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The anti-tumoral potential of the saporin-based uPAR-targeting chimera ATF-SAP
S Zuppone1, C Assalini1, C Minici2
1Urological Research Institute, Division of Experimental Oncology, IRCCS San Raffaele Scientific Institute, Milano, Italy.
Abstract:
The development of personalized therapies represents an urgent need owing to the high rate of cancer recurrence and systemic toxicity of conventional drugs. So far, targeted toxins have shown promising results as potential therapeutic compounds. Specifically, toxins conjugated to antibodies or fused to growth factors/enzymes have been largely demonstrated to selectively address and kill cancer cells. We investigated the anti-tumor potential of a chimeric recombinant fusion protein formed by the Ribosome Inactivating Protein saporin (SAP) and the amino-terminal fragment (ATF) of the urokinase-type plasminogen activator (uPA), whose receptor has been shown to be over-expressed on the surface of aggressive tumors. ATF-SAP was recombinantly produced by the P. pastoris yeast and its activity was assessed on a panel of bladder and breast cancer cell lines. ATF-SAP resulted to be highly active in vitro, as nano-molar concentrations were sufficient to impair viability on tumor cell lines. In contrast to untargeted toxins, the chimeric fusion protein displayed a significantly improved toxic effect in uPAR-expressing cells, demonstrating that the selective activity was due to the presence of the targeting moiety. Fibroblasts were not sensitive to ATF-SAP despite uPAR expression, indicating that cell-specific receptor-mediated internalization pathway(s) might be considered. The in vivo anti-tumor effect of the chimera was shown in a bladder cancer xenograft model. Current findings indicate ATF-SAP as a suitable anti-tumoral therapeutic option to cope with cancer aggressiveness, as a single treatment or in combination with traditional therapeutic approaches, to appropriately address the intra- and inter- tumor heterogeneity.
Insights
A novel fusion protein, ATF-SAP, effectively targets and eliminates aggressive cancer cells by leveraging the urokinase plasminogen activator receptor (uPAR). This targeted toxin shows promise for personalized cancer therapies with reduced systemic toxicity.
Area of Science:
- Biotechnology
- Oncology
- Molecular Biology
Background:
- Personalized therapies are crucial due to cancer recurrence and conventional drug toxicity.
- Targeted toxins, like antibody-drug conjugates, show promise for selective cancer cell killing.
- The urokinase plasminogen activator receptor (uPAR) is over-expressed on aggressive tumors.
Purpose of the Study:
- To investigate the anti-tumor potential of a chimeric fusion protein, ATF-SAP.
- To assess the selective toxicity of ATF-SAP against cancer cells expressing uPAR.
- To evaluate the in vivo efficacy of ATF-SAP in a preclinical cancer model.
Main Methods:
- Recombinant production of ATF-SAP using P. pastoris yeast.
- In vitro assessment of ATF-SAP activity on bladder and breast cancer cell lines.
- In vivo evaluation of ATF-SAP in a bladder cancer xenograft model.
Main Results:
- ATF-SAP demonstrated high in vitro activity, with nanomolar concentrations impairing tumor cell viability.
- The fusion protein showed significantly improved toxicity in uPAR-expressing cells compared to untargeted toxins.
- ATF-SAP exhibited in vivo anti-tumor effects in a bladder cancer xenograft model.
- Fibroblasts expressing uPAR were not sensitive, suggesting specific internalization pathways.
Conclusions:
- ATF-SAP is a potent anti-tumor agent with selective toxicity mediated by its targeting moiety.
- The fusion protein offers a promising therapeutic option for aggressive cancers, potentially addressing tumor heterogeneity.
- ATF-SAP could be used as a standalone treatment or in combination with conventional therapies.
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