TY - JOUR A1 - Ribechini, Eliana A1 - Eckert, Ina A1 - Beilhack, Andreas A1 - Du Plessis, Nelita A1 - Walzl, Gerhard A1 - Schleicher, Ulrike A1 - Ritter, Uwe A1 - Lutz, Manfred B. T1 - Heat-killed Mycobacterium tuberculosis prime-boost vaccination induces myeloid-derived suppressor cells with spleen dendritic cell–killing capability JF - JCI Insight N2 - Tuberculosis patients and mice infected with live Mycobacterium tuberculosis accumulate high numbers of myeloid-derived suppressor cells (MDSCs). Here, we hypothesized that dead M. tuberculosis vaccines also may induce MDSCs that could impair the efficacy of vaccination. We found that repeated injections of M. tuberculosis vaccines (heat-killed M. tuberculosis in incomplete Freund’s adjuvant, such as Montanide) but not single or control vaccines without M. tuberculosis strongly expanded CD11b\(^+\) myeloid cells in the spleen, leading to T cell suppression of proliferation and killing ex vivo. Dead M. tuberculosis vaccination induced the generation of CD11b\(^+\)Ly6C\(^{hi}\)CD115\(^+\) iNOS/Nos2\(^+\) monocytic MDSCs (M-MDSCs) upon application of inflammatory or microbial activation signals. In vivo these M-MDSCs were positioned strategically in the splenic bridging channels and then positioned in the white pulp areas. Notably, within 6–24 hours, in a Nos2-dependent fashion, they produced NO to rapidly kill conventional and plasmacytoid DCs while, surprisingly, sparing T cells in vivo. Thus, we demonstrate that M. tuberculosis vaccine induced M-MDSCs do not directly suppress effector T cells in vivo but, instead, indirectly by killing DCs. Collectively, we demonstrate that M. tuberculosis booster vaccines induce M-MDSCs in the spleen that can be activated to kill DCs. Our data suggest that formation of MDSCs by M. tuberculosis vaccines should be investigated also in clinical trials. KW - Immunology KW - Infectious disease Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201973 VL - 13 IS - 4 ER - TY - JOUR A1 - Eckert, Ina N. A1 - Ribechini, Eliana A1 - Jarick, Katja J. A1 - Strozniak, Sandra A1 - Potter, Sarah J. A1 - Beilhack, Andreas A1 - Lutz, Manfred B. T1 - VLA-1 Binding to Collagen IV Controls Effector T Cell Suppression by Myeloid-Derived Suppressor Cells in the Splenic Red Pulp JF - Frontiers in Immunology N2 - Myeloid-derived suppressor cells (MDSCs) represent a major population controlling T cell immune responses. However, little is known about their molecular requirements for homing and T cell interaction to mediate suppression. Here, we investigated the functional role of the homing and collagen IV receptor VLA-1 (α1β1-integrin) on in vitro GM-CSF generated murine MDSCs from wild-type (WT) and CD49a/α1-integrin (Itga1\(^{−/−}\)) gene-deficient mice. Here, we found that effector (Teff) but not naive (Tn) CD4\(^+\) T cells express VLA-1 and monocytes further up-regulated their expression after culture in GM-CSF when they differentiated into the monocytic subset of resting MDSCs (R-MDSCs). Subsequent activation of R-MDSCs by LPS+IFN-γ (A-MDSCs) showed increased in vitro suppressor potential, which was independent of VLA-1. Surprisingly, VLA-1 deficiency did not influence A-MDSC motility or migration on collagen IV in vitro. However, interaction times of Itga1\(^{−/−}\) A-MDSCs with Teff were shorter than with WT A-MDSCs on collagen IV but not on fibronectin substrate in vitro. After injection, A-MDSCs homed to the splenic red pulp where they co-localized with Teff and showed immediate suppression already after 6 h as shown by inhibition of T cell proliferation and induction of apoptosis. Injection of A-MDSCs from Itga1\(^{−/−}\) mice showed equivalent homing into the spleen but a reduced suppressive effect. Interaction studies of A-MDSCs with Teff in the subcapsular red pulp with intravital two-photon microscopy revealed also here that MDSC motility and migration parameters were not altered by VLA-1 deficiency, but the interaction times with Teff were reduced. Together, our data point to a new role of VLA-1 adhesion to collagen IV as a prerequisite for extended contact times with Teff required for suppression. KW - myeloid-derived suppressor cells (MDSCs) KW - T cells KW - VLA-1 KW - homing KW - spleen Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-222671 SN - 1664-3224 VL - 11 ER - TY - JOUR A1 - Thomann, Anna Sophie A1 - Schneider, Theresa A1 - Cyran, Laura A1 - Eckert, Ina Nathalie A1 - Kerstan, Andreas A1 - Lutz, Manfred B. T1 - Conversion of Anergic T Cells Into Foxp3\(^-\) IL-10\(^+\) Regulatory