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CAR 触发的 1 型干扰素释放通过人工负性自分泌环路限制 CAR-T 细胞活性

英文原题:CAR Triggered Release of Type-1 Interferon Limits CAR T-Cell Activities by an Artificial Negative Autocrine Loop.

查看英文原题

CAR Triggered Release of Type-1 Interferon Limits CAR T-Cell Activities by an Artificial Negative Autocrine Loop.

PubMed 2022/11/30(内容时间) Cells Q2 · IF 6(JCR 2025)

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中文摘要

嵌合抗原受体(CAR)T细胞的出现推动了癌症免疫治疗发展,使难治性血液系统恶性肿瘤患者获得持久缓解。旨在实现通用细胞因子介导杀伤的T细胞(TRUCK,通常称为“第四代”CAR-T 细胞)经过设计,可在CAR诱导T细胞活化后释放工程化效应载荷。

本研究基于TRUCK技术,拟构建具有CAR诱导、可自我限制的人工自分泌环路的CAR-T 细胞。为此,研究人员设计了由CAR触发分泌I型干扰素(IFN)的CAR-T 细胞。基线条件下,分泌或不分泌IFN的CAR-T 细胞,其细胞毒性和细胞因子分泌能力与常规CAR-T 细胞相近。

然而,在以BxPC-3胰腺癌细胞为靶细胞、反复进行抗原刺激的“应激”条件下,CAR-T 细胞的抗肿瘤活性在后续刺激轮次中逐渐减弱;而在首轮刺激中仍能充分杀伤癌细胞。

从机制上看,活性下降主要源于I型IFN增强CAR-T 细胞凋亡;不释放IFN的CAR-T 细胞较少出现这一现象。此类自分泌负反馈环路可用于需要在识别靶标后短暂发挥CAR-T 细胞活性和维持能力、以避免持续毒性的治疗场景。

展开英文摘要原文

The advent of chimeric antigen receptor (CAR) T cells expedited the field of cancer immunotherapy enabling durable remissions in patients with refractory hematological malignancies. T cells redirected for universal cytokine-mediated killing (TRUCKs), commonly referred to as "fourth generation" CAR T-cells, are designed to release engineered payloads upon CAR-induced T-cell activation.

Building on the TRUCK technology, we aimed to generate CAR T-cells with a CAR-inducible artificial, self-limiting autocrine loop. To this end, we engineered CAR T-cells with CAR triggered secretion of type-1 interferons (IFNs). At baseline, IFN and IFN CAR T-cells showed similar capacities in cytotoxicity and cytokine secretion compared to conventional CAR T-cells.

However, under "stress" conditions of repetitive rounds of antigen stimulation using BxPC-3 pancreas carcinoma cells as targets, anti-tumor activity faded in later rounds while being fully active in destructing carcinoma cells during first rounds of stimulation.

Mechanistically, the decline in activity was primarily based on type-1 IFN augmented CAR T-cell apoptosis, which was far less the case for CAR T-cells without IFN release. Such autocrine self-limiting loops can be used for applications where transient CAR T-cell activity and persistence upon target recognition is desired to avoid lasting toxicities.

论文信息

作者
Harrer DC、Schenkel C、Bezler V、Kaljanac M、Hartley J、Barden M、Pan H、Holzinger A
第一作者单位
Department Hematology and Internal Oncology, University Hospital Regensburg, 93053 Regensburg, Germany.Germany
通讯作者单位
Leibniz Institute for Immunotherapy, Division Genetic Immunotherapy, and Chair for Genetic Immunotherapy, University Regensburg, 93053 Regensburg, Germany.Germany
期刊
Cells2022 Nov 30
原文标识
PubMed 36497099 · DOI 10.3390/cells11233839