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Integrin Targeting Enhances the Antimelanoma Effect of Annexin V in Mice
Jingyi Zhu1, Xiangning Li2, Wenling Gao2
1Beijing Key Lab of Biotechnology and Genetic Engineering, College of Life Sciences, Beijing Normal University, Beijing 100875, China.
Abstract:
Malignant melanoma, an increasingly common form of skin cancer, is a major threat to public health, especially when the disease progresses past skin lesions to the stage of advanced metastasis. Targeted drug development is an effective strategy for the treatment of malignant melanoma. In this work, a new antimelanoma tumor peptide, the lebestatin-annexin V (designated LbtA5) fusion protein, was developed and synthesized by recombinant DNA techniques. As a control, annexin V (designated ANV) was also synthesized by the same method. The fusion protein combines annexin V, which specifically recognizes and binds phosphatidylserine, with the disintegrin lebestatin (lbt), a polypeptide that specifically recognizes and binds integrin α1β1. LbtA5 was successfully prepared with good stability and high purity while retaining the dual biological activity of ANV and lbt. MTT assays demonstrated that both ANV and LbtA5 could reduce the viability of melanoma B16F10 cells, but the activity of the fusion protein LbtA5 was superior to that of ANV. The tumor volume growth was slowed in a mouse xenograft model treated with ANV and LbtA5, and the inhibitory effect of high concentrations of LbtA5 was significantly better than that of the same dose of ANV and was comparable to that of DTIC, a drug used clinically for melanoma treatment. The hematoxylin and eosin (H&E) staining test showed that ANV and LbtA5 had antitumor effects, but LbtA5 showed a stronger ability to induce melanoma necrosis in mice. Immunohistochemical experiments further showed that ANV and LbtA5 may inhibit tumor growth by inhibiting angiogenesis in tumor tissue. Fluorescence labeling experiments showed that the fusion of ANV with lbt enhanced the targeting of LbtA5 to mouse melanoma tumor tissue, and the amount of target protein in tumor tissue was significantly increased. In conclusion, effective coupling of the integrin α1β1-specific recognition molecule lbt confers stronger biological antimelanoma effects of ANV, which may be achieved by the dual effects of effective inhibition of B16F10 melanoma cell viability and inhibition of tumor tissue angiogenesis. The present study describes a new potential strategy for the application of the promising recombinant fusion protein LbtA5 in the treatment of various cancers, including malignant melanoma.
Insights
A novel fusion protein, lebestatin-annexin V (LbtA5), demonstrates superior antimelanoma activity by targeting cancer cells and inhibiting angiogenesis. This development offers a promising new strategy for treating malignant melanoma and other cancers.
Area of Science:
- Oncology
- Biotechnology
- Molecular Biology
Background:
- Malignant melanoma is a significant public health concern, particularly in its metastatic stages.
- Targeted drug development offers an effective treatment strategy for melanoma.
- The fusion protein LbtA5 combines annexin V (ANV) for phosphatidylserine binding and lebestatin (lbt) for integrin α1β1 binding.
Purpose of the Study:
- To develop and synthesize a novel fusion protein, LbtA5, for potential melanoma treatment.
- To evaluate the antimelanoma efficacy and mechanism of action of LbtA5 compared to ANV.
Main Methods:
- Recombinant DNA techniques were used to synthesize LbtA5 and ANV.
- In vitro assays (MTT) assessed melanoma cell viability.
- In vivo studies utilized a mouse xenograft model to evaluate tumor growth inhibition.
- Histological analyses (H&E staining, immunohistochemistry) and fluorescence labeling determined antitumor effects and tissue targeting.
Main Results:
- LbtA5 exhibited enhanced antimelanoma activity compared to ANV in cell viability assays.
- LbtA5 significantly inhibited tumor growth in a mouse model, comparable to the clinical drug DTIC.
- LbtA5 demonstrated a stronger ability to induce melanoma necrosis and inhibit tumor angiogenesis.
- Fluorescence labeling confirmed enhanced targeting of LbtA5 to melanoma tumor tissue.
Conclusions:
- The fusion protein LbtA5 shows potent antimelanoma effects through dual mechanisms: inhibiting cell viability and tumor angiogenesis.
- LbtA5 represents a promising new therapeutic strategy for malignant melanoma and potentially other cancers.
- The enhanced targeting and dual activity of LbtA5 underscore its potential as a novel cancer treatment.
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