研究概要
依据:免疫病毒治疗已成为一种有前景的癌症治疗手段,因为它可通过全身免疫刺激直接以细胞毒方式清除肿瘤。
中文摘要
研究背景:免疫病毒治疗是一种有前景的癌症治疗方法,可直接杀伤肿瘤并激发全身免疫反应,但其临床疗效受递送途径不当、强烈抗病毒反应及肿瘤免疫抑制微环境等因素限制。方法:为克服这些挑战,我们提出一种表面工程策略:以半乳糖-聚乙二醇(PEG)聚合物链包覆溶瘤单纯疱疹病毒(oHSV),以减轻宿主抗病毒反应,并在全身给药时通过限制病毒暴露于循环系统实现肿瘤选择性靶向。我们在动物模型中评估糖基化PEG修饰oHSV的抗肿瘤效果,检测肿瘤生长及肿瘤微环境(TME)中浸润的CD8+ T细胞和NK细胞;并在小鼠中测量全身给药后针对oHSV的IgG中和抗体水平。结果:糖基化PEG修饰未影响oHSV复制,但使其对肝细胞癌细胞中过表达的去唾液酸糖蛋白受体(ASGPR)具有高度特异性,从而选择性靶向癌细胞并深入肿瘤,同时避免扩散至脑部。该策略还有效降低针对oHSV的中和抗体水平,从而减轻宿主抗病毒免疫反应。值得注意的是,糖基化PEG-oHSV通过减少调节性T细胞、增加活化CD8+ T细胞和NK细胞浸润及抗肿瘤细胞因子释放,缓解肿瘤免疫抑制微环境并抑制肿瘤进展。结论:研究结果提出了一种具有广泛适用性的策略,可通过全身给药增强非基因工程改造溶瘤病毒的癌症免疫病毒治疗效果。该策略有望克服现有免疫病毒治疗的局限,并改善癌症患者的临床结局。
展开英文摘要原文
Rationale: Immuno-virotherapy has emerged as a promising approach for cancer treatment, as it directly and cytotoxically eliminates tumors with systemic immune stimulation. However, the clinical efficacy of this approach remains limited by inappropriate delivery routes, robust antiviral responses, and the tumor immunosuppressive microenvironment. Methods: To address these challenges, we propose a surface engineering strategy that masks oncolytic herpes simplex virus (oHSV) with a galactose-polyethylene-glycol (PEG) polymer chain to minimize host antiviral responses and selectively targets tumors by limiting exposure to circulation upon systemic administration. We evaluated the antitumor efficacy of glycosylated-PEG-oHSV by examining tumor growth in animal models and analyzing tumor-infiltrating CD8 + T cells and NK cells in the tumor microenvironment (TME). To assess the neutralizing antibody levels after systemic administration of glycosylated-PEG-oHSV, we utilized a mouse model and measured oHSV-specific IgG. Results: We demonstrate that the glycosylated-PEG modified oHSV does not affect the replication of oHSV yet exhibits high specificity to the asialoglycoprotein receptor (ASGPR) overexpressed in hepatocellular carcinoma cells. This results in selectively targeting cancer cells and deep penetration into tumors while avoiding spreading into the brain. Our approach also effectively reduces oHSV-specific neutralizing antibody levels to mitigate host antiviral immune response. Notably, our glycosylated-PEG-oHSV alleviates the immunosuppressive microenvironment within tumors by reducing regulatory T cells, augmenting the infiltration of activated CD8 + T cells and NK cells with increasing release of anti-tumor cytokines, to impede tumor progression. Conclusion: Our findings offer a widely applicable and universal strategy to enhance cancer immuno-virotherapy through systemic administration of non-genetically engineered oncolytic viruses. This approach has the potential to overcome the limitations of current immune-virotherapy strategies and may improve clinical outcomes for cancer patients.
论文信息
- 作者
- Liang Y、Wang B、Chen Q、Fu X、Jiang C、Lin Z、Zhuang Q、Zeng Y
- 单位
- The United Innovation of Mengchao Hepatobiliary Technology Key Laboratory of Fujian Province, Mengchao Hepatobiliary Hospital of Fujian Medical University, Fuzhou 350025, P. R. China.China
- 文献类型
- 非美国政府资助研究
- 期刊
- Theranostics2023