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Updated: Sep 14, 2025

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
In Situ Tumor Surface Modification with Antibody Fragments for Antigen-Independent Versatile Cancer Immunotherapy
Seonwoo Kang1, Yeoul Kang1, Yelim Lee1
1Department of Chemistry, POSTECH-CATHOLIC Biomedical Engineering Institute, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.
Abstract:
Natural killer (NK) cells exert potent cytotoxic effects by releasing perforin, granzyme B, and immune-boosting cytokines upon recognition of antibody-coated targets. However, the heterogeneous expression of tumor antigens poses a major limitation to NK-mediated antibody-dependent cell-mediated cytotoxicity (ADCC). To overcome this challenge, we developed a Universal Antibody (Univody), a recombinant fusion protein that enables an antigen-independent presentation of Fc fragments on the surface of cancer cells. Specifically, the Fc region of human IgG1 was fused with a transmembrane domain and delivered in the form of plasmid DNA, ensuring stable membrane localization and interaction with NK cell receptors. For efficient and selective delivery, we employed a phenylboronic acid (PBA)-modified lipopolyplex (LPP-PBA), which significantly enhanced cellular uptake and transfection efficiency while reducing cytotoxicity. The plasmid DNA encoding Univody (pUnivody) effectively decorated a variety of heterogeneous tumor types with Fc fragments, leading to NK cell activation and enhanced immune responses in the tumor microenvironment. In vivo, pUnivody@LPP-PBA treatment resulted in marked tumor inhibition in both triple-negative breast cancer and melanoma models. This antigen-independent platform broadens the scope of antibody therapy and immunotherapy, offering a versatile approach to treating multiple types of cancers.
Insights
Researchers developed a Universal Antibody (Univody) to enhance cancer immunotherapy. This novel approach enables antigen-independent targeting of tumors by natural killer (NK) cells, improving treatment efficacy.
Area of Science:
- Immunology
- Biotechnology
- Oncology
Background:
- Natural killer (NK) cells are crucial for tumor immunity via antibody-dependent cell-mediated cytotoxicity (ADCC).
- Tumor antigen heterogeneity limits the effectiveness of traditional ADCC-based therapies.
- A method for antigen-independent NK cell activation is needed to broaden cancer treatment options.
Purpose of the Study:
- To develop a novel platform for antigen-independent cancer cell targeting by NK cells.
- To engineer a Universal Antibody (Univody) for broad applicability across diverse cancer types.
- To evaluate the efficacy of the Univody system in preclinical cancer models.
Main Methods:
- Construction of a recombinant fusion protein (Univody) linking Fc fragments to a transmembrane domain.
- Delivery of Univody-encoding plasmid DNA using phenylboronic acid-modified lipopolyplexes (LPP-PBA).
- Assessment of Fc fragment presentation on cancer cells and NK cell activation.
- Preclinical in vivo studies in triple-negative breast cancer and melanoma models.
Main Results:
- Univody successfully decorated heterogeneous cancer cells with Fc fragments in an antigen-independent manner.
- LPP-PBA facilitated efficient cellular uptake and transfection, enhancing Univody delivery.
- Univody treatment activated NK cells and promoted anti-tumor immune responses.
- Significant tumor inhibition was observed in treated triple-negative breast cancer and melanoma models.
Conclusions:
- The Univody platform offers a versatile strategy for enhancing NK cell-mediated immunotherapy.
- This antigen-independent approach overcomes limitations of traditional antibody therapies targeting specific tumor antigens.
- Univody holds promise for a broader range of cancer treatments, including immunotherapy and antibody therapy.
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