T Cells by a Second Antigen Stimulus In Vivo JF - Frontiers in Immunology N2 - T cell anergy is a common mechanism of T cell tolerance. However, although anergic T cells are retained for longer time periods in their hosts, they remain functionally passive. Here, we describe the induction of anergic CD4\(^+\) T cells in vivo by intravenous application of high doses of antigen and their subsequent conversion into suppressive Foxp3\(^-\) IL-10\(^+\) Tr1 cells but not Foxp3\(^+\) Tregs. We describe the kinetics of up-regulation of several memory-, anergy- and suppression-related markers such as CD44, CD73, FR4, CD25, CD28, PD-1, Egr-2, Foxp3 and CTLA-4 in this process. The conversion into suppressive Tr1 cells correlates with the transient intracellular CTLA-4 expression and required the restimulation of anergic cells in a short-term time window. Restimulation after longer time periods, when CTLA-4 is down-regulated again retains the anergic state but does not lead to the induction of suppressor function. Our data require further functional investigations but at this stage may suggest a role for anergic T cells as a circulating pool of passive cells that may be re-activated into Tr1 cells upon short-term restimulation with high and systemic doses of antigen. It is tentative to speculate that such a scenario may represent cases of allergen responses in non-allergic individuals. KW - T cells KW - anergy KW - Tr1 KW - conversion KW - in vivo Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241429 SN - 1664-3224 VL - 12 ER - TY - JOUR A1 - Döhler, Anja A1 - Schneider, Theresa A1 - Eckert, Ina A1 - Ribechini, Eliana A1 - Andreas, Nico A1 - Riemann, Marc A1 - Reizis, Boris A1 - Weih, Falk A1 - Lutz, Manfred B. T1 - RelB\(^{+}\) Steady-State Migratory Dendritic Cells Control the Peripheral Pool of the Natural Foxp3\(^{+}\) Regulatory T Cells JF - Frontiers in Immunology N2 - Thymus-derived natural Foxp3\(^{+}\) CD4\(^{+}\) regulatory T cells (nTregs) play a key role in maintaining immune tolerance and preventing autoimmune disease. Several studies indicate that dendritic cells (DCs) are critically involved in the maintenance and proliferation of nTregs. However, the mechanisms how DCs manage to keep the peripheral pool at constant levels remain poorly understood. Here, we describe that the NF-κB/Rel family transcription factor RelB controls the frequencies of steady-state migratory DCs (ssmDCs) in peripheral lymph nodes and their numbers control peripheral nTreg homeostasis. DC-specific RelB depletion was investigated in CD11c-Cre × RelB\(^{fl/fl}\) mice (RelB\(^{DCko}\)), which showed normal frequencies of resident DCs in lymph nodes and spleen while the subsets of CD103\(^{-}\) Langerin\(^{-}\) dermal DCs (dDCs) and Langerhans cells but not CD103\(^{+}\) Langerin\(^{+}\) dDC of the ssmDCs in skin-draining lymph nodes were increased. Enhanced frequencies and proliferation rates were also observed for nTregs and a small population of CD4\(^{+}\) CD44\(^{high}\) CD25\(^{low}\) memory-like T cells (Tml). Interestingly, only the Tml but not DCs showed an increase in IL-2-producing capacity in lymph nodes of RelB\(^{DCko}\) mice. Blocking of IL-2 in vivo reduced the frequency of nTregs but increased the Tml frequencies, followed by a recovery of nTregs. Taken together, by employing RelB\(^{DCko}\) mice with increased frequencies of ssmDCs our data indicate a critical role for specific ssmDC subsets for the peripheral nTreg and IL-2\(^{+}\) Tml frequencies during homeostasis. KW - lymph nodes KW - dendritic cells KW - RelB KW - regulatory T cells KW - IL-2 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-158121 VL - 8 IS - 726 ER - TY - THES A1 - Eckert, Ina-Nathalie T1 - Molecular markers of myeloid-derived suppressor cells and their functional role for homing and in disease models in mice T1 - Molekulare Marker von myeloiden Suppressorzellen und ihre funktionelle Rolle für deren zielgerichtete Migration und bei Krankheitsmodellen in Mäusen N2 - MDSCs are suppressive immune cells with a high relevance in various pathologies including cancer, autoimmunity, and chronic infections. Surface marker expression of MDSCs resembles monocytes and neutrophils which have immunostimulatory functions instead of suppressing T cells. Therefore, finding specific surface markers for MDSCs is important for MDSC research and therapeutic MDSC manipulation. In this study, we analyzed if the integrin VLA-1 has the potential as a novel MDSC marker. VLA-1 was expressed by M-MDSCs but not by G-MDSCs