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Updated: Feb 4, 2026

Non-invasive In Vivo Fluorescence Optical Imaging of Inflammatory MMP Activity Using an Activatable Fluorescent Imaging Agent
Published on: May 8, 2017
Impact of MMP-2 and MMP-9 enzyme activity on wound healing, tumor growth and RACPP cleavage
Dina V Hingorani1, Csilla N Lippert2, Jessica L Crisp2
1Howard Hughes Medical Institute, UC San Diego, La Jolla, CA, United States of America.
Abstract:
Matrix metalloproteinases-2 and -9 (MMP-2/-9) are key tissue remodeling enzymes that have multiple overlapping activities critical for wound healing and tumor progression in vivo. To overcome issues of redundancy in studying their functions in vivo, we created MMP-2/-9 double knockout (DKO) mice in the C57BL/6 background to examine wound healing. We then bred the DKO mice into the polyomavirus middle T (PyVmT) model of breast cancer to analyze the role of these enzymes in tumorigenesis. Breeding analyses indicated that significantly fewer DKO mice were born than predicted by Mendelian genetics and weaned DKO mice were growth compromised compared with wild type (WT) cohorts. Epithelial wound healing was dramatically delayed in adult DKO mice and when the DKO was combined with the PyVmT oncogene, we found that the biologically related process of mammary tumorigenesis was inhibited in a site-specific manner. To further examine the role of MMP-2/-9 in tumor progression, tumor cells derived from WT or DKO PyVmT transgenic tumors were grown in WT or DKO mice. Ratiometric activatable cell penetrating peptides (RACPPs) previously used to image cancer based on MMP-2/-9 activity were used to understand differences in MMP activity in WT or knockout syngeneic tumors in WT and KO animals. Analysis of an MMP-2 selective RACPP in WT or DKO mice bearing WT and DKO PyVmT tumor cells indicated that the genotype of the tumor cells was more important than the host stromal genotype in promoting MMP-2/-9 activity in the tumors in this model system. Additional complexities were revealed as the recruitment of host macrophages by the tumor cells was found to be the source of the tumor MMP-2/-9 activity and it is evident that MMP-2/-9 from both host and tumor is required for maximum signal using RACPP imaging for detection. We conclude that in the PyVmT model, the majority of MMP-2/-9 activity in mammary tumors is associated with host macrophages recruited into the tumor rather than that produced by the tumor cells themselves. Thus therapies that target tumor-associated macrophage functions have the potential to slow tumor progression.
Insights
Matrix metalloproteinases-2 and -9 (MMP-2/-9) are crucial for wound healing and cancer. Deleting these enzymes delayed healing and inhibited breast cancer growth, revealing macrophages as the primary source of MMPs in tumors.
Area of Science:
- Biochemistry
- Oncology
- Immunology
Background:
- Matrix metalloproteinases-2 and -9 (MMP-2/-9) are essential enzymes involved in tissue remodeling, playing critical roles in both wound healing and tumor progression.
- Studying MMP-2/-9 functions in vivo is challenging due to functional redundancy between these enzymes.
Purpose of the Study:
- To investigate the in vivo roles of MMP-2 and MMP-9 in wound healing and breast cancer using a double knockout (DKO) mouse model.
- To analyze the impact of MMP-2/-9 on mammary tumorigenesis in the polyomavirus middle T (PyVmT) mouse model.
Main Methods:
- Generation of MMP-2/-9 double knockout (DKO) mice on a C57BL/6 background.
- Breeding DKO mice with the PyVmT mouse model of breast cancer.
- Assessment of wound healing, tumor growth, and macrophage recruitment.
- Utilizing Ratiometric Activatable Cell Penetrating Peptides (RACPPs) for imaging MMP activity.
Main Results:
- DKO mice exhibited delayed epithelial wound healing and compromised growth.
- Mammary tumorigenesis was inhibited in DKO mice crossed with PyVmT mice.
- Tumor cell genotype was more critical than host genotype for MMP activity.
- Host macrophages recruited by tumor cells were identified as the primary source of MMP-2/-9 activity in tumors.
Conclusions:
- MMP-2/-9 play significant roles in both wound healing and breast cancer progression.
- Targeting tumor-associated macrophage-derived MMPs presents a potential therapeutic strategy for slowing breast cancer progression.
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