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通过 T-Editor 平台对 TIL(肿瘤浸润淋巴细胞)进行基因工程,以增强抗肿瘤活性

英文原题:Genetic Engineering of Tumor-Infiltrating Lymphocytes (TIL) via a T-Editor Platform to Enhance Anti-Tumor Activity.

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Genetic Engineering of Tumor-Infiltrating Lymphocytes (TIL) via a T-Editor Platform to Enhance Anti-Tumor Activity.

PubMed 2026/08/19(内容时间) Cancer Sci Q2 · IF 4.9(JCR 2025)

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中文摘要

TIL(肿瘤浸润淋巴细胞)疗法已在恶性肿瘤中展现出临床潜力。然而,对为何仅一部分患者对TIL疗法产生应答的理解有限,加之缺乏简单高效的方法对脆弱的TIL进行基因工程改造,阻碍了通过基因修饰提高TIL疗效的努力。

我们开发并优化了T-Editor平台,可在TIL中实现快速高效的CRISPR介导的基因编辑。为最大程度降低与Cas9诱导的双链断裂(DSBs)相关的染色体易位风险,我们设计了用于胞嘧啶碱基编辑(CBE)的单向导RNA(sgRNA)。将碱基编辑TIL的扩增能力、表型特征、细胞因子产生及体外细胞溶解活性与Cas9-KO TIL进行了比较。使用患者来源异种移植(PDX)小鼠模型评估体内疗效。通过优化刺激条件、电转参数和CRISPR/Cas9试剂用量,对T-Editor平台进行了TIL基因编辑的优化。FAM84B成为首要候选基因,其敲除导致TIL细胞溶解活性增强最为显著。CBE介导的FAM84B外显子中C·G-to-T·A转换实现了高编辑效率且插入缺失(indel)事件极少。碱基编辑TIL在扩增、表型、细胞因子产生及体外细胞溶解活性方面与Cas9-KO TIL相当。与非工程化对照TIL相比,FAM84B编辑TIL显示出CD62L+记忆亚群增加、效应功能和细胞溶解活性增强,以及体内抗肿瘤疗效改善。

总之,T-Editor平台能够实现快速高效的CRISPR介导的基因编辑,用于改造TIL以增强其治疗效力。FAM84B可能代表一个改善TIL介导抗肿瘤活性的新的潜在靶点。

展开英文摘要原文

Tumor-infiltrating lymphocytes (TIL) therapy has demonstrated clinical potential in malignancies.

However, limited understanding of why only a subset of patients respond to TIL therapy, coupled with the lack of simple and efficient methods to genetically engineer fragile TIL, has hindered efforts to enhance TIL efficacy through genetic modification. A T-Editor platform enabling rapid and efficient CRISPR-mediated gene editing in TIL was developed and optimized. To minimize the risk of chromosomal translocations associated with Cas9-induced double-strand breaks (DSBs), single-guide RNAs (sgRNAs) were designed for cytosine base editing (CBE). The expansion capacity, phenotypic profile, cytokine production, and in vitro cytolytic activity of base-edited TIL were compared with those of Cas9-KO TIL. In vivo efficacy was assessed using patient-derived xenograft (PDX) mouse models.

The T-Editor platform was optimized for TIL gene editing by refining stimulation conditions, electroporation parameters, and CRISPR/Cas9 reagent dosing. FAM84B emerged as the top candidate, with its knockout resulting in the most pronounced enhancement of TIL cytolytic activity. CBE-mediated C·G-to-T·A conversion in the FAM84B exon achieved high editing efficiency with minimal insertion-deletion (indel) events.

Base-edited TIL exhibited comparable expansion, phenotype, cytokine production, and in vitro cytolytic activity relative to Cas9-KO TIL. Compared with non-engineered control TIL, FAM84B-edited TIL displayed an increased CD62L + memory subset, enhanced effector function and cytolytic activity, and improved in vivo antitumor efficacy.

In conclusion, the T-Editor platform enables rapid and efficient CRISPR-mediated gene editing for engineering TIL to enhance its therapeutic potency. FAM84B may represent a novel potential target for improving TIL-mediated antitumor activity.

论文信息

作者
Li F、Ma X、Xue Y、Yang J、Wang R、Li X、Zhang C、Lu W
单位
Department of Oncology, Tianjin Union Medical Center, The First Affiliated Hospital of Nankai University, Nankai University, Tianjin, China.China
期刊
Cancer science2026 Aug 19
原文标识
PubMed 42615537 · DOI 10.1111/cas.70502