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:Internal checkpoint regulates T cell neoantigen reactivity and susceptibility to PD1 blockade.
CISH 负向调控人 T 细胞效应功能,其基因敲除为提升过继性 TIL 疗法的疗效提供了新途径。
背景:过继转移TIL(肿瘤浸润淋巴细胞)并非总能诱导肿瘤消退。因此,调节抑制T细胞效应功能和新抗原识别的内在因素,可能改善TIL治疗结局。我们此前在小鼠中发现,细胞因子诱导的SH2蛋白(CISH)是T细胞功能性亲合力的重要调节因子。本研究探讨CISH调节人实体瘤T细胞效应功能的机制,并证明利用CRISPR/Cas9破坏CISH可增强TIL对新抗原的识别及其对免疫检查点阻断的应答。方法:研究人员采用单细胞基因表达谱分析,发现患者来源TIL中CISH高表达与TIL活化呈负相关;并开发符合GMP要求的CRISPR/Cas9基因编辑流程,评估破坏CISH对人外周血T细胞和TIL分子及功能表型的影响。随后将Cish功能受损的肿瘤特异性T细胞过继转移至荷瘤小鼠,并评估单独使用或联合免疫检查点阻断的疗效。结果:CISH表达与T细胞功能障碍相关。CRISPR/Cas9敲除CISH可使T细胞过度活化,并提高其对肿瘤来源新抗原的功能性亲合力,且不影响T细胞成熟。体内实验中,敲除Cish还提高了对免疫检查点阻断的敏感性。结论:CISH负向调控人T细胞效应功能;通过基因编辑破坏CISH,为提升过继性TIL治疗疗效提供了新的途径。资助:本研究由美国Intima Bioscience资助,部分经美国国家癌症研究所癌症研究中心院内项目资助。
BACKGROUND: Adoptive transfer of tumor-infiltrating lymphocytes (TIL) fails to consistently elicit tumor rejection. Manipulation of intrinsic factors that inhibit T cell effector function and neoantigen recognition may therefore improve TIL therapy outcomes. We previously identified the cytokine-induced SH2 protein (CISH) as a key regulator of T cell functional avidity in mice. Here, we investigate the mechanistic role of CISH in regulating human T cell effector function in solid tumors and demonstrate that CRISPR/Cas9 disruption of CISH enhances TIL neoantigen recognition and response to checkpoint blockade. METHODS: Single-cell gene expression profiling was used to identify a negative correlation between high CISH expression and TIL activation in patient-derived TIL. A GMP-compliant CRISPR/Cas9 gene editing process was developed to assess the impact of CISH disruption on the molecular and functional phenotype of human peripheral blood T cells and TIL. Tumor-specific T cells with disrupted Cish function were adoptively transferred into tumor-bearing mice and evaluated for efficacy with or without checkpoint blockade. FINDINGS: CISH expression was associated with T cell dysfunction. CISH deletion using CRISPR/Cas9 resulted in hyper-activation and improved functional avidity against tumor-derived neoantigens without perturbing T cell maturation. Cish knockout resulted in increased susceptibility to checkpoint blockade in vivo. CONCLUSIONS: CISH negatively regulates human T cell effector function, and its genetic disruption offers a novel avenue to improve the therapeutic efficacy of adoptive TIL therapy. FUNDING: This study was funded by Intima Bioscience, U.S. and in part through the Intramural program CCR at the National Cancer Institute.
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