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Localized PD-1 CAR T therapy reprograms neuroinflammation.

Abstract

B cell-depleting therapies are effective in multiple sclerosis (MS), yet some patients relapse, underscoring the need for more precise interventions. To identify new therapeutic targets, we generated a single-cell RNA sequencing (scRNA-seq) atlas of cerebrospinal fluid (CSF), brain, and blood from non-inflammatory controls and patients with MS or other neuroinflammatory diseases. We found disease-associated enrichment of class-switched immunoglobulin G+ (IgG+) B cells and plasma cells in MS CSF. Unbiased analysis identified a rare disease-enriched subset of activated, T cell receptor (TCR)-restricted, PD-1+ T follicular helper-like cells with B cell-recruiting features. To target this population, we developed PD-1-directed chimeric antigen receptor (CAR) T cells that selectively depleted pathogenic PD-1+ CD4 T cells and locally released IL-10. This strategy attenuated central nervous system (CNS) inflammation, reprogrammed the local immune milieu, and improved clinical outcomes across murine neuroinflammation models. These findings define a CNS-localized adaptive immune circuit in MS and nominate programmable PD-1 CAR T cells as a strategy to disrupt it.

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BibTeXRIS

Rotem Shalita, Maya Ben Yehuda, Chamutal Gur, Yasmin Frid, Sarah McGrath, Roni Suhler, Lihi Bolokan, Vasyl Eisenberg, Reut Sharet Eshed, Shir Shlomi-Loubaton, Adin Tofield, Karin Vardy, Mor Zada, Anna Kurilovich, Eyal David, Diego Jaitin, Kfir Mazuz, Roberto Avellino, Reut Tzemach, Yuri Kuznetsov, Liat Fellus-Alyagor, Adva Levy-Barda, Sarah Mundt, Rina Rosenzweig, Bettina Schreiner, Anneli Peters, Christine Stadelmann, Pascale Zwicky, Adi Wilf Yarkoni, Florian Ingelfinger, Ido Amit. 2026-07-21. Localized PD-1 CAR T therapy reprograms neuroinflammation.. https://doi.org/10.1016/j.cell.2026.06.036

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