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PMID: 15653572 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Detection of vascular adhesion molecule-1 expression using a novel multimodal nanoparticle.

Circulation research ·Vol. 96 ·No. 3 ·2005-02-18 ·Pages 327-36

Kelly KA, Allport JR, Tsourkas A, Shinde-Patil VR, Josephson L, Weissleder R

Abstract

Endothelial vascular adhesion molecule-1 (VCAM-1) is a critical component of the leukocyte-endothelial adhesion cascade, and its strict temporal and spatial regulation make it an ideal target for imaging and therapy. The goal of this study was to develop novel VCAM-1-targeted imaging agents detectable by MRI and fluorescence imaging using phage display-derived peptide sequences and multimodal nanoparticles (NPs). We hypothesized that VCAM-1-mediated cell internalization of phage display-selected peptides could be harnessed as an amplification strategy to chaperone and trap imaging agents inside VCAM-1-expressing cells, thus improving target-to-background ratios. To accomplish our goal, iterative phage display was performed on murine endothelium under physiological flow conditions to identify a family of VCAM-1-mediated cell-internalizing peptides. One specific sequence, containing the VHSPNKK motif that has homology to the alpha-chain of very late antigen (a known ligand for VCAM-1), was shown to bind VCAM-1 and block leukocyte-endothelial interactions. Compared with VCAM-1 monoclonal antibody, the peptide showed 12-fold higher target-to-background ratios. A VHSPNKK-modified magnetofluorescent NP (VNP) showed high affinity for endothelial cells expressing VCAM-1 but surprisingly low affinity for macrophages. In contrast, a control NP without VCAM-1-targeting sequences showed no affinity for endothelial cells. In vivo, VNP successfully identified VCAM-1-expressing endothelial cells in a murine tumor necrosis factor-alpha-induced inflammatory model and colocalized with VCAM-1-expressing cells in atherosclerotic lesions present in cholesterol-fed apolipoprotein E apoE-/- mice. These results indicate that: (1) small peptide sequences can significantly alter targeting of NPs, (2) the used amplification strategy of internalization results in high target-to-background ratios, and (3) this technology is useful for in vivo imaging of endothelial markers.

MeSH Terms
Animals Apolipoproteins E/deficiency Arteriosclerosis/pathology Cells, Cultured Ear/anatomy & histology,blood supply Endothelial Cells/chemistry,metabolism Endothelium, Vascular/cytology Fluorescein-5-isothiocyanate/metabolism Fluorescent Antibody Technique/methods Leukocytes, Mononuclear/chemistry,metabolism Lung/cytology Magnetic Resonance Imaging/methods Magnetics Mice Mice, Inbred C57BL Microchemistry/methods Microscopy, Confocal/methods Myocardium/cytology Nanostructures/analysis,chemistry Peptide Library Peptides/metabolism Vascular Cell Adhesion Molecule-1/immunology,metabolism
Chemicals
Apolipoproteins E Peptide Library Peptides Vascular Cell Adhesion Molecule-1 Fluorescein-5-isothiocyanate
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Kelly Kimberly A
Center for Molecular Imaging Research, Department of Radiology, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA 02129, USA.
Allport Jennifer R
Tsourkas Andrew
Shinde-Patil Vivek R
Josephson Lee
Weissleder Ralph
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
1524-4571
Published
2005-02-18
Epub
2005-00-13
Pages
327-36
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Grants
NCI NIH HHS · CA09362 · United States
NCI NIH HHS · CA86355 · United States
NCI NIH HHS · CA92782 · United States
NIBIB NIH HHS · EB000662 · United States
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