CD40 Activity on Mesenchymal Cells Negatively Regulates OX40L to Maintain Bone Marrow Immune Homeostasis Under Stress Conditions

被引:5
作者
Bassani, Barbara [1 ]
Tripodo, Claudio [2 ]
Portararo, Paola [1 ]
Gulino, Alessandro [2 ]
Botti, Laura [1 ]
Chiodoni, Claudia [1 ]
Jachetti, Elena [1 ]
Bolli, Niccolo [3 ,4 ]
Ciciarello, Marilena [5 ]
Joehrens, Korinna [6 ]
Anagnostopoulos, Ioannis [7 ]
Na, Il-Kang [8 ,9 ,10 ]
Curti, Antonio [5 ]
Colombo, Mario P. [1 ]
Sangaletti, Sabina [1 ]
机构
[1] Fdn IRCCS Ist Nazl Tumori, Dept Res, Milan, Italy
[2] Univ Palermo, Sch Med, Palermo, Italy
[3] Univ Milan, Dept Oncol & Hematooncol, Milan, Italy
[4] Fdn Ca Granda IRCCS Policlin, Hematol, Milan, Italy
[5] Inst Hematol Seragnoli, Dept Expt Diagnost & Specialty Med DIMES, Bologna, Italy
[6] Charite Univ Med Berlin, Inst Pathol, Berlin, Germany
[7] Univ Wurzburg, Inst Pathol, Wurzburg, Germany
[8] Charite Univ Med Berlin, Dept Hematol Oncol & Tumor Immunol, Berlin, Germany
[9] Berlin Inst Hlth BIH, Berlin, Germany
[10] Expt & Clin Res Ctr ECRC, Berlin, Germany
关键词
B-cell development; CD40; OX40L; mesenchymal cell; bone marrow transplantation; T-CELLS;
D O I
10.3389/fimmu.2021.662048
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background Within the bone marrow (BM), mature T cells are maintained under homeostatic conditions to facilitate proper hematopoietic development. This homeostasis depends upon a peculiar elevated frequency of regulatory T cells (Tregs) and immune regulatory activities from BM-mesenchymal stem cells (BM-MSCs). In response to BM transplantation (BMT), the conditioning regimen exposes the BM to a dramatic induction of inflammatory cytokines and causes an unbalanced T-effector (Teff) and Treg ratio. This imbalance negatively impacts hematopoiesis, particularly in regard to B-cell lymphopoiesis that requires an intact cross-talk between BM-MSCs and Tregs. The mechanisms underlying the ability of BM-MSCs to restore Treg homeostasis and proper B-cell development are currently unknown. Methods We studied the role of host radio-resistant cell-derived CD40 in restoring Teff/Treg homeostasis and proper B-cell development in a murine model of BMT. We characterized the host cellular source of CD40 and performed radiation chimera analyses by transplanting WT or Cd40-KO with WT BM in the presence of T-reg and co-infusing WT or - Cd40-KO BM-MSCs. Residual host and donor T cell expansion and activation (cytokine production) and also the expression of Treg fitness markers and conversion to Th17 were analyzed. The presence of Cd40+ BM-MSCs was analyzed in a human setting in correlation with the frequency of B-cell precursors in patients who underwent HSCT and variably developed acute graft-versus-host (aGVDH) disease. Results CD40 expression is nearly undetectable in the BM, yet a Cd40-KO recipient of WT donor chimera exhibited impaired B-cell lymphopoiesis and Treg development. Lethal irradiation promotes CD40 and OX40L expression in radio-resistant BM-MSCs through the induction of pro-inflammatory cytokines. OX40L favors Teff expansion and activation at the expense of Tregs; however, the expression of CD40 dampens OX40L expression and restores Treg homeostasis, thus facilitating proper B-cell development. Indeed, in contrast to dendritic cells in secondary lymphoid organs that require CD40 triggers to express OX40L, BM-MSCs require CD40 to inhibit OX40L expression. Conclusions CD40+ BM-MSCs are immune regulatory elements within BM. Loss of CD40 results in uncontrolled T cell activation due to a reduced number of Tregs, and B-cell development is consequently impaired. GVHD provides an example of how a loss of CD40+ BM-MSCs and a reduction in B-cell precursors may occur in a human setting.
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页数:15
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