRI was performed at two and four weeks after induction following intravenous administration of an ADAMTS4-specific gadolinium probe (∼0.03 mmol/kg). Contrast-to-noise ratio (CNR) was calculated pre- and post-contrast. Aortic diameter was monitored by serial ultrasound. Ex vivo analysis included immunofluorescence, Western blotting, and laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS). Spearman correlation was used to evaluate relationships between MRI signal and molecular markers of ECM remodeling.
resultsΔCNR increased at two weeks (3.18 ± 0.56) and four weeks (4.35 ± 0.84) relative to controls (-0.14 ± 0.57; p = 0.017 and p = 0.046). ADAMTS4 immunofluorescence increased to 43.91 ± 9.48% at two weeks and 46.97 ± 4.50% at four weeks (control: 0.39 ± 0.03%). ΔCNR strongly correlated with ADAMTS4 (r
conclusionADAMTS4-targeted molecular MRI enables early, non-invasive detection of ongoing ECM remodeling in AAA and provides activity-based disease characterization beyond diameter-based assessment.
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