Graft-versus-host disease (GVHD) remains a major barrier to the success of allogeneic hematopoietic stem cell transplantation (HSCT). In preclinical models, dysregulation of IL-6 in the peri-transplant period promotes GVHD via STAT3-dependent T cell differentiation and monocyte activation but the nature of immunological effects invoked in patients remains unclear. To advance our understanding of IL-6 signaling in humans during HSCT, we performed single-cell RNA sequencing on circulating CD14+ monocytes and CD4+ T cells from patient samples within a clinical trial of IL-6R inhibition (tocilizumab (TCZ) or placebo) on a backbone of calcineurin inhibition (CNI) and short-course methotrexate. We studied patients who did not develop acute GVHD and included a placebo-treated group analyzed prior to the development of acute GVHD. IL-6R inhibition promoted Type-I IFN-associated transcriptional programs in both CD4+ T cells and CD14+ monocytes. Surprisingly, IL-6R-inhibition with TCZ profoundly enhanced cytolytic CD4+ T cell differentiation. In experimental HSCT and chimeric antigen receptor T cell systems, genetic deletion of IL-6 signaling in donor T cells enhanced the expansion of cytolytic Eomes+ CD4+ regulatory T cell subsets whilst attenuating Th1 and Th17 differentiation. Consistent with the promotion of this cytolytic CD4+ phenotype, anti-tumor effects were improved in the absence of IL-6 signaling. In summary, these data demonstrate that IL-6R inhibition during cell therapy imprints Type-I IFN programs and cytolytic CD4+ T cell differentiation, including the Eomes+ fraction associated with favorable immunotherapy outcomes.
Respiratory syncytial virus (RSV) infection in stem cell transplant (SCT) recipients can lead to pneumonitis, respiratory failure and increased mortality. Given the disease mechanism is not well understood, we developed a novel preclinical model of RSV infection in allogeneic bone marrow transplantation (alloBMT) using pneumonia virus of mice (PVM), a murine homologue of RSV. PVM-infected alloBMT mice showed increased mortality and lung pathology compared to uninfected and syngeneic BMT (synBMT) mice, recapitulating clinical disease. To define the viral-specific cellular immune response, we employed a tetramer directed to PVM RNA polymerase (L1052-1060). Virus-specific CD8 T cell numbers were diminished in infected alloBMT versus synBMT mice, suggesting that in the presence of GVHD mice are unable to mount a virus-specific T cell response. AlloBMT mice showed expansion of terminally exhausted (TOX+PD1+TIM3+) polyclonal CD8 T cells compared to synBMT mice. Despite undetected terminally exhausted PVM-specific CD8 T cells in infected alloBMT mice, these were detected in infected synBMT mice suggesting functional capacity in the absence of GVHD. Lung viral load data showed PVM persisted in alloBMT mice three weeks post-infection compared to synBMT where PVM was cleared in a week. These data demonstrate that during GVHD impaired PVM-specific CD8 T cell immunity leads to a lack of viral control, suggesting a critical role for virus-specific CD8 T cells in RSV-infected SCT patients. Research supported by grant funds awarded by the Australian Infectious Diseases Research Centre. SCH is supported by a University of Queensland Research Training Program Scholarship. Transplantation Immunology (TRAN)
Autologous stem cell transplantation (ASCT) is the standard of care consolidation therapyfor eligible patients with myeloma but most patients eventually progress, an eventassociated with features of immune escape. Novel approaches to enhance antimyelomaimmunity after ASCT represent a major unmet need. Here, we demonstrate that patient-mobilized stem cell grafts contain high numbers of effector CD8 T cells and immunosup-pressive regulatory T cells (Tregs). We showed that bone marrow (BM)-residing T cells areefficiently mobilized during stem cell mobilization (SCM) and hypothesized that mobilizedand highly suppressive BM-derived Tregs might limit antimyeloma immunity during SCM.Thus, we performed ASCT in a preclinical myeloma model with or without stringent Tregdepletion during SCM. Treg depletion generated SCM grafts containing polyfunctionalCD8 T effector memory cells, which dramatically enhanced myeloma control after ASCT.Thus, we explored clinically tractable translational approaches to mimic this scenario.Antibody-based approaches resulted in only partial Treg depletion and were inadequateto recapitulate this effect. In contrast, a synthetic interleukin-2 (IL-2)/IL-15 mimetic thatstimulates the IL-2 receptor on CD8 T cells without binding to the high-affinity IL-2Ra used by Tregs efficientlyexpanded polyfunctional CD8 T cells in mobilized grafts and protected recipients from myeloma progression afterASCT. We confirmed that Treg depletion during stem cell mobilization can mitigate constraints on tumor immunityand result in profound myeloma control after ASCT. Direct and selective cytokine signaling of CD8 T cells can reca-pitulate this effect and represent a clinically testable strategy to improve responses after ASCT.
