研究概要
自然杀伤(NK)细胞在识别被抗体包被的靶标后,通过释放穿孔素、颗粒酶B以及免疫增强性细胞因子发挥强效的细胞毒性效应。
中文摘要
自然杀伤(NK)细胞在识别被抗体包被的靶标后,通过释放穿孔素、颗粒酶 B 和增强免疫的细胞因子发挥强效的细胞毒性作用。然而,肿瘤抗原表达的异质性对 NK 介导的抗体依赖细胞介导的细胞毒性作用(ADCC)构成了主要限制。为克服这一挑战,我们开发了通用抗体(Univody),一种重组融合蛋白,能够在癌细胞表面实现不依赖抗原的 Fc 片段展示。具体而言,将人 IgG1 的 Fc 区与跨膜结构域融合,并以质粒 DNA 的形式递送,从而确保稳定的膜定位以及与 NK 细胞受体的相互作用。为实现高效且选择性的递送,我们采用了苯硼酸(PBA)修饰的脂质多聚复合物(LPP-PBA),其显著增强了细胞摄取和转染效率,同时降低了细胞毒性。编码 Univody 的质粒 DNA(pUnivody)可有效使多种异质性肿瘤类型被 Fc 片段修饰,从而引起 NK 细胞活化并增强肿瘤微环境中的免疫应答。在体内,pUnivody@LPP-PBA 治疗在三阴性乳腺癌和黑色素瘤模型中均产生了显著的肿瘤抑制作用。这一不依赖抗原的平台拓宽了抗体治疗和免疫治疗的范围,为治疗多种类型的癌症提供了一种多用途的方法。
展开英文摘要原文
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.
论文信息
- 作者
- Kang S、Kang Y、Lee Y、Park J、Lee J、Kim WJ
- 单位
- Department of Chemistry, POSTECH-CATHOLIC Biomedical Engineering Institute, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.South Korea
- 期刊
- ACS nano2025 Aug 12