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使用新型抗原诱导型启动子的感知-响应载荷递送改善次优的 CAR-T 激活

英文原题:Sense-and-Respond Payload Delivery Using a Novel Antigen-Inducible Promoter Improves Suboptimal CAR-T Activation.

查看英文原题

Sense-and-Respond Payload Delivery Using a Novel Antigen-Inducible Promoter Improves Suboptimal CAR-T Activation.

PubMed 2022/03/22(内容时间) ACS Synth Biol Q1 · IF 4.5(JCR 2025)

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中文摘要

嵌合抗原受体(CAR)-T细胞疗法展示了经合成特性改造的淋巴细胞的临床潜力。然而,CAR-T 细胞在大多数实体瘤中无效,部分原因是输注的淋巴细胞在恶性肿瘤部位激活不足。为了在不加剧脱靶毒性的情况下选择性增强抗肿瘤疗效,可以改造CAR-T 细胞使其优先在肿瘤中递送免疫刺激性载荷。

在此,我们报道了一种用于原代人T细胞中条件性载荷表达的新型抗原诱导型启动子。在治疗性T细胞模型中,新型基于NR4A的启动子在弱免疫原性条件下——即最需要载荷表达时——诱导的报告基因表达高于传统的基于NFAT的启动子。在无抗原存在时以及撤除刺激后,诱导型启动子检测到的活性极低。作为功能性概念验证,我们在抗间皮素CAR-T 模型中使用基于NR4A的启动子在次优刺激下表达细胞因子,并观察到与使用传统NFAT启动子改造的T细胞或单独CAR相比,增殖得到改善。

我们的系统在弱免疫原性条件下实现了CAR导向的载荷表达,并可能促成具有增强抗肿瘤疗效的下一代细胞疗法。

展开英文摘要原文

Chimeric antigen receptor (CAR)-T cell therapies demonstrate the clinical potential of lymphocytes engineered with synthetic properties.

However, CAR-T cells are ineffective in most solid tumors, partly due to inadequate activation of the infused lymphocytes at the site of malignancy. To selectively enhance antitumor efficacy without exacerbating off-target toxicities, CAR-T cells can be engineered to preferentially deliver immunostimulatory payloads in tumors.

Here, we report a novel antigen-inducible promoter for conditional payload expression in primary human T cells. In therapeutic T cell models, the novel NR4A-based promoter induced higher reporter gene expression than the conventional NFAT-based promoter under weakly immunogenic conditions, where payload expression is most needed.

Minimal activity was detected from the inducible promoters in the absence of antigen and after withdrawal of stimulation. As a functional proof-of-concept, we used the NR4A-based promoter to express cytokines in an antimesothelin CAR-T model with suboptimal stimulation and observed improved proliferation compared to T cells engineered with the conventional NFAT promoter or CAR alone.

Our system achieves CAR-directed payload expression under weakly immunogenic conditions and could enable the next generation of cell therapies with enhanced antitumor efficacy.

论文信息

作者
Guo T、Ma D、Lu TK
单位
Synthetic Biology Group, Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.United Kingdom
期刊
ACS synthetic biology2022 Apr 15
原文标识
PubMed 35316028 · DOI 10.1021/acssynbio.1c00236