Endothelial function and integrity are compromised after allogeneic bone marrow transplantation (BMT), but how this affects immune responses broadly remains unknown. Using a preclinical model of CMV reactivation after BMT, we found compromised antiviral humoral responses induced by IL-6 signaling. IL-6 signaling in T cells maintained Th1 cells, resulting in sustained IFN-γ secretion, which promoted endothelial cell (EC) injury, loss of the neonatal Fc receptor (FcRn) responsible for IgG recycling, and rapid IgG loss. T cell-specific deletion of IL-6R led to persistence of recipient-derived, CMV-specific IgG and inhibited CMV reactivation. Deletion of IFN-γ in donor T cells also eliminated EC injury and FcRn loss. In a phase III clinical trial, blockade of IL-6R with tocilizumab promoted CMV-specific IgG persistence and significantly attenuated early HCMV reactivation. In sum, IL-6 invoked IFN-γ-dependent EC injury and consequent IgG loss, leading to CMV reactivation. Hence, cytokine inhibition represents a logical strategy to prevent endothelial injury, thereby preserving humoral immunity after immunotherapy.
Autologous stem cell transplantation (ASCT) with subsequent lenalidomide maintenance is standard consolidation therapy for multiple myeloma, and a subset of patients achieve durable progression-free survival that is suggestive of long-term immune control. Nonetheless, most patients ultimately relapse, suggesting immune escape. TIGIT appears to be a potent inhibitor of myeloma-specific immunity and represents a promising new checkpoint target. Here we demonstrate high expression of TIGIT on activated CD8+ T cells in mobilized peripheral blood stem cell grafts from patients with myeloma. To guide clinical application of TIGIT inhibition, we evaluated identical anti-TIGIT antibodies that do or do not engage FcγR and demonstrated that anti-TIGIT activity is dependent on FcγR binding. We subsequently used CRBN mice to investigate the efficacy of anti-TIGIT in combination with lenalidomide maintenance after transplantation. Notably, the combination of anti-TIGIT with lenalidomide provided synergistic, CD8+ T cell-dependent, antimyeloma efficacy. Analysis of bone marrow (BM) CD8+ T cells demonstrated that combination therapy suppressed T cell exhaustion, enhanced effector function, and expanded central memory subsets. Importantly, these immune phenotypes were specific to the BM tumor microenvironment. Collectively, these data provide a logical rationale for combining TIGIT inhibition with immunomodulatory drugs to prevent myeloma progression after ASCT.
