bioRxiv · 10.1101/2023.06.20.545790
Engineered CD47 protects T cells for enhanced antitumor immunity
Abstract
Adoptively transferred T cells and agents designed to block the CD47/SIRP axis are promising antitumor therapeutics, which activate distinct arms of the immune system. We administered anti-CD47 (CD47) with adoptively transferred T cells with the goal of enhancing antitumor efficacy but observed rapid macrophage-mediated clearance of T cells expressing chimeric antigen receptors (CARs) or engineered T cell receptors, which blunted therapeutic benefit. CD47 mediated CAR T clearance was potent and rapid enough to serve as an effective safety switch. To overcome this challenge, we engineered a CD47 variant (47E) that engaged SIRP and provided a "dont-eat-me" signal that was not blocked by CD47 antibodies. TCR or CAR T cells expressing 47E were resistant to clearance by macrophages following CD47, and mediated significant, sustained macrophage recruitment into the TME. Although many of the recruited macrophages manifested an M2-like profile, the combined therapy resulted in synergistic enhancement in antitumor efficacy. This work identifies macrophages as major regulators of T cell persistence and illustrates the fundamental challenge of combining T cell directed therapeutics with those designed to activate macrophages. It further delivers a therapeutic approach capable of simultaneously harnessing the antitumor effects of T cells and macrophages that manifests markedly enhanced potency against solid tumors.
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Yamada-Hunter, S. A., Theruvath, J., McIntosh, B. J., Freitas, K. A., Radosevich, M. T., Leruste, A., Dhingra, S., Martinez-Velez, N., Xu, P., Delaidelli, A., Desai, M. H., Good, Z., Labanieh, L., Mount, C. W., Chen, Y., Heitzeneder, S., Marjon, K. D., Banuelos, A., Khan, O., Huang, J., Wasserman, S. L., Spiegel, J. Y., Fernandez-Pol, S., Sorensen, P. H., Monje, M., Majzner, R. G., Weissman, I. L., Sahaf, B., Sotillo, E., Cochran, J. R., Mackall, C. L.. 2023-06-22. Engineered CD47 protects T cells for enhanced antitumor immunity. https://doi.org/10.1101/2023.06.20.545790
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