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Published on: February 21, 2025
Novel engineered TRAIL-based chimeric protein strongly inhibits tumor growth and bypasses TRAIL resistance
Piotr Rozga1, Damian Kloska2, Sebastian Pawlak1
1Department of Drug Discovery, Adamed Pharma S.A. Pienkow, Czosnow, Poland.
Abstract:
Targeting of the TRAIL-DR4/5 pathway was proposed as a promising approach for specific induction of apoptosis in cancer cells. Clinical trials, however, showed inadequate efficiency of TRAIL as a monotherapy. It is a widely held view that the application of multifunctional molecules or combination therapy may lead to substantial improvement. Here, we demonstrate the effectiveness and safety of a novel chimeric protein, AD-O51.4, which is a TRAIL equipped with positively charged VEGFA-derived effector peptides. The study was performed in multiple cancer cell line- and patient-derived xenografts. A pharmacokinetic profile was established in monkeys. AD-O51.4 strongly inhibits tumor growth, even leading to complete long-term tumor remission. Neither mice nor monkeys treated with AD-O51.4 demonstrate symptoms of drug toxicity. AD-O51.4 exhibits a satisfactory half-life in plasma and accumulates preferentially in tumors. The cellular mechanism of AD-O51.4 activity involves both cytotoxic effects in tumor cells and antiangiogenic effects on the endothelium. The presence of DRs in cancer cells is crucial for AD-O51.4-driven apoptosis execution. The TRAIL component of the fusion molecule serves as an apoptosis inducer and a cellular anchor for the effector peptides in TRAIL-sensitive and TRAIL-resistant cancer cells, respectively. The FADD-dependent pathway, however, seems to be not indispensable in death signal transduction; thus, AD-O51.4 is capable of bypassing the refractoriness of TRAIL. AD-O51.4-driven cell death, which exceeds TRAIL activity, is achieved due to the N-terminally fused polypeptide, containing VEGFA-derived effector peptides. The high anticancer efficiency of AD-O51.4 combined with its safety has led to the entry of AD-O51.4 into toxicological studies.
Insights
A novel chimeric protein, AD-O51.4, effectively targets cancer cells by inducing apoptosis and inhibiting tumor growth. This TRAIL-fusion protein shows potent anticancer activity with no observed toxicity in preclinical studies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Targeting the TRAIL-DR4/5 pathway for cancer apoptosis induction showed limited efficacy as monotherapy.
- Combination therapy or multifunctional molecules are needed to improve TRAIL's anticancer potential.
- Existing treatments face challenges with TRAIL-resistant cancers.
Purpose of the Study:
- To evaluate the efficacy and safety of a novel chimeric protein, AD-O51.4, for cancer treatment.
- To investigate the mechanism of action of AD-O51.4, including its cytotoxic and antiangiogenic effects.
- To assess the pharmacokinetic profile and tumor accumulation of AD-O51.4.
Main Methods:
- In vitro studies using multiple cancer cell lines.
- In vivo studies using patient-derived xenografts in mice.
- Pharmacokinetic profiling in non-human primates (monkeys).
Main Results:
- AD-O51.4 demonstrated significant tumor growth inhibition and complete long-term tumor remission in xenografts.
- No signs of toxicity were observed in mice or monkeys treated with AD-O51.4.
- The protein exhibited favorable pharmacokinetics, with preferential tumor accumulation and a satisfactory plasma half-life.
- AD-O51.4 induced apoptosis via cytotoxic and antiangiogenic mechanisms, bypassing TRAIL refractoriness.
Conclusions:
- AD-O51.4 is a highly effective and safe anticancer agent with dual cytotoxic and antiangiogenic mechanisms.
- The novel fusion protein overcomes TRAIL resistance, offering a promising therapeutic strategy.
- AD-O51.4's potent anticancer activity and safety profile warrant further clinical investigation, with toxicological studies underway.
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