工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
我们的方法将酶/前药治疗和免疫治疗整合到一个单一的细菌递送系统中,通过提供合理设计的空间控制化学免疫治疗框架,克服了传统疗法的关键局限性。
英文原题:Superior in-vivo efficacy of integrated tumor neoantigen vaccination with adoptive neoantigen-reactive T-cell therapy in solid tumor.
新抗原疫苗联合NRT细胞及抗PD1治疗在实体瘤中展现出强大的抗肿瘤疗效,是一种安全有效的新型免疫治疗手段。
肿瘤突变产生的新抗原是癌症免疫治疗的关键靶点。本研究评估了联合免疫治疗(新抗原疫苗 + 过继性新抗原反应性T细胞,NRT)在实体瘤中的疗效,为临床试验奠定基础。
候选新抗原通过对MC38、B16-MO4和Hepa1-6肿瘤进行全外显子/转录组测序预测,并通过ELISPOT验证。优化了NRT制备;在荷瘤小鼠中测试了肽疫苗+NRT的疗效。预防性评估了Neo-DC疫苗(mRNA电穿孔DC),并通过细胞因子、肿瘤生长和TME变化评估了mRNA-DC+NRT+anti-PD1的疗效。
在MC38、B16-MO4和Hepa1-6肿瘤细胞中分别鉴定出4、5和8个新抗原表位。来自新抗原疫苗免疫宿主的T淋巴细胞促进NRT诱导和扩增,产生的新抗原特异性T细胞比例更高、杀瘤能力更强的NRT细胞。通过实时细胞杀伤 assay(RTCA)和流式细胞术验证了其肿瘤新抗原特异性细胞毒性。新抗原肽疫苗联合NRT治疗抑制了肿瘤生长,并改变TME以利于CD8+T细胞浸润。mRNA-DC疫苗显示出预防 efficacy 和淋巴结归巢。Hepa1-6小鼠中的多联合免疫治疗诱导了部分肿瘤消退,TME中基质金属蛋白酶9(MMP9)、Ki67和TGF-β1表达降低,TNF-α升高,M1/M2比值升高,CD8+T细胞浸润增强。
OBJECTIVE: Neoantigens from tumor mutations are key cancer immunotherapy targets. This study evaluated the efficacy of combined immunotherapy (neoantigen vaccines + adoptive neoantigen-reactive T cells, NRT) in solid tumors to lay a foundation for clinical trials. METHODS: Candidate neoantigens were predicted via whole-exome/transcriptome sequencing of MC38, B16-MO4, and Hepa1-6 tumors, validated by ELISPOT. NRT preparation was optimized; peptide vaccine+NRT efficacy was tested in tumor-bearing mice. Neo-DC vaccines (mRNA-electroporated DCs) were evaluated prophylactically, and mRNA-DC+NRT+anti-PD1 efficacy was assessed by cytokine, tumor growth, and TME changes. RESULTS: A total of 4, 5, and 8 neoantigen epitopes were identified in MC38, B16-MO4, and Hepa1-6 tumor cells, respectively. T lymphocytes from neoantigen vaccine-immunized hosts promoted NRT induction and expansion, yielding NRT cells with higher neoantigen-specific T cell proportions and stronger tumor-killing capacity. Their tumor neoantigen-specific cytotoxicity was verified by Real-time cell killing assay (RTCA) and flow cytometry. Combined neoantigen peptide vaccine and NRT therapy inhibited tumor growth and altered the TME to favor CD8+T cell infiltration. mRNA-DC vaccines showed prophylactic efficacy and lymph node homing. Multi-combination immunotherapy in Hepa1-6 mice induced partial tumor regression, with reduced TME expression of Matrix Metalloproteinase 9 (MMP9), Ki67, and TGF-β1, increased TNF-α, elevated M1/M2 ratio, and enhanced CD8+T cell infiltration. CONCLUSION: Neoantigen vaccines combined with NRT cells and anti-PD1 therapy exhibit robust antitumor efficacy in solid tumors, serving as a safe and effective novel immunotherapeutic approach.
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