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PI3Kδ 阻断逐步增强过继转移 T 细胞的干性并改善代谢与抗肿瘤免疫

英文原题:Progressively Enhancing Stemness of Adoptively Transferred T Cells with PI3Kδ Blockade Improves Metabolism and Antitumor Immunity.

查看英文原题

Progressively Enhancing Stemness of Adoptively Transferred T Cells with PI3Kδ Blockade Improves Metabolism and Antitumor Immunity.

PubMed 2024/01/02(内容时间) Cancer Res Q1 · IF 22.6(JCR 2025)

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中文摘要

产生干细胞样记忆T细胞(TSCM)是改善过继免疫治疗的一种潜在策略。阐明富集TSCM特征的信号通路调节方式,有助于实现这一目标。本研究发现,以不同程度药理性阻断PI3K通路,可逐步产生干性特征增强的T细胞,表现为转录因子Tcf1和Lef1逐渐富集。干性增强的T细胞具有代谢可塑性,在识别肿瘤后线粒体功能和葡萄糖摄取均改善。相反,干性较低或中等的T细胞代谢动态性较差,更易发生抗原诱导的细胞死亡,且表达更多抑制性检查点受体。只有干性高的TCR特异性或CAR特异性T细胞可在体内持续存在并建立抗肿瘤保护性免疫。同样,体外强效阻断PI3K可制备干性特征升高的人TIL(肿瘤浸润淋巴细胞)和CAR-T 细胞,增强其使人实体瘤消退的能力。体外T细胞干性水平十分重要,最终影响其在三种不同实体瘤小鼠模型中的疗效。高CD8+ TSCM或CD4+ Th17SCM供者细胞的抗肿瘤保护依赖Lef1和Tcf1;敲除任一因子都会损害治疗效果。综上,研究强调有策略地调节T细胞PI3K信号、诱导干性并建立持久保护性实体瘤应答的重要性。意义:在过继细胞治疗体外制备期间逐步阻断PI3K信号以提高T细胞干性,可改变代谢和功能特征,并通过依赖Tcf1和Lef1的机制增强抗肿瘤免疫。

展开英文摘要原文

UNLABELLED: Generating stem-like memory T cells (TSCM) is a potential strategy to improve adoptive immunotherapy. Elucidating optimal ways to modulate signaling pathways that enrich TSCM properties could identify approaches to achieve this goal.

We discovered herein that blocking the PI3K pathway pharmaceutically to varying degrees can generate T cells with increasingly heightened stemness properties, based on the progressive enrichment of the transcription factors Tcf1 and Lef1. T cells with enhanced stemness features exhibited metabolic plasticity, marked by improved mitochondrial function and glucose uptake after tumor recognition. Conversely, T cells with low or medium stemness were less metabolically dynamic, vulnerable to antigen-induced cell death, and expressed more inhibitory checkpoint receptors. Only T-cell receptor-specific or chimeric antigen receptor (CAR)-specific T cells with high stemness persisted in vivo and mounted protective immunity to tumors.

Likewise, the strongest level of PI3K blockade in vitro generated human tumor-infiltrating lymphocytes and CAR T cells with elevated stemness properties, in turn bolstering their capacity to regress human solid tumors. The stemness level of T cells in vitro was important, ultimately impacting their efficacy in mice bearing three distinct solid tumors. Lef1 and Tcf1 sustained antitumor protection by donor high CD8+ TSCM or CD4+ Th17SCM, as deletion of either one compromised the therapeutic efficacy.

Collectively, these findings highlight the importance of strategic modulation of PI3K signaling in T cells to induce stemness and lasting protective responses to solid tumors. SIGNIFICANCE: Elevating T-cell stemness by progressively blocking PI3K signaling during ex vivo manufacturing of adoptive cell therapies alters metabolic and functional properties to enhance antitumor immunity dependent on Tcf1 and Lef1.

论文信息

作者
Rangel Rivera GO、Dwyer CJ、Knochelmann HM、Smith AS、Aksoy BA、Cole AC、Wyatt MM、Kumaresan S
单位
Division of Surgical Oncology, Department of Surgery, Emory University, Atlanta, Georgia.United States
文献类型
非美国政府资助研究 · 美国 NIH 资助研究
期刊
Cancer research2024 Jan 2
原文标识
PubMed 37801615 · DOI 10.1158/0008-5472.CAN-23-0801