PTD4-apoptin protein therapy inhibits tumor growth in vivo
Jun Sun1, Ying Yan, Xiao-Ting Wang
1Department of Biochemistry and Molecular Biology, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People's Republic of China.
Abstract:
Apoptin protein harbors tumor-selective cell death activity, which makes it a potential anticancer therapy candidate. This study reports an apoptin therapy approach based on protein transduction domain 4 (PTD4)-mediated transduction of recombinant apoptin protein. In vitro, the PTD4-apoptin fusion protein is located in the nucleus and induces cell death in, e.g., human hepatocarcinoma HepG2 cells. In normal human L-02 hepatocytes, PTD4-apoptin protein retained mainly cytoplasmic and did not induce detectable levels of cell death, illustrating that the PTD4 domain does not affect apoptin's tumor-selective characteristics. In vivo, liver, cervix and gastric carcinoma xenografts treated with PTD4-apoptin protein for 6 days via the tumor epidermis exhibited a significant tumor growth inhibition because of apoptin-mediated cell death. In addition, treatment of human hepatocarcinoma xenografts during 3 weeks showed that PTD4-apoptin protein has significant anticancer activity, whereas control treatment with PTD4-enhanced green fluorescence protein or saline did not. Cell death and disruption of the tumor integrity were apparent in the PTD4-apoptin transduced xenografted tumors. As important, although PTD4-apoptin protein could be detected in the epidermal tissue covering the subcutaneous tumor tissue and in several organs, such as liver and brain, of the treated mice, no tissue disruption or signs of cell death could be detected. Our in vivo data reveal that apoptin protein delivery constitutes a novel powerful and safe anticancer therapy.
Insights
Recombinant apoptin protein, delivered via protein transduction domain 4 (PTD4), effectively inhibits tumor growth by inducing cancer cell death. This novel therapy demonstrates tumor selectivity and safety in vivo, offering a promising anticancer treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Apoptin protein exhibits inherent tumor-selective cell death activity, making it a potential therapeutic agent.
- Protein transduction domains (PTDs) can facilitate cellular uptake of therapeutic proteins.
Purpose of the Study:
- To evaluate the efficacy and tumor selectivity of recombinant apoptin fused with protein transduction domain 4 (PTD4) for cancer therapy.
- To assess the in vitro and in vivo anticancer activity of PTD4-apoptin.
Main Methods:
- Constructing and utilizing a PTD4-apoptin fusion protein for in vitro and in vivo experiments.
- Testing PTD4-apoptin's effects on human hepatocarcinoma HepG2 cells and normal L-02 hepatocytes.
- Administering PTD4-apoptin to various tumor xenografts (liver, cervix, gastric carcinoma) in mice and evaluating tumor growth inhibition and safety.
Main Results:
- In vitro, PTD4-apoptin localized to the nucleus and induced cell death in HepG2 cells, while remaining cytoplasmic with no toxicity in normal L-02 cells.
- In vivo, PTD4-apoptin significantly inhibited tumor growth in liver, cervix, and gastric carcinoma xenografts.
- No detectable toxicity or cell death was observed in normal tissues of treated mice, indicating tumor selectivity.
Conclusions:
- PTD4-mediated delivery of apoptin protein is a potent and safe anticancer therapeutic strategy.
- The PTD4 domain enhances apoptin delivery without compromising its tumor-selective cell death-inducing properties.
- Apoptin protein delivery represents a novel and effective approach for cancer treatment.
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