Institut für Virologie und Immunbiologie
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Hsp90 inhibition ameliorates CD4\(^{+}\) T cell-mediated acute Graft versus Host disease in mice
(2016)
Introduction:
For many patients with leukemia only allogeneic bone marrow transplantion provides a chance of cure. Co‐transplanted mature donor T cells mediate the desired Graft versus Tumor (GvT) effect required to destroy residual leukemic cells. The donor T cells very often, however, also attack healthy tissue of the patient inducing acute Graft versus Host Disease (aGvHD)—a potentially life‐threatening complication.
Methods:
Therefore, we used the well established C57BL/6 into BALB/c mouse aGvHD model to evaluate whether pharmacological inhibition of heat shock protein 90 (Hsp90) would protect the mice from aGvHD.
Results:
Treatment of the BALB/c recipient mice from day 0 to +2 after allogeneic CD4\(^{+}\) T cell transplantation with the Hsp90 inhibitor 17‐(dimethylaminoethylamino)‐17‐demethoxygeldanamycin (DMAG) partially protected the mice from aGvHD. DMAG treatment was, however, insufficient to prolong overall survival of leukemia‐bearing mice after transplantation of allogeneic CD4\(^{+}\) and CD8\(^{+}\) T cells. Ex vivo analyses and in vitro experiments revealed that DMAG primarily inhibits conventional CD4\(^{+}\) T cells with a relative resistance of CD4\(^{+}\) regulatory and CD8\(^{+}\) T cells toward Hsp90 inhibition.
Conclusions:
Our data, thus, suggest that Hsp90 inhibition might constitute a novel approach to reduce aGvHD in patients without abrogating the desired GvT effect.
Zytotoxische CD8+ T-Zellen spielen eine bedeutende Rolle in der Immunantwort gegen HIV-1. Trotz allem kommt es jedoch im Verlauf der Infektion bei den meisten Betroffenen zum Anstieg der Viruslast und Abfall der CD4 Zellzahl, obwohl auch in diesem fortgeschrittenen Stadium der Infektion virusspezifische CD8+ T-Zellantworten mittels INF-γ-Produktion nachgewiesen werden können. Ziel der vorliegenden Arbeit war es daher, weitere funktionelle und phänotypische Merkmale von CD8+ T-Zellen zu untersuchen, um eine mögliche Ursache für die im Verlauf der Infektion ineffizient werdende Immunantwort zu finden. Einen statistisch signifikanten Unterschied der INF-γ Produktion CD8+ T-Zellen zwischen Progressors und Controllers ließ sich mittels INF-γ Elispot bei den von uns untersuchten Patienten nicht nachweisen. Es ist also davon auszugehen, dass CD8+-T-Zellen im fortgeschrittenen, chronischen Stadium der Infektion funktionelle Lücken aufweisen, die sich nicht durch INF-basierte Untersuchungsmethoden nachweisen lassen. Anhand intrazellulärer Zytokinfärbung ließ sich unabhängig vom Schweregrad der Infektion eine erhaltene Produktion der Zytokine INFγ und TNFα, nicht hingegen eine Produktion von IL-2 nachweisen. Bei der Untersuchung HIV spezifischer CD8+ T-Zellen mit Hilfe von Tetramerfärbungen zeigte sich in Bezug auf den Aktivierungsgrad, gemessen an der CD38-Expression, ein deutlicher Unterschied zwischen Progressors und Controllers, der innerhalb der HIV-spezifischen CD8+ T-Zellen im Vergleich zur gesamten CD8+ T-Zellpopulation noch ausgeprägter zu erkennen war. Hier gab es eine signifikante positive Korrelation zur Viruslast und eine signifikante negative Korrelation zur CD4-Zellzahl der HIV-Infizierten. Anhand des Aktivierungsmarkers HLA-DR ließ sich dieser Unterschied nicht nachweisen. Im Bezug auf die Proliferationsfähigkeit, Apoptoseempfindlichkeit und lytische Funktion HIV-spezifischer Zellen konnte kein statistisch signifikanter Unterschied zwischen Progressors und Controllers ausgemacht werden. Schlüsse für die Gesamtheit der HIV-spezifischen Zellen eines HIV-Infizierten kann man natürlich nicht ziehen. Man darf nicht außer Acht lassen, dass uns lediglich eine begrenzte Anzahl von Epitopen bei den durchgeführten Untersuchungen zur Verfügung stand. Es wurde jedoch deutlich, dass es feine Unterschiede und Trends zu geben scheint, die eine gezielte weiterführende Untersuchung erfordern. Weiterhin ist auch zu bedenken, dass möglicherweise andere Faktoren, als die von uns untersuchten, für den unterschiedlichen Krankheitsverlauf verantwortlich sein können. Welche Faktoren nun tatsächlich die Ursache sind dafür, dass das menschliche Immunsystem gegen das HI-Virus in der Regel früher oder später verliert, bleibt weiterhin offen. Sehr wahrscheinlich handelt es sich hierbei um das Zusammenspiel mehrerer Mechanismen. Die gezielte Untersuchung HIV-spezifischer Zellen ist bei der weiteren Erforschung der genauen Zusammenhänge unerlässlich.
