Tracking the progeny of adoptively transferred virus-specific T cells in patients posttransplant using TCR sequencing

W. Huisman, M. C. J. Roex, L. Hageman, E. A. S. Koster, S. A. J. Veld, C. Hoogstraten, P. van Balen, H. M. van Egmond, C. A. M. van Bergen, H. Einsele, L. Germeroth, D. Amsen, J. H. F. Falkenburg, I. Jedema

Research output: Contribution to journalArticleAcademicpeer-review

2 Citations (Scopus)

Abstract

Adoptive cellular therapies with T cells are increasingly used to treat a variety of conditions. For instance, in a recent phase 1/2 trial, we prophylactically administered multivirusspecific T-cell products to protect recipients of T-cell–depleted allogeneic stem cell grafts against viral reactivation. To establish treatment efficacy, it is important to determine the fate of the individual transferred T-cell populations. However, it is difficult to unequivocally distinguish progeny of the transferred T-cell products from recipient- or stem cell graft–derived T cells that survived T-cell depletion during conditioning or stem cell graft manipulation. Using messenger RNA sequencing of the T-cell receptor β-chains of the individual virus-specific T-cell populations within these T-cell products, we were able to track the multiple clonal virus-specific subpopulations in peripheral blood and distinguish recipient- and stem cell graft–derived virus-specific T cells from the progeny of the infused T-cell products. We observed in vivo expansion of virus-specific T cells that were exclusively derived from the T-cell products with similar kinetics as the expansion of virus-specific T cells that could also be detected before the T-cell product infusion. In addition, we demonstrated persistence of virus-specific T cells derived from the T-cell products in most patients who did not show viral reactivation. This study demonstrates that virus-specific T cells from prophylactically infused multiantigen-specific T-cell products can expand in response to antigen encounter in vivo and even persist in the absence of early viral reactivation.
Original languageEnglish
Pages (from-to)812-827
Number of pages16
JournalBlood advances
Volume7
Issue number5
Early online date19 Sept 2022
DOIs
Publication statusPublished - 14 Mar 2023

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