as well as by Teff cells. VLA-1 deficiency did not impact iNOS expression, the distribution of M-MDSC and G-MDSC subsets, and the suppressive capacity of MDSCs towards naïve and Teff cells in vitro. In mice, VLA-1 had no effect on the homing capability of MDSCs to the spleen, which is a major reservoir for MDSCs. Since the splenic red pulp contains collagen IV and VLA-1 binds collagen IV with a high affinity, we found MDSCs and Teff cells in this area as expected. We showed that T cell suppression in the spleen, indicated by reduced T cell recovery and proliferation as well as increased apoptosis and cell death, partially depended on VLA-1 expression by the MDSCs. In a mouse model of multiple sclerosis, MDSC injection prior to disease onset led to a decrease of the disease score, and this effect was significantly reduced when MDSCs were VLA-1 deficient. The expression of Sema7A by Teff cells, a ligand for VLA-1 which is implicated in negative T cell regulation, resulted in a slightly stronger Teff cell suppression by MDSCs compared to Sema7A deficient T cells. Live cell imaging and intravital 2-photon microscopy showed that the interaction time of MDSCs and Teff cells was shorter when MDSCs lacked VLA 1 expression, however VLA-1 expression had no impact on MDSC mobility. Therefore, the VLA-1-dependent interaction of MDSC and Teff cells on collagen IV in the splenic red pulp is implicated MDSC-mediated Teff cell suppression. N2 - MDSCs sind suppressive Immunzellen mit hoher Relevanz bei verschiedenen Krankheiten, einschließlich Krebs, Autoimmunerkrankungen und chronischen Infektionen. Die Expression der Oberflächenmarker von MDSCs ähnelt Monozyten und Neutrophilen, welche im Gegensatz zu MDSCs immunstimulatorische Funktionen haben. Daher es wichtig für die Forschung und die therapeutische Manipulation von MDSCs, spezifische Oberflächenmarker für MDSCs zu identifizieren. In dieser Studie haben wir analysiert, ob das Integrin VLA-1 das ein möglicher neuer MDSC-Marker ist. Effektor-T-Zellen und M-MDSCs, aber nicht G-MDSCs exprimierten VLA-1. VLA-1-Defizienz hatte keinen Einfluss auf die iNOS-Expression, die Verteilung der M-MDSC- und G-MDSC-Subpopulationen und die suppressive Kapazität von MDSCs gegenüber naiven und Effektor-T-Zellen in vitro. In Mäusen hatte VLA-1 keinen Einfluss auf die Fähigkeit zur zielgerichteten Migration von MDSCs zur Milz, welche ein wichtiges Reservoir für MDSCs ist. Da die rote Pulpa der Milz Kollagen IV enthält und VLA-1 Kollagen IV mit hoher Affinität bindet, fanden wir wie erwartet MDSCs und Effektor-T-Zellen in diesem Bereich. Wir konnten zeigen, dass die T Zell-Suppression in der Milz, indiziert durch verringerte T-Zell-Wiederfindung und Proliferation sowie erhöhte Apoptose und Zelltod, teilweise von der VLA 1-Expression von MDSCs abhing. In einem Mausmodell für Multiple Sklerose führte die MDSC-Injektion vor Induktion der Krankheit zu einer Verringerung des Krankheits-Scores, und dieser Effekt war signifikant verringert, wenn MDSCs VLA-1-defizient waren. Die Expression von Sema7A durch Effektor-T-Zellen, ein Ligand für VLA-1, der mit negativer T Zell-Regulierung assoziiert ist, führte zu einer etwas stärkeren Effektor-T-Zell-Suppression durch MDSCs im Vergleich zu Sema7A-defizienten T-Zellen. Live-Cell-Imaging und intravitale 2-Photonen-Mikroskopie zeigten eine kürzere Interaktionszeit von MDSCs und Effektor-T-Zellen bei VLA-1 defizienten MDSCs, jedoch hatte die VLA-1-Expression keinen Einfluss auf die MDSC-Mobilität. Die Verwendung von VLA-1 bei der Identifizierungsstrategie von in vitro generierten MDSCs führte zu einer reineren Trennung von iNOS+ und Arg1+ Zellen von Zellen ohne Expression von Suppressormarkern. In Brusttumor-tragenden Mäusen und BCG-infizierten Mäusen, welche etablierte Modelle für die MDSC-Generierung in vivo sind, wurde VLA-1 nicht von endogenen MDSCs hochreguliert, daher ist VLA-1 möglicherweise kein geeigneter MDSC Marker in vivo. In BCG-infizierten Mäusen fanden wir CD16.2 (FcγRIV), welcher möglicherweise an der MDSC-vermittelten Immunsuppression beteiligt ist, in M-MDSCs und G-MDSCs hochreguliert, daher könnte CD16.2 ein neuer potenzieller MDSC-Marker in vivo sein. Die Analyse veröffentlichter RNA-Sequenzierungs- und Proteomikdaten von MDSCs ergab Markerkandidaten, die von MDSCs hochreguliert wurden, einschließlich VCAN und FCN1. KW - Immunologie KW - Immunsuppression KW - Maus KW - Myeloid-derived suppressor cells KW - Integrin KW - VLA-1 KW - Homing Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-319974 ER -