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细胞间纳米管介导的线粒体转移增强 T 细胞代谢适应性和抗肿瘤疗效。

Intercellular nanotube-mediated mitochondrial transfer enhances T cell metabolic fitness and antitumor efficacy.

机构信息

Division of Functional Immune Cell Modulation, Leibniz Institute for Immunotherapy, Regensburg, Germany; Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.

Division of Functional Immune Cell Modulation, Leibniz Institute for Immunotherapy, Regensburg, Germany.

出版信息

Cell. 2024 Nov 14;187(23):6614-6630.e21. doi: 10.1016/j.cell.2024.08.029. Epub 2024 Sep 13.

Abstract

Mitochondrial loss and dysfunction drive T cell exhaustion, representing major barriers to successful T cell-based immunotherapies. Here, we describe an innovative platform to supply exogenous mitochondria to T cells, overcoming these limitations. We found that bone marrow stromal cells establish nanotubular connections with T cells and leverage these intercellular highways to transplant stromal cell mitochondria into CD8 T cells. Optimal mitochondrial transfer required Talin 2 on both donor and recipient cells. CD8 T cells with donated mitochondria displayed enhanced mitochondrial respiration and spare respiratory capacity. When transferred into tumor-bearing hosts, these supercharged T cells expanded more robustly, infiltrated the tumor more efficiently, and exhibited fewer signs of exhaustion compared with T cells that did not take up mitochondria. As a result, mitochondria-boosted CD8 T cells mediated superior antitumor responses, prolonging animal survival. These findings establish intercellular mitochondrial transfer as a prototype of organelle medicine, opening avenues to next-generation cell therapies.

摘要

线粒体缺失和功能障碍导致 T 细胞耗竭,这是成功的基于 T 细胞的免疫疗法的主要障碍。在这里,我们描述了一种创新的平台,为 T 细胞提供外源性线粒体,克服这些限制。我们发现骨髓基质细胞与 T 细胞建立纳米管连接,并利用这些细胞间高速公路将基质细胞线粒体移植到 CD8 T 细胞中。最佳的线粒体转移需要供体细胞和受体细胞上的 Talin 2。接受捐赠线粒体的 CD8 T 细胞表现出增强的线粒体呼吸和备用呼吸能力。当转移到荷瘤宿主中时,与未摄取线粒体的 T 细胞相比,这些充电后的 T 细胞更有效地扩增、更有效地浸润肿瘤,并且表现出更少的衰竭迹象。结果,线粒体增强的 CD8 T 细胞介导了优越的抗肿瘤反应,延长了动物的存活时间。这些发现确立了细胞间线粒体转移作为细胞器医学的原型,为下一代细胞疗法开辟了道路。

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