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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Natural TCRs targeting KRASG12V display fine specificity and sensitivity to human solid tumors.
Natural TCRs targeting KRASG12V display fine specificity and sensitivity to human solid tumors.
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KRAS突变(KRASMUT)来源的新抗原已有报道,但针对这些表位的T细胞应答具体识别何种抗原尚不清楚。本研究考察KRASMUT免疫原性,并分析4种针对KRAS G12V、受HLA-A3超家族I类等位基因限制的T细胞受体(TCR)特性。
开展一项靶向KRASMUT的I期临床疫苗试验。从接受疫苗的患者或健康个体中分离靶向KRAS G12V且受HLA-A*03:01或HLA-A*11:01限制的TCR。全面分析TCR的抗原特异性、亲和力、交叉反应性及对CD8共受体的依赖性,并评估TCR裂解活性;采用定量免疫肽组学确定靶抗原密度。
针对KRASMUT的疫苗接种可启动CD8阳性和CD4阳性T细胞反应。天然(未进行亲和力增强)KRAS G12V特异性TCR对突变蛋白具有极高特异性,未发现其对野生型KRAS有明显反应。研究确定了TCR识别基序,并据此识别和排除了来源于人类蛋白质组非同源肽段的交叉反应。HLA-A*03:01及HLA-A*11:01限制的TCR重定向CD8阳性T细胞均能有效裂解KRAS G12V癌细胞;而仅HLA-A*11:01限制的TCR-T CD4阳性细胞表现出抗肿瘤效应功能,与部分依赖共受体的特征一致。所有KRAS G12V特异性TCR均对抗原高度敏感,能够清除每个细胞仅表达4.4至242个肽/HLA复合物的肿瘤细胞系。
本研究鉴定出具有较高治疗潜力的KRAS G12V特异性TCR,可用于开发TCR-T疗法。试验注册:ClinicalTrials.gov NCT03592888。经费:AACR SU2C/Lustgarten基金会、Parker癌症免疫治疗研究所及美国国立卫生研究院。
BACKGROUNDNeoantigens derived from KRASMUT have been described, but the fine antigen specificity of T cell responses directed against these epitopes is poorly understood.
Here, we explore KRASMUT immunogenicity and the properties of 4 T cell receptors (TCRs) specific for KRASG12V restricted to the HLA-A3 superfamily of class I alleles. METHODSA phase 1 clinical vaccine trial targeting KRASMUT was conducted. TCRs targeting KRASG12V restricted to HLA-A*03:01 or HLA-A*11:01 were isolated from vaccinated patients or healthy individuals. A comprehensive analysis of TCR antigen specificity, affinity, crossreactivity, and CD8 coreceptor dependence was performed. TCR lytic activity was evaluated, and target antigen density was determined by quantitative immunopeptidomics. RESULTSVaccination against KRASMUT resulted in the priming of CD8+ and CD4+ T cell responses. KRASG12V -specific natural (not affinity enhanced) TCRs exhibited exquisite specificity to mutated protein with no discernible reactivity against KRASWT.
TCR-recognition motifs were determined and used to identify and exclude crossreactivity to noncognate peptides derived from the human proteome. Both HLA-A*03:01 and HLA-A*11:01-restricted TCR-redirected CD8+ T cells exhibited potent lytic activity against KRASG12V cancers, while only HLA-A*11:01-restricted TCR-T CD4+ T cells exhibited antitumor effector functions consistent with partial coreceptor dependence.
All KRASG12V-specific TCRs displayed high sensitivity for antigen as demonstrated by their ability to eliminate tumor cell lines expressing low levels of peptide/HLA (4. 4 to 242) complexes per cell. CONCLUSIONThis study identifies KRASG12V-specific TCRs with high therapeutic potential for the development of TCR-T cell therapies. TRIAL REGISTRATIONClinicalTrials. gov NCT03592888. FUNDINGAACR SU2C/Lustgarten Foundation, Parker Institute for Cancer Immunotherapy, and NIH.
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