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Updated: Aug 15, 2025

Microwave-driven Synthesis of Iron Oxide Nanoparticles for Fast Detection of Atherosclerosis
Published on: March 22, 2016
Molecular Imaging of Matrix Metalloproteinase-2 in Atherosclerosis Using a Smart Multifunctional PET/MRI Nanoparticle
Yingfeng Tu1,2, Xiaowei Ma3, Hao Chen2,4
1Department of Cardiology, The First Affiliated Hospital of Harbin Medical University, Harbin, Heilongjiang, People's Republic of China.
Background:
Matrix metalloproteinases from macrophages are important intraplaque components that play pivotal roles in plaque progression and regression. This study sought to develop a novel multifunctional positron emission tomography (PET) and magnetic resonance imaging (MRI) contrast agents based on MMP-2 cleavable nanoparticles to noninvasive assessment of MMP-2 activity in mouse carotid atherosclerotic plaques.
Results:
Macrophage-rich vascular lesions were induced by carotid ligation plus high-fat diet and streptozotocin-induced diabetes in CL57/BL6 mice. To render iron oxide nanoparticles (IONP) specific for the extracellular MMP-2, the magnetic nanoparticle base material has been derivatized with 1,4,7-triazacyclononane-1,4,7-triacetic acid (NOTA) for the nuclear tracer 64Cu labeling and the MMP-2-cleavable peptide modified with polyethylene glycol 2000, yielding a multi-modality reporter (64Cu-NOTA-IONP@MMP2c-PEG2K, MMP2cNPs) for PET/MR imaging. Small animal PET imaging and biodistribution data revealed that MMP2cNPs exhibited remarkable plaque uptake (3.06 ± 0.87% ID/g and 1.83 ± 0.28% ID/g at 4 and 12 h, respectively). And MMP2cNPs were rapidly cleared from the contralateral normal carotid artery, resulting in excellent plaque-to-normal carotid artery contrasts. Furthermore, in vivo MRI showed a preferential accumulation of MMP2cNPs in atherosclerotic lesions compared with the non-cleavable reference compound, MMP2ncNPs. In addition, histological analyses revealed iron accumulations in the carotid atherosclerotic plaque, in colocalization with MMP-2 expression and macrophages.
Conclusion:
Using a combination of innovative imaging modalities, in this study, we demonstrate the feasibility of applying the novel smart MMP2cNPs as a PET/MR hybrid imaging contrast agent for detection of MMP-2 in atherosclerotic plaque in vivo.
Insights
Researchers developed novel nanoparticles for PET/MRI imaging to detect matrix metalloproteinase-2 (MMP-2) activity in atherosclerosis. These smart nanoparticles show high plaque uptake and excellent contrast, enabling noninvasive assessment of MMP-2 in atherosclerotic plaques.
Area of Science:
- Biomedical Imaging
- Nanotechnology
- Cardiovascular Research
Background:
- Matrix metalloproteinases (MMPs), particularly MMP-2 from macrophages, are key players in atherosclerotic plaque development and regression.
- Noninvasive assessment of MMP-2 activity is crucial for understanding and managing atherosclerosis.
Purpose of the Study:
- To develop novel multifunctional positron emission tomography (PET) and magnetic resonance imaging (MRI) contrast agents.
- To create MMP-2 cleavable nanoparticles for noninvasive assessment of MMP-2 activity in mouse carotid atherosclerotic plaques.
Main Methods:
- Developed iron oxide nanoparticles (IONPs) derivatized with NOTA for 64Cu labeling and an MMP-2 cleavable peptide with PEG.
- Created a multi-modality reporter (64Cu-NOTA-IONP@MMP2c-PEG2K, MMP2cNPs) for PET/MR imaging.
- Induced macrophage-rich vascular lesions in CL57/BL6 mice via carotid ligation, high-fat diet, and diabetes.
Main Results:
- MMP2cNPs demonstrated significant plaque uptake (3.06 ± 0.87% ID/g at 4h, 1.83 ± 0.28% ID/g at 12h).
- Rapid clearance from normal carotid arteries resulted in excellent plaque-to-normal artery contrast.
- In vivo MRI confirmed preferential accumulation in atherosclerotic lesions compared to non-cleavable nanoparticles.
- Histology showed iron accumulation colocalized with MMP-2 expression and macrophages in plaques.
Conclusions:
- Demonstrated the feasibility of using novel MMP2cNPs as a PET/MR hybrid imaging agent.
- Successfully detected MMP-2 in atherosclerotic plaques in vivo.
- Highlighted the potential of smart nanoparticles for noninvasive assessment of MMP-2 in atherosclerosis.