Background Protective malarial antibodies are acquired more rapidly in adults than children, independently of cumulative exposure, however the cellular responses mediating these differences are unknown. CD4 T-follicular helper (Tfh) cells have key roles in inducing antibodies, with Th2-Tfh cell activation associated with antibody development in malaria. Whether Tfh cell activation in malaria is age dependent is unknown and no studies have compared Tfh cell activation in children and adults with malaria. Methods We undertook a comprehensive study of Tfh cells, along with B cells and antibody induction in children and adults with malaria. Activation and proliferation of circulating Tfh (cTfh) cell subsets was measured ex vivo and parasite-specific Tfh cell frequencies and functions studied with Activation Induced Marker (AIM) assays and intracellular cytokine staining. Findings During acute malaria, the magnitude of cTfh cell activation was higher in adults than in children and occurred across all cTfh cell subsets in adults but was restricted only to the Th1-cTfh subset in children. Further, adults had higher levels of parasite-specific cTfh cells, and cTfh cells which produced more Th2-Tfh associated cytokine IL-4. Consistent with a role of higher Tfh cell activation in rapid immune development in adults, adults had higher activation of B cells during infection and higher induction of antibodies 7 and 28 days aftermalaria compared to children. Interpretation Our data provide evidence that age impacts Tfh cell activation during malaria, and that these differences may influence antibody induction after treatment. Findings have important implications for vaccine development in children. Copyright (C) 2021 The Authors. Published by Elsevier B.V.
Donor and recipient cytomegalovirus (CMV) serostatus correlate with transplant-related mortality that is associated with reduced survival following allogeneic stem cell transplant (SCT). Prior epidemiologic studies have suggested that CMV seronegative recipients (R-) receiving a CMV-seropositive graft (D+) experience inferior outcomes compared with other serostatus combinations, an observation that appears independent of viral reactivation. We therefore investigated the hypothesis that prior donor CMV exposure irreversibly modifies immunologic function after SCT. We identified a CD4(+)/CD57(+)/CD27(-) T-cell subset that was differentially expressed between D+ and D- transplants and validated results with 120 patient samples. This T-cell subset represents an average of 2.9% (D-/R-), 18% (D-/R+), 12% (D+/R-), and 19.6% (D+/R+) (P < .0001) of the total CD4(+) T-cell compartment and stably persists for at least several years post-SCT. Even in the absence of CMV reactivation postSCT, D+/R- transplants displayed a significant enrichment of these cells compared with D-/R- transplants (P = .0078). These are effector memory cells (CCR7-/CD45RA(+/-)) that express T-bet, Eomesodermin, granzyme B, secrete Th1 cytokines, and are enriched in CMV-specific T cells. These cells are associated with decreased T-cell receptor diversity (P < .0001) and reduced proportions of major histocompatibility class (MHC) II expressing classical monocytes (P < .0001), myeloid (P = .024), and plasmacytoid dendritic cells (P = .0014). These data describe a highly expanded CD4(+) T-cell population and putative mechanisms by which prior donor or recipient CMV exposure may create a lasting immunologic imprint following SCT, providing a rationale for using D- grafts for R- transplant recipients.
Abstract Background: Interleukin-6 (IL-6) promotes the differentiation of pathogenic T cells and represents a dominant pathway of cytokine-dysregulation and graft-versus-host disease (GVHD). Cytomegalovirus (CMV) reactivation is a common and life-threatening infectious complication following allogenic bone marrow transplantation (BMT). The role of T cell immunity is long-established, and our group recently demonstrated that CMV strain-specific immunoglobulins (Ig) are critical in preventing CMV reactivation in preclinical models (Martins JP et al, Science 2019). Methods and Results: In a phase I/II clinical trial (Kennedy GA et al, Lancet Onc. 2014), we observed unexpectedly low rates of CMV reactivation following IL-6 receptor (IL-6R) blockade