Cargando…

Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis

BACKGROUND: Macrophage apoptosis and MMP activity contribute to vulnerability of atherosclerotic plaques to rupture. By employing molecular imaging techniques, we investigated if apoptosis and MMP release are interlinked. METHODS: Atherosclerosis was produced in rabbits receiving high-cholesterol di...

Descripción completa

Detalles Bibliográficos
Autores principales: Haider, Nezam, Hartung, Dagmar, Fujimoto, Shinichiro, Petrov, Artiom, Kolodgie, Frank D., Virmani, Renu, Ohshima, Satoru, Liu, Han, Zhou, Jun, Fujimoto, Ai, Tahara, Atsuko, Hofstra, Leo, Narula, Navneet, Reutelingsperger, Chris, Narula, Jagat
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2746297/
https://www.ncbi.nlm.nih.gov/pubmed/19662466
http://dx.doi.org/10.1007/s12350-009-9107-8
_version_ 1782172036996530176
author Haider, Nezam
Hartung, Dagmar
Fujimoto, Shinichiro
Petrov, Artiom
Kolodgie, Frank D.
Virmani, Renu
Ohshima, Satoru
Liu, Han
Zhou, Jun
Fujimoto, Ai
Tahara, Atsuko
Hofstra, Leo
Narula, Navneet
Reutelingsperger, Chris
Narula, Jagat
author_facet Haider, Nezam
Hartung, Dagmar
Fujimoto, Shinichiro
Petrov, Artiom
Kolodgie, Frank D.
Virmani, Renu
Ohshima, Satoru
Liu, Han
Zhou, Jun
Fujimoto, Ai
Tahara, Atsuko
Hofstra, Leo
Narula, Navneet
Reutelingsperger, Chris
Narula, Jagat
author_sort Haider, Nezam
collection PubMed
description BACKGROUND: Macrophage apoptosis and MMP activity contribute to vulnerability of atherosclerotic plaques to rupture. By employing molecular imaging techniques, we investigated if apoptosis and MMP release are interlinked. METHODS: Atherosclerosis was produced in rabbits receiving high-cholesterol diet (HC), who underwent dual radionuclide imaging with (99m)Tc-labeled matrix metalloproteinase inhibitor (MPI) and (111)In-labeled annexin A5 (AA5) using micro-SPECT/CT. %ID/g MPI and AA5 uptake was measured, followed by histological characterization. Unmanipulated animals were used as disease controls. Correlation between MPI and AA5 uptake was undertaken and relationship confirmed in culture study of activated THP-1 monocytes. RESULTS: MPI and AA5 uptake was best visualized in HC diet animals (n = 6) and reduced significantly after fluvastatin treatment (n = 4) or diet withdrawal (n = 3). %ID/g MPI (.087 ± .018%) and AA5 (.03 ± .01%) uptake was higher in HC than control (n = 6) animals (.014 ± .004%, P < .0001; .0007 ± .0002%, P < .0001), and reduced substantially after diet or statin intervention. There was a significant correlation between MPI and AA5 uptake (r = .62, P < .0001), both correlated with pathologically verified MMP-9 activity, macrophage content, and TUNEL staining. In vitro studies demonstrated MMP-9 release in culture medium from apoptotic THP-1 monocytes. CONCLUSIONS: The present study suggests that apoptosis and MMP are interrelated in atherosclerotic lesions and the targeting of more than one molecular candidate is feasible by molecular imaging.
format Text
id pubmed-2746297
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Springer-Verlag
record_format MEDLINE/PubMed
spelling pubmed-27462972009-09-23 Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis Haider, Nezam Hartung, Dagmar Fujimoto, Shinichiro Petrov, Artiom Kolodgie, Frank D. Virmani, Renu Ohshima, Satoru Liu, Han Zhou, Jun Fujimoto, Ai Tahara, Atsuko Hofstra, Leo Narula, Navneet Reutelingsperger, Chris Narula, Jagat J Nucl Cardiol Original Article BACKGROUND: Macrophage apoptosis and MMP activity contribute to vulnerability of atherosclerotic plaques to rupture. By employing molecular imaging techniques, we investigated if apoptosis and MMP release are interlinked. METHODS: Atherosclerosis was produced in rabbits receiving high-cholesterol diet (HC), who underwent dual radionuclide imaging with (99m)Tc-labeled matrix metalloproteinase inhibitor (MPI) and (111)In-labeled annexin A5 (AA5) using micro-SPECT/CT. %ID/g MPI and AA5 uptake was measured, followed by histological characterization. Unmanipulated animals were used as disease controls. Correlation between MPI and AA5 uptake was undertaken and relationship confirmed in culture study of activated THP-1 monocytes. RESULTS: MPI and AA5 uptake was best visualized in HC diet animals (n = 6) and reduced significantly after fluvastatin treatment (n = 4) or diet withdrawal (n = 3). %ID/g MPI (.087 ± .018%) and AA5 (.03 ± .01%) uptake was higher in HC than control (n = 6) animals (.014 ± .004%, P < .0001; .0007 ± .0002%, P < .0001), and reduced substantially after diet or statin intervention. There was a significant correlation between MPI and AA5 uptake (r = .62, P < .0001), both correlated with pathologically verified MMP-9 activity, macrophage content, and TUNEL staining. In vitro studies demonstrated MMP-9 release in culture medium from apoptotic THP-1 monocytes. CONCLUSIONS: The present study suggests that apoptosis and MMP are interrelated in atherosclerotic lesions and the targeting of more than one molecular candidate is feasible by molecular imaging. Springer-Verlag 2009-08-07 2009-10 /pmc/articles/PMC2746297/ /pubmed/19662466 http://dx.doi.org/10.1007/s12350-009-9107-8 Text en © The Author(s) 2009
spellingShingle Original Article
Haider, Nezam
Hartung, Dagmar
Fujimoto, Shinichiro
Petrov, Artiom
Kolodgie, Frank D.
Virmani, Renu
Ohshima, Satoru
Liu, Han
Zhou, Jun
Fujimoto, Ai
Tahara, Atsuko
Hofstra, Leo
Narula, Navneet
Reutelingsperger, Chris
Narula, Jagat
Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title_full Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title_fullStr Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title_full_unstemmed Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title_short Dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
title_sort dual molecular imaging for targeting metalloproteinase activity and apoptosis in atherosclerosis: molecular imaging facilitates understanding of pathogenesis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2746297/
https://www.ncbi.nlm.nih.gov/pubmed/19662466
http://dx.doi.org/10.1007/s12350-009-9107-8
work_keys_str_mv AT haidernezam dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT hartungdagmar dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT fujimotoshinichiro dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT petrovartiom dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT kolodgiefrankd dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT virmanirenu dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT ohshimasatoru dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT liuhan dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT zhoujun dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT fujimotoai dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT taharaatsuko dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT hofstraleo dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT narulanavneet dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT reutelingspergerchris dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis
AT narulajagat dualmolecularimagingfortargetingmetalloproteinaseactivityandapoptosisinatherosclerosismolecularimagingfacilitatesunderstandingofpathogenesis