4.7 Article

Characterization of follicular T helper cells and donor-specific T helper cells in renal transplant patients with de novo donor-specific HLA-antibodies

期刊

CLINICAL IMMUNOLOGY
卷 226, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.clim.2021.108698

关键词

T follicular helper cell; T follicular regulatory cell; de novo donor-specific HLA-antibodies; Antibody-mediated rejection; Solid organ transplantation; Allospecific T cell reactivity

资金

  1. German Academic Scholarship Foundation (Studienstiftung des deutschen Volkes)
  2. Dr. Werner Jackstadt-Stiftung
  3. Rudolf-Ackermann-Stiftung

向作者/读者索取更多资源

TFH cells and TFR cells play important roles in the formation of dnDSA after renal transplant. Activation of TFH cells is associated with the development of dnDSA, while TFR cells have an inhibitory effect on TFH cells.
T follicular helper (TFH) cells are a heterogeneous subset of immunocompetent T helper (TH) cells capable of augmenting B cell responses in lymphoid tissues. In transplantation, exposure to allogeneic tissue activates TFH cells increasing the risk of the emergence of de novo donor-specific HLA-antibodies (dnDSA). These can cause antibody-mediated rejection (AMR) and allograft loss. Follicular regulatory T (TFR) cells counteract TFH cell activity. Here, we investigated the implications of TFH and TFR cells on dnDSA formation after renal transplantation (RTX). Considering TFH cells to be CXCR5+ and IL-21+, we found by flow cytometry that patients with dnDSA produced IL-21 more abundantly compared to healthy volunteers. In in vitro alloreactivity assays, patients with dnDSA featured an enhanced alloreactive TH cell pool in response to donor-specific HLA antigens. Besides, longitudinal investigations suggested enhanced alloreactivity shortly after transplantation increasing the risk of dnDSA development. Taken together, in spite of continuous immunosuppression we report a strong IL-21 response in TFH cells and an expanded reservoir of donor-specific memory TH cells in patients with dnDSA. This warrants further investigations if aberrant TFH cell activation may precede the formation of dnDSA promoting AMR.

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