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利用靶向驱动基因突变来源的 HLA 限制性新抗原肽的过继性 T 细胞增强胆管癌免疫治疗

英文原题:Enhancing cholangiocarcinoma immunotherapy with adoptive T cells targeting HLA-restricted neoantigen peptides derived from driver gene mutations.

查看英文原题

Enhancing cholangiocarcinoma immunotherapy with adoptive T cells targeting HLA-restricted neoantigen peptides derived from driver gene mutations.

PubMed 2023/11/06(内容时间) Biomed Pharmacother

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中文摘要

精准免疫治疗在基因组学和生物信息学进步的推动下,已成为一种有前景且可行的抗癌方法。靶向新抗原具有特异性免疫反应且脱靶毒性低的优势。

在本研究中,我们探讨了由驱动基因突变产生的 HLA 限制性新抗原肽激活的过继性 T 细胞治疗胆管癌(CCA)的潜力,胆管癌是一种高度侵袭性癌症,预后差且死亡率高。通过对 CCA 细胞系 KKU-213A 和 KKU-100 进行全外显子组测序,我们鉴定了常见驱动基因中的突变,并预测了相应的 HLA 限制性肽。经分子对接和 T2 细胞结合实验验证,来自 KRAS、RNF43 和 TP53 突变的肽对 HLA-A11 表现出强结合亲和力。来自表达 HLA-A*11:01 的健康供者树突状细胞(DCs),经单个或混合肽脉冲后,其共刺激分子(CD11c、CD40、CD86 和 HLA-DR)表达水平与常规 DCs 相当,但成熟标志物 CD80 和 CD86 表达更高。经肽脉冲 DCs 激活的自体 HLA-A*11:01 限制性 T 细胞有效裂解 KKU-213A(HLA-A*11:01)细胞,效果优于常规肿瘤裂解物脉冲 DCs。该效应特异于 HLA-A*11:01 限制性 T 细胞,在 KKU-100(HLA-A*33:03)细胞中未观察到。

此外,HLA-A*11:01 限制性 T 细胞表现出升高的 IFN-gamma、颗粒溶素和颗粒酶 B 水平,表明其具有强效抗肿瘤能力。这些发现凸显了HLA-A* 11:01限制性T细胞靶向KRAS、RNF43、TP53突变CCA细胞的特异性和效率,并为开发CCA治疗的免疫治疗策略和治疗性肽疫苗提供了有价值的见解。

展开英文摘要原文

Precision immunotherapy, driven by genomic and bioinformatic advancements, has emerged as a promising and viable approach to combat cancer. Targeting neoantigens offers the advantage of specific immune responses with minimal off-tumor toxicity. In this study, we investigated the potential of adoptive T cells activated by HLA-restricted neoantigen peptides from driver gene mutations for treating cholangiocarcinoma (CCA), a highly aggressive cancer with poor prognosis and high mortality rates. Through whole exome sequencing of CCA cell lines, KKU-213A and KKU-100, we identified mutations in common driver genes and predicted corresponding HLA-restricted peptides.

Peptides from KRAS, RNF43, and TP53 mutations exhibited strong binding affinity to HLA-A11, as validated through molecular docking and T2-cell binding assays. Dendritic cells (DCs) from healthy donors expressing HLA-A* 11:01, pulsed with individual or pooled peptides, showed comparable levels of costimulatory molecules (CD11c, CD40, CD86, and HLA-DR) to conventional DCs but higher expression of maturation markers, CD80 and CD86.

Autologous HLA-A* 11:01-restricted T cells, activated by peptide-pulsed DCs, effectively lysed KKU-213A (HLA-A*11:01) cells, outperforming conventional tumor lysate-pulsed DCs. This effect was specific to HLA-A* 11:01-restricted T cells and not observed in KKU-100 (HLA-A*33:03) cells.

Moreover, HLA-A* 11:01-restricted T cells exhibited elevated levels of IFN-gamma, granulysin, and granzyme B, indicating their potent anti-tumor capabilities.

These findings underscore the specificity and efficiency of HLA-A* 11:01-restricted T cells targeting KRAS, RNF43, TP53 mutated CCA cells, and offer valuable insights for developing immunotherapeutic strategies and therapeutic peptide-vaccines for CCA treatment.

论文信息

作者
Panya A、Thepmalee C、Sawasdee N、Saengmuang S、Luangwattananun P、Yenchitsomanus PT
第一作者单位
Cell Engineering for Cancer Therapy Research Group, Chiang Mai University, Chiang Mai 50200, Thailand; Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.Thailand
通讯作者单位
Siriraj Center of Research Excellence for Cancer Immunotherapy (SiCORE-CIT), Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok 10700, Thailand; Division of Molecular Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok 10700, Thailand. Electronic address: ptyench@gmail.com.Thailand
期刊
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie2023 Dec
原文标识
PubMed 37939617 · DOI 10.1016/j.biopha.2023.115827