with tocilizumab (TCZ) compared to historical control (8/35 vs 20/43, P < 0.05). We used our preclinical models of murine CMV (MCMV) reactivation to pursue the mechanisms. We transplanted bone marrow (BM) and T cells from naïve B6 donors into CMV-latently infected B6D2F1 recipients and monitored MCMV reactivation. Ablation of IL-6R in donor T cells (using B6 CD4 cre x IL-6R fl/fl transgenic mice; IL-6R -/-) significantly reduced MCMV reactivation 5 weeks after BMT, as measured by plasma viremia and infectious viral loads in the liver (Fig 1A). Next, we examined the contribution of donor T and B cells to the suppression of MCMV reactivation by IL-6R inhibition. At 2 - 3 weeks after BMT and prior to MCMV reactivation, cytokine (IFNɣ/TNF) secretion from CD4 + T cells (in response to MCMV infected DC) was not detectable; MCMV m38 tetramer + CD8 T cells were present at very low frequencies (< 0.1% of CD8 T cells) which were not altered by IL-6R ablation. The frequency of CXCR-5 +PD-1 + T FH cells was comparable or lower in IL-6R -/- vs wild-type (WT) T cells after BMT. Transplant of BM from B6.μMT mice (unable to generate mature B cells and plasma cells) did not increase MCMV viremia (Fig 1B), excluding a role for donor B cells. Thus, early MCMV reactivation in the presence of IL-6 is independent of MCMV-specific T cells and donor B cells. To study the effects of IL-6 on recipient-derived humoral immunity we quantified MCMV-specific IgG in plasma after BMT and found that levels were significantly higher in recipients of IL-6R -/- T cells (Fig 1C). Furthermore, MCMV-IgG levels in plasma correlated with MCMV viremia (r = - 0.72, P < 0.0001) and viral loads in liver (r = - 0.68, P < 0.0001). MCMV-IgG2a, which can only be generated by B6D2F1 recipients, was significantly higher in recipients of IL-6R -/- T cells, confirming that differences in humoral responses were of recipient-origin. To define relevant mechanisms, we examined the kinetics of IgG after BMT by monitoring the loss of murine IgG (transferred on day 0) in plasma (Fig 1D). Recipients of IL-6R -/- T cells showed significantly slower loss of IgG than recipients of WT T cells, with or without GVHD prophylaxis with cyclosporine (CSA). Thus, ablation of IL-6 signaling in donor T cells is associated with reduced loss of recipient IgG and protection from MCMV reactivation, an outcome which seems independent of the effects of IL-6 on GVHD. We correlated our findings with data from a recent randomized, placebo-controlled, double-blind phase III clinical trial of TCZ administration on Day -1 of BMT (Kennedy GA et al, Blood 2021). TCZ reduced CMV reactivation in at risk seropositive BMT recipients of volunteer unrelated donor grafts regardless of acute GVHD (all at risk recipients, TCZ vs. control: 12/26 vs 21/28, P = 0.03; at risk without grade 2-4 GVHD, TCZ vs control: 6/18 vs 9/13, P = 0.03). TCZ did not alter the frequency of B cells or the frequency and function of HCMV-specific CD8 + T cells, quantified by HCMV-pMHC tetramer-staining and HCMV peptide-specific cytokine (IFNγ/TNF) secretion. In contrast, levels of HCMV-specific IgG at day +30 in HCMV-seropositive recipients were significantly higher in the TCZ versus control group (Fig 1E). Consistent with our preclinical studies, the level of HCMV-IgG significantly and inversely correlated with early HCMV reactivation (within 35 days) after transplant. Conclusion: These data confirm the importance of recipient-derived humoral immunity in controlling early CMV reactivation in clinical BMT recipients. Critically, we demonstrate the ability of IL-6R blockade to maintain protective humoral responses until effective donor-derived adaptive immunity can be generated. Figure 1 Figure 1. Disclosures Boeckh: Merck: Consultancy, Research Funding; SymBio Pharmaceuticals: Consultancy; Helocyte: Consultancy; Evrys Bio: Consultancy; Moderna: Consultancy; Gilead: Consultancy, Research Funding; AlloVir: Consultancy; GSK: Consultancy. Hill: Generon corporation: Consultancy; NapaJun Pharma: Consultancy; Compass Therapeutics: Research Funding; Syndax Pharmaceuticals: Research Funding; Applied Molecular Transport: Research Funding; iTeos Therapeutics: Consultancy, Research Funding; Roche: Research Funding; Neoleukin Therapeutics: Consultancy.
