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Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis

INTRODUCTION: The detection of atherosclerotic plaques at risk for disruption will be greatly enhanced by molecular probes that target vessel wall biomarkers. Here, we test if fluorescently-labeled Activatable Cell Penetrating Peptides (ACPPs) could differentiate stable plaques from vulnerable plaqu...

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Autores principales: Hua, Ning, Baik, Fred, Pham, Tuan, Phinikaridou, Alkystis, Giordano, Nick, Friedman, Beth, Whitney, Michael, Nguyen, Quyen T., Tsien, Roger Y., Hamilton, James A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598148/
https://www.ncbi.nlm.nih.gov/pubmed/26448434
http://dx.doi.org/10.1371/journal.pone.0139833
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author Hua, Ning
Baik, Fred
Pham, Tuan
Phinikaridou, Alkystis
Giordano, Nick
Friedman, Beth
Whitney, Michael
Nguyen, Quyen T.
Tsien, Roger Y.
Hamilton, James A.
author_facet Hua, Ning
Baik, Fred
Pham, Tuan
Phinikaridou, Alkystis
Giordano, Nick
Friedman, Beth
Whitney, Michael
Nguyen, Quyen T.
Tsien, Roger Y.
Hamilton, James A.
author_sort Hua, Ning
collection PubMed
description INTRODUCTION: The detection of atherosclerotic plaques at risk for disruption will be greatly enhanced by molecular probes that target vessel wall biomarkers. Here, we test if fluorescently-labeled Activatable Cell Penetrating Peptides (ACPPs) could differentiate stable plaques from vulnerable plaques that disrupt, forming a luminal thrombus. Additionally, we test the efficacy of a combined ACPP and MRI technique for identifying plaques at high risk of rupture. METHODS AND RESULTS: In an atherothrombotic rabbit model, disrupted plaques were identified with in vivo MRI and co-registered in the same rabbit aorta with the in vivo uptake of ACPPs, cleaved by matrix metalloproteinases (MMPs) or thrombin. ACPP uptake, mapped ex vivo in whole aortas, was higher in disrupted compared to non-disrupted plaques. Specifically, disrupted plaques demonstrated a 4.5~5.0 fold increase in fluorescence enhancement, while non-disrupted plaques showed only a 2.2~2.5 fold signal increase. Receiver operating characteristic (ROC) analysis indicates that both ACPPs (MMP and thrombin) show high specificity (84.2% and 83.2%) and sensitivity (80.0% and 85.7%) in detecting disrupted plaques. The detection power of ACPPs was improved when combined with the MRI derived measure, outward remodeling ratio. CONCLUSIONS: Our targeted fluorescence ACPP probes distinguished disrupted plaques from stable plaques with high sensitivity and specificity. The combination of anatomic, MRI-derived predictors for disruption and ACPP uptake can further improve the power for identification of high-risk plaques and suggests future development of ACPPs with molecular MRI as a readout.
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spelling pubmed-45981482015-10-20 Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis Hua, Ning Baik, Fred Pham, Tuan Phinikaridou, Alkystis Giordano, Nick Friedman, Beth Whitney, Michael Nguyen, Quyen T. Tsien, Roger Y. Hamilton, James A. PLoS One Research Article INTRODUCTION: The detection of atherosclerotic plaques at risk for disruption will be greatly enhanced by molecular probes that target vessel wall biomarkers. Here, we test if fluorescently-labeled Activatable Cell Penetrating Peptides (ACPPs) could differentiate stable plaques from vulnerable plaques that disrupt, forming a luminal thrombus. Additionally, we test the efficacy of a combined ACPP and MRI technique for identifying plaques at high risk of rupture. METHODS AND RESULTS: In an atherothrombotic rabbit model, disrupted plaques were identified with in vivo MRI and co-registered in the same rabbit aorta with the in vivo uptake of ACPPs, cleaved by matrix metalloproteinases (MMPs) or thrombin. ACPP uptake, mapped ex vivo in whole aortas, was higher in disrupted compared to non-disrupted plaques. Specifically, disrupted plaques demonstrated a 4.5~5.0 fold increase in fluorescence enhancement, while non-disrupted plaques showed only a 2.2~2.5 fold signal increase. Receiver operating characteristic (ROC) analysis indicates that both ACPPs (MMP and thrombin) show high specificity (84.2% and 83.2%) and sensitivity (80.0% and 85.7%) in detecting disrupted plaques. The detection power of ACPPs was improved when combined with the MRI derived measure, outward remodeling ratio. CONCLUSIONS: Our targeted fluorescence ACPP probes distinguished disrupted plaques from stable plaques with high sensitivity and specificity. The combination of anatomic, MRI-derived predictors for disruption and ACPP uptake can further improve the power for identification of high-risk plaques and suggests future development of ACPPs with molecular MRI as a readout. Public Library of Science 2015-10-08 /pmc/articles/PMC4598148/ /pubmed/26448434 http://dx.doi.org/10.1371/journal.pone.0139833 Text en © 2015 Hua et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hua, Ning
Baik, Fred
Pham, Tuan
Phinikaridou, Alkystis
Giordano, Nick
Friedman, Beth
Whitney, Michael
Nguyen, Quyen T.
Tsien, Roger Y.
Hamilton, James A.
Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title_full Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title_fullStr Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title_full_unstemmed Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title_short Identification of High-Risk Plaques by MRI and Fluorescence Imaging in a Rabbit Model of Atherothrombosis
title_sort identification of high-risk plaques by mri and fluorescence imaging in a rabbit model of atherothrombosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598148/
https://www.ncbi.nlm.nih.gov/pubmed/26448434
http://dx.doi.org/10.1371/journal.pone.0139833
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