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Targeting scFv-Fc-scTRAIL fusion proteins to tumor cells
Meike Hutt1, Sina Fellermeier-Kopf1, Oliver Seifert1
1Institute of Cell Biology and Immunology, University of Stuttgart, Stuttgart 70569, Germany.
Abstract:
Fusion proteins combining hexavalent TRAIL with antibody fragments allow for a targeted delivery and efficient apoptosis induction in tumor cells. Here, we analyzed scFv-Fc-scTRAIL molecules directed against EGFR, HER2, HER3, and EpCAM as well as an untargeted Fc-scTRAIL fusion protein for their potentials to induce cell death both in vitro and in a xenograft tumor model in vivo. The scFv-Fc-scTRAIL fusion protein directed against EGFR as well as the fusion protein directed against EpCAM showed targeting effects on the two tested colorectal carcinoma cell lines Colo205 and HCT116, while a fusion protein targeting HER3 was more effective than untargeted Fc-scTRAIL only on Colo205 cells. Interestingly, another anti-HER3 scFv-Fc-scTRAIL fusion protein exhibiting approximately 10-fold weaker antigen binding as well as the HER2-directed molecule were unable to increase cytotoxicity compared to Fc-scTRAIL. A comparison of EC50 values of cell death induction and antigen binding supports the assumption that high affinity antigen binding is one of the requirements for in vitro targeting effects. Furthermore, a minimal number of expressed target antigens might be required for increased cytotoxicity of targeted compared to non-targeted molecules. In a Colo205 s.c. xenograft tumor model, strongest antitumor activity was observed for the anti-HER3 scFv-Fc-scTRAIL fusion protein based on antibody 3-43, with complete tumor remissions after six twice-weekly injections. Surprisingly, a similar in vivo activity was also observed for untargeted Fc-scTRAIL in this tumor model, indicating that additional factors contribute to the potent efficacy of targeted as well as untargeted hexavalent Fc-scTRAIL fusion proteins in vivo.
Insights
Engineered fusion proteins targeting tumor cells show potential for cancer therapy. High-affinity binding and antigen expression are key for effective in vitro targeting, while in vivo efficacy involves additional factors.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- TRAIL (TNF-related apoptosis-inducing ligand) fusion proteins offer targeted cancer therapy by inducing apoptosis.
- Antibody fragments combined with TRAIL can enhance delivery and efficacy against tumor cells.
Purpose of the Study:
- To evaluate scFv-Fc-scTRAIL fusion proteins targeting EGFR, HER2, HER3, and EpCAM for tumor cell death induction.
- To compare the in vitro and in vivo efficacy of targeted fusion proteins against untargeted controls.
Main Methods:
- Construction and testing of scFv-Fc-scTRAIL fusion proteins against specific tumor antigens.
- In vitro cytotoxicity assays on colorectal carcinoma cell lines (Colo205, HCT116).
- In vivo efficacy assessment in a Colo205 xenograft tumor model.
Main Results:
- EGFR- and EpCAM-targeted fusion proteins demonstrated targeting effects in vitro.
- HER3-targeted fusion proteins showed efficacy on Colo205 cells, but weaker binding variants did not.
- High affinity and sufficient antigen expression are crucial for in vitro targeting.
- Strong antitumor activity was observed in vivo for an anti-HER3 fusion protein, with comparable results for untargeted Fc-scTRAIL.
Conclusions:
- Targeted scFv-Fc-scTRAIL fusion proteins show promise for cancer treatment, with efficacy dependent on antigen binding affinity and expression.
- In vivo antitumor activity is influenced by factors beyond simple antigen targeting, suggesting complex mechanisms at play.
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