We determined the efficacy of tocilizumab (TCZ) in preventing grade 2-4 acute graft-versus-host disease (aGVHD) in patients with acute leukemia or myelodysplasia undergoing matched sibling donor (MSD) or volunteer unrelated donor (VUD) allogeneic stem cell transplantation after myeloablative or reduced-intensity conditioning across 5 Australian centers. A total of 145 patients (50 MSD, 95 VUD) were randomly assigned to placebo or TCZ on day -1. All patients received T-cell-replete peripheral blood stem cell grafts and graft-versus-host disease (GVHD) prophylaxis with cyclosporin/methotrexate. A planned substudy analyzed the VUD cohort. With a median follow-up of 746 days, the incidence of grade 2-4 aGVHD at day 100 for the entire cohort was 36% for placebo vs 27% for TCZ (hazard ratio [HR], 0.69; 95% confidence interval [CI], 0.38-1.26; P = .23) and 45% vs 32% (HR, 0.61; 95% CI, 0.31-1.22; P = .16) for the VUD subgroup. The incidence of grade 2-4 aGVHD at day 180 for the entire cohort was 40% for placebo vs 29% for TCZ (HR, 0.68; 95% CI, 0.38-1.22; P = .19) and 48% vs 32% (HR, 0.59; 95% CI, 0.30-1.16; P = .13) for the VUD subgroup. Reductions in aGVHD were predominantly in grade 2 disease. For the entire cohort, transplant-related mortality occurred in 8% vs 11% of placebo-treated vs TCZ-treated patients, respectively (P = .56), and overall survival was 79% vs 71% (P = .27). Median day to neutrophil and platelet engraftment was delayed by 2 to 3 days in TCZ-treated patients, whereas liver toxicity and infectious complications were similar between groups. In this phase 3 randomized double-blind trial, TCZ showed nonsignificant trends toward reduced incidence of grade 2-4 aGVHD in recipients from HLA-matched VUDs but no improvements in long term-survival.
Acute gastrointestinal Graft-versus-Host-Disease (GVHD) is a primary determinant of mortality after allogeneic hematopoietic stem-cell transplantation (alloSCT). It is mediated by alloreactive donor CD4 + T cells that differentiate into pathogenic subsets expressing IFNγ, IL-17A or GM-CSF, and is regulated by subsets expressing IL-10 and/or Foxp3. Developmental relationships between T-helper states during priming in mesenteric lymph nodes (mLN) and effector function in the GI tract remain undefined at genome-scale. We used scRNA-seq and computational modelling to create an atlas of putative differentiation pathways during GVHD. Computational trajectory inference suggested emergence of pathogenic and regulatory states along a single developmental trajectory in mLN. Importantly, we identified an unexpected second trajectory, categorised by little proliferation or cytokine expression, reduced glycolysis, and high TCF1 expression. TCF1 hi cells upregulated α4β7 prior to gut migration and failed to express cytokines therein. Nevertheless, they demonstrated recall potential and plasticity following secondary transplantation, including cytokine or Foxp3 expression, but reduced TCF1. Thus, scRNA-seq revealed divergence of allo-reactive CD4 + T cells into quiescent and effector states during gut GVHD, reflecting putative heterogenous priming in vivo . These findings, the first at a single-cell level during GVHD over time, can now be used to interrogate T cell differentiation in patients undergoing alloSCT.
Allogeneic stem cell transplantation (SCT) is a curative therapy for patients with hematological malignancies related largely to an immunological graft-versus-leukemia (GVL) effect mediated by donor T cells and natural killer cells. Relapse of disease after SCT represents failure of GVL and is now the major cause of treatment failure. We sought to augment GVL effects in patients (n = 29) relapsing after SCT in a prospective phase I/II clinical trial of dose-escalated pegylated interferon-2α (peg-IFNα). The administration of peg-IFNα after reinduction chemotherapy, with or without subsequent donor lymphocyte infusion (DLI), resulted in a 2-year overall survival (OS) of 31% (95% confidence interval, 17.3%-49.2%), which rejects the null hypothesis of 7% generated by observations in an institutional historical cohort. As expected, peg-IFNα was associated with graft-versus-host disease (GVHD) and hematological toxicity, which was manageable with scheduled dose modifications. Progression-free survival (PFS) was greatest in patients who experienced GVHD, although the majority of those patients still eventually progressed. Higher PFS and OS were associated with pretreatment proportions of immune cell populations with regulatory function, including mucosal invariant T cells, regulatory T cells, and plasmacytoid dendritic cells, independent of any association with GVHD. Peg-IFNα administration after relapse thus constitutes a logical strategy to invoke GVL effects and should be studied in a larger, multicenter cohort. This trial was registered at www.anzctr.org.au as #ACTRN12612000728831.
