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

Baldwin, Jeremy G; Heuser-Loy, Christoph; Saha, Tanmoy; Schelker, Roland C; Slavkovic-Lukic, Dragana; Strieder, Nicholas; Hernandez-Lopez, Inmaculada; Rana, Nisha et al. · Cell · 2024

basic_science · Level V

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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<sup>+</sup> T cells. Optimal mitochondrial transfer required Talin 2 on both donor and recipient cells. CD8<sup>+</sup> 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<sup>+</sup> 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.

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