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Updated: Jan 29, 2026

Multiple-mouse Neuroanatomical Magnetic Resonance Imaging
Published on: February 27, 2011
Visualizing the Distribution of Matrix Metalloproteinases in Ischemic Brain Using In Vivo 19F-Magnetic Resonance
Vincent J Huber1, Hironaka Igarashi1, Satoshi Ueki1
1Center for Integrated Human Brain Science, Brain Research Institute, University of Niigata, Niigata, Japan.
Abstract:
Matrix metalloproteinases (MMPs) damage the neurovascular unit, promote the blood-brain barrier (BBB) disruption following ischemic stroke, and play essential roles in hemorrhagic transformation (HT), which is one of the most severe side effects of thrombolytic therapy. However, no biomarkers have presently been identified that can be used to track changes in the distribution of MMPs in the brain. Here, we developed a new 19F-molecular ligand, TGF-019, for visualizing the distribution of MMPs in vivo using 19F-magnetic resonance spectroscopic imaging (19F-MRSI). We demonstrated TGF-019 has sufficient sensitivity for the specific MMPs suspected in evoking HT during ischemic stroke, i.e., MMP2, MMP9, and MMP3. We then utilized it to assess those MMPs at 22 to 24 hours after experimental focal cerebral ischemia on MMP2-null mice, as well as wild-type mice with and without the systemic administration of the recombinant tissue plasminogen activator (rt-PA). The 19F-MRSI of TGN-019-administered mice showed high signal intensity within ischemic lesions that correlated with total MMP2 and MMP9 activity, which was confirmed by zymographic analysis of ischemic tissues. Based on the results of this study, 19F-MRSI following TGN-019 administration can be used to assess potential therapeutic strategies for ischemic stroke.
Insights
Researchers developed a novel 19F-molecular ligand, TGF-019, to visualize matrix metalloproteinases (MMPs) in the brain. This new tool aids in assessing MMPs in ischemic stroke and potential therapeutic strategies.
Area of Science:
- Neuroscience
- Biomedical Imaging
- Biochemistry
Background:
- Matrix metalloproteinases (MMPs) contribute to blood-brain barrier disruption and hemorrhagic transformation after ischemic stroke.
- Current methods lack biomarkers to track MMP distribution in the brain, hindering therapeutic development.
Purpose of the Study:
- To develop a novel 19F-molecular ligand for in vivo visualization of MMPs in the brain.
- To assess the utility of this ligand in experimental ischemic stroke models.
Main Methods:
- Development of a 19F-molecular ligand, TGF-019.
- Utilizing 19F-magnetic resonance spectroscopic imaging (19F-MRSI) for MMP visualization.
- Employing experimental focal cerebral ischemia models in mice (MMP2-null and wild-type) with and without rt-PA treatment.
Main Results:
- TGF-019 demonstrated sensitivity for MMP2, MMP9, and MMP3.
- 19F-MRSI showed high signal intensity in ischemic lesions, correlating with MMP2 and MMP9 activity.
- Zymographic analysis confirmed MMP activity in ischemic tissues.
Conclusions:
- 19F-MRSI with TGF-019 enables in vivo assessment of MMP distribution in ischemic stroke.
- This approach can aid in evaluating therapeutic strategies targeting MMPs in stroke.
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