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Synthesis and Characterization of PDMS-PMOXA-Based Polymersomes Sensitive to MMP-9 for Application in Breast Cancer
Fabiola Porta1, Daniel Ehrsam1, Claudia Lengerke2
1Biopharmacy, Department of Pharmaceutical Sciences , University of Basel , Klingelbergstrasse 50 , 4056 Basel , Switzerland.
Abstract:
Cytotoxic compounds used to treat cancer are often associated with adverse events. The development of formulations activated by tumor-specific triggers would allow a reduction of systemic exposure while maintaining therapeutic concentrations in the tumor. One enzyme with proteolytic activity reported to be involved in tumor progression and assumed to be enhanced in the tumor environment is the matrix metalloproteinase 9 (MMP-9). In our study, we aimed to develop surface-modified PDMS-PMOXA polymersomes able to release their cytotoxic payload upon digestion by MMP-9. To test the applicability of such a system in breast cancer, this tumor entity was assessed for MMP-9 expression, supporting breast cancer as a potential target. The surface-modified polymersomes were synthesized and formulated resulting in paclitaxel-loaded particles of about 320 ± 153.15 nm in size with a surface potential of 0.04 ± 0.007 mV. After the expression and activity of MMP-9 in MCF7 cells were verified, this cell line was used for further analysis. Treatment of MCF7 cells with the polymersomes significantly reduced cell viability, this effect was abolished after addition of MMP-inhibitors, suggesting proteolytic activation. In zebrafish embryos, the polymersomes were observed in the circulation with some enrichment in liver and agglomerates in the caudal veins. Importantly, in zebrafish embryos xenografted with mKate2-expressing MCF7 cells, the amount of tumor cells, quantified by detecting the copies of the heterologously expressed fluorescent protein, significantly decreased after treatment with PDMS-PMOXA-SRL-paclitaxel polymersomes. Taken together, our data suggest that polymersomes modified with an MMP-9 labile peptide and loaded with paclitaxel can be formulated, and that these particles exert pharmacological activity upon enzymatic digestion.
Insights
Researchers developed novel polymersomes that release cancer drugs specifically when encountering matrix metalloproteinase 9 (MMP-9), an enzyme common in tumors. This targeted drug delivery reduces systemic exposure and effectively shrinks breast cancer tumors in preclinical models.
Area of Science:
- Biomaterials Science
- Nanotechnology
- Cancer Therapeutics
Background:
- Cytotoxic chemotherapy often causes adverse events due to systemic exposure.
- Tumor-specific drug activation can minimize side effects and enhance efficacy.
- Matrix metalloproteinase 9 (MMP-9) is upregulated in tumors and can serve as a tumor-specific trigger.
Purpose of the Study:
- To develop MMP-9-sensitive polymersomes for targeted cancer drug delivery.
- To evaluate the efficacy of paclitaxel-loaded polymersomes in breast cancer models.
Main Methods:
- Synthesized surface-modified PDMS-PMOXA polymersomes loaded with paclitaxel.
- Assessed MMP-9 expression in MCF7 breast cancer cells.
- Evaluated polymersome cytotoxicity and MMP-9 triggered release in vitro.
- Investigated polymersome biodistribution and anti-tumor efficacy in zebrafish embryo models.
Main Results:
- Paclitaxel-loaded polymersomes were successfully formulated with a size of ~320 nm.
- Polymersomes demonstrated MMP-9-dependent cytotoxicity in MCF7 cells.
- In vivo studies showed polymersome circulation, tumor enrichment, and significant tumor reduction in zebrafish xenografts.
- MMP-9 inhibition abolished the cytotoxic effect, confirming targeted activation.
Conclusions:
- PDMS-PMOXA polymersomes modified with an MMP-9 labile peptide can be effectively loaded with paclitaxel.
- These drug-loaded polymersomes exhibit MMP-9-triggered drug release and potent anti-tumor activity.
- This MMP-9-sensitive drug delivery system shows promise for targeted breast cancer therapy.
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