Molecular Imaging of the Initial Inflammatory Response in Atherosclerosis: Implications for Early Detection of Disease

BACKGROUND—We hypothesized that molecular imaging of endothelial cell adhesion molecule expression could noninvasively evaluate prelesion atherogenic phenotype. METHODS AND RESULTS—Mice deficient for the LDL-receptor and the Apobec-1 editing peptide (DKO mice) were studied as an age-dependent model...

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Veröffentlicht in:Arteriosclerosis, thrombosis, and vascular biology thrombosis, and vascular biology, 2010-01, Vol.30 (1), p.54-59
Hauptverfasser: Kaufmann, Beat A, Carr, Chad L, Belcik, J Todd, Xie, Aris, Yue, Qi, Chadderdon, Scott, Caplan, Evan S, Khangura, Jaspreet, Bullens, Sherry, Bunting, Stuart, Lindner, Jonathan R
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Sprache:eng
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Zusammenfassung:BACKGROUND—We hypothesized that molecular imaging of endothelial cell adhesion molecule expression could noninvasively evaluate prelesion atherogenic phenotype. METHODS AND RESULTS—Mice deficient for the LDL-receptor and the Apobec-1 editing peptide (DKO mice) were studied as an age-dependent model of atherosclerosis. At 10, 20, and 40 weeks of age, ultrasound molecular imaging of the proximal thoracic aorta was performed with contrast agents targeted to P-selectin and VCAM-1. Atherosclerotic lesion severity and content were assessed by ultrahigh frequency ultrasound, histology, and immunohistochemistry. In wild-type mice at all ages, there was neither aortic thickening nor targeted tracer signal enhancement. In DKO mice, lesions progressed from sparse mild intimal thickening at 10 weeks to widespread severe lesions with luminal encroachment at 40 weeks. Molecular imaging for P-selectin and VCAM-1 demonstrated selective signal enhancement (P
ISSN:1079-5642
1524-4636
DOI:10.1161/ATVBAHA.109.196386