Andrea S. Henden, Antiopi Varelias, Justine Leach, Elise Sturgeon, Judy Avery, Jessica Kelly, Stuart Olver, Luke Samson, Gunter Hartel, Simon Durrant, Jason Butler, Anthony J. Morton, Ashish Misra, Siok-Keen Tey, Elango Subramoniapillai, Cameron Curley, Glen Kennedy,* and Geoffrey R. Hill* Department of Haematology and Bone Marrow Transplantation, Royal Brisbane and Women’s Hospital, Brisbane, QLD, Australia; Bone Marrow Transplantation Laboratory, Queensland Institute of Medical Research (QIMR) Berghofer Medical Research Institute, Brisbane, QLD, Australia; Faculty of Medicine, University of Queensland, Herston, QLD, Australia; Statistics Unit, QIMR Berghofer Medical Research Institute, Brisbane, QLD, Australia; Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, WA; and Division of Medical Oncology, The University of Washington, Seattle, WA
Key Points Stem cell mobilization with G-CSF promotes IL-17A secretion by donor CD8+ MAIT cells. Tbet and RORγt coexpression identifies potential IL-17A–secreting proinflammatory populations after allogeneic stem cell transplantation.
Abstract Purpose: Inducible caspase 9 (iCasp9) is a cellular safety switch that can make T-cell therapy safer. The purpose of this phase I trial was to investigate the use of iCasp9-transduced T-cell addback in adult patients undergoing haploidentical stem cell transplantation for high-risk hematologic malignancies. Patients and Methods: Patients undergoing myeloablative, CD34-selected haploidentical stem cell transplantation were treated with 0.5−1.0 × 106/kg donor-derived iCasp9-transduced T cells on day +25 or 26 post-transplant, with additional doses allowed for disease relapse, infection, or mixed chimerism. Results: Three patients were enrolled. iCasp9-transduced T cells were readily detectable by 4 weeks post-infusion in all patients and remained at high level (114 cells/μL, 11% of T cells) in 1 patient alive at 3.6 years. One patient developed donor-derived Epstein–Barr virus-associated post-transplant lymphoproliferative disease (EBV-PTLD), which was followed by a marked expansion of iCasp9 T cells and cytokine release syndrome (CRS). These iCasp9-transduced T cells infiltrated the affected lymph nodes and secreted IFNγ and IL-10. They peaked at 1,848 cells/μL and were found to be monoclonal by T-cell receptor (TCR) clonotype and oligoclonal by viral integrant analysis, representing a 6-log in vivo expansion of the dominant T-cell clone. These T cells were not autonomous and contracted with the resolution of EBV-PTLD, which did not recur. Conclusions: iCasp9-transduced T cells could persist long-term. They retained very high in vivo clonotypic proliferative capacity and function, and could cause CRS in response to de novo lymphoma development.
Mucosal-associated invariant T (MAIT) cells are a unique innate-like T cell subset that responds to a wide array of bacteria and yeast through recognition of riboflavin metabolites presented by the MHC class I–like molecule MR1. Here, we demonstrate using MR1 tetramers that recipient MAIT cells are present in small but definable numbers in graft-versus-host disease (GVHD) target organs and protect from acute GVHD in the colon following bone marrow transplantation (BMT). Consistent with their preferential juxtaposition to microbial signals in the colon, recipient MAIT cells generate large amounts of IL-17A, promote gastrointestinal tract integrity, and limit the donor alloantigen presentation that in turn drives donor Th1 and Th17 expansion specifically in the colon after BMT. Allogeneic BMT recipients deficient in IL-17A also develop accelerated GVHD, suggesting MAIT cells likely regulate GVHD, at least in part, by the generation of this cytokine. Indeed, analysis of stool microbiota and colon tissue from IL-17A–/– and MR1–/– mice identified analogous shifts in microbiome operational taxonomic units (OTU) and mediators of barrier integrity that appear to represent pathways controlled by similar, IL-17A–dependent mechanisms. Thus, MAIT cells act to control barrier function to attenuate pathogenic T cell responses in the colon and, given their very high frequency in humans, likely represent an important population in clinical BMT.
The key complications of allogeneic bone marrow transplantation (BMT) remain graft-versus-host disease (GVHD) and opportunistic infection. We have analyzed the blood stream infections (BSIs) occurring between day -7 and day 100 in a cohort of 184 adult patients undergoing allogeneic BMT in our center. A total of 167 of the 184 patients (91%) had blood cultures collected, and 69 (38%) patients had a confirmed BSI. Enterobacteriaceae, Pseudomonas aeruginosa, Enterococcus spp., and viridans Streptococcus spp. were the most commonly isolated organisms. Gender, conditioning (myeloablative versus reduced intensity), and donor type (sibling versus unrelated) did not differ significantly between those with and without confirmed BSI. Elevated temperature (>38°C) at the time of culture collection was associated with an almost 2-fold increased likelihood of returning a positive blood culture. The absence of a BSI was associated with a significant improvement in overall survival at 2 years, due to a significant reduction in nonrelapse mortality predominantly unrelated to the primary BSI. The presence of a BSI before engraftment was associated with the dysregulation of IL-6 and IL-8. Our findings suggest that BSI early after BMT defines a group of high-risk patients with enhanced cytokine dysregulation and poor transplant outcome.
IL-6 mediates broad physiological and pathological effects through its receptor signal transducing unit gp130. Due to the reportedly wide cellular expression of gp130, IL-6 is thought to signal ubiquitously via gp130 complex formation with membrane-bound IL-6Rα or soluble IL-6Rα. gp130 signaling primarily induces p-STAT3 and p-STAT1. In contrast to the previous dogma, we show in this article that circulating mouse and human granulocytes are unable to induce p-STAT3 or p-STAT1 after stimulation with IL-6 or an IL-6/soluble IL-6R complex. Furthermore, we demonstrate that this is due to a lack of gp130 expression on mouse and human granulocytes, despite their expression of membrane-bound IL-6R. Importantly, the absence of gp130 is not only a feature of mature granulocytes in healthy individuals, it is also observed after allogeneic stem cell transplantation. Moreover, granulocyte gp130 expression is lost during maturation, because granulocyte-monocyte progenitor cells express gp130 and respond to IL-6. Given that granulocytes constitute 50–70% of circulating leukocytes, this indicates a significantly smaller scope of IL-6 signaling than previously anticipated and has important implications for therapeutic IL-6 inhibition and the mechanisms of action thereof.
Type 1 regulatory T (T(R)1) cells are Foxp3(-) interleukin-10 (IL-10)-producing CD4(+) T cells with potent immunosuppressive properties, but their requirements for lineage development have remained elusive. We show that T(R)1 cells constitute the most abundant regulatory population after allogeneic bone marrow transplantation (BMT), express the transcription factor Eomesodermin (Eomes), and are critical for the prevention of graft-versus-host disease. We demonstrate that Eomes is required for T(R)1 cell differentiation, during which it acts in concert with the transcription factor B lymphocyte-induced maturation protein-1 (Blimp-1) by transcriptionally activating IL-10 expression and repressing differentiation into other T helper cell lineages. We further show that Eomes induction in T(R)1 cells requires T-bet and donor macrophage-derived IL-27. Thus, we define the cellular and transcriptional control of T(R)1 cell differentiation during BMT, opening new avenues to therapeutic manipulation.
Pharmacokinetics and immunological outcomes of alemtuzumab-based treatment for steroid-refractory acute GvHD