Donor CD4\(^+\)Foxp3\(^+\) regulatory T cells (T reg cells) suppress graft-versus-host disease (GvHD) after allogeneic hematopoietic stem cell transplantation (HCT allo-HCT]). Current clinical study protocols rely on the ex vivo expansion of donor T reg cells and their infusion in high numbers. In this study, we present a novel strategy for inhibiting GvHD that is based on the in vivo expansion of recipient T reg cells before allo-HCT, exploiting the crucial role of tumor necrosis factor receptor 2 (TNFR2) in T reg cell biology. Expanding radiation-resistant host T reg cells in recipient mice using a mouse TNFR2-selective agonist before allo-HCT significantly prolonged survival and reduced GvHD severity in a TNFR2-and T reg cell-dependent manner. The beneficial effects of transplanted T cells against leukemia cells and infectious pathogens remained unaffected. A corresponding human TNFR2-specific agonist expanded human T reg cells in vitro. These observations indicate the potential of our strategy to protect allo-HCT patients from acute GvHD by expanding T reg cells via selective TNFR2 activation in vivo.
Multiple myeloma remains a largely incurable disease of clonally expanding malignant plasma cells. The bone marrow microenvironment harbors treatment-resistant myeloma cells, which eventually lead to disease relapse in patients. In the bone marrow, CD4\(^{+}\)FoxP3\(^{+}\) regulatory T cells (Tregs) are highly abundant amongst CD4\(^{+}\) T cells providing an immune protective niche for different long-living cell populations, e.g., hematopoietic stem cells. Here, we addressed the functional role of Tregs in multiple myeloma dissemination to bone marrow compartments and disease progression. To investigate the immune regulation of multiple myeloma, we utilized syngeneic immunocompetent murine multiple myeloma models in two different genetic backgrounds. Analyzing the spatial immune architecture of multiple myeloma revealed that the bone marrow Tregs accumulated in the vicinity of malignant plasma cells and displayed an activated phenotype. In vivo Treg depletion prevented multiple myeloma dissemination in both models. Importantly, short-term in vivo depletion of Tregs in mice with established multiple myeloma evoked a potent CD8 T cell- and NK cell-mediated immune response resulting in complete and stable remission. Conclusively, this preclinical in-vivo study suggests that Tregs are an attractive target for the treatment of multiple myeloma.
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.
Immune checkpoint blockade therapy is beneficial and even curative for some cancer patients. However, the majority don’t respond to immune therapy. Across different tumor types, pre-existing T cell infiltrates predict response to checkpoint-based immunotherapy. Based on in vitro pharmacological studies, mouse models and analyses of human melanoma patients, we show that the cytokine GDF-15 impairs LFA-1/β2-integrin-mediated adhesion of T cells to activated endothelial cells, which is a pre-requisite of T cell extravasation. In melanoma patients, GDF-15 serum levels strongly correlate with failure of PD-1-based immune checkpoint blockade therapy. Neutralization of GDF-15 improves both T cell trafficking and therapy efficiency in murine tumor models. Thus GDF-15, beside its known role in cancer-related anorexia and cachexia, emerges as a regulator of T cell extravasation into the tumor microenvironment, which provides an even stronger rationale for therapeutic anti-GDF-15 antibody development.
Aspergillus fumigatus is the main cause of invasive fungal infections occurring almost exclusively in immunocompromised patients. An improved understanding of the initial innate immune response is key to the development of better diagnostic tools and new treatment options. Mice are commonly used to study immune defense mechanisms during the infection of the mammalian host with A. fumigatus. However, little is known about functional differences between the human and murine immune response against this fungal pathogen. Thus, we performed a comparative functional analysis of human and murine dendritic cells (DCs), macrophages, and polymorphonuclear cells (PMNs) using standardized and reproducible working conditions, laboratory protocols, and readout assays. A. fumigatus did not provoke identical responses in murine and human immune cells but rather initiated relatively specific responses. While human DCs showed a significantly stronger upregulation of their maturation markers and major histocompatibility complex molecules and phagocytosed A. fumigatus more efficiently compared to their murine counterparts, murine PMNs and macrophages exhibited a significantly stronger release of reactive oxygen species after exposure to A. fumigatus. For all studied cell types, human and murine samples differed in their cytokine response to conidia or germ tubes of A. fumigatus. Furthermore, Dectin-1 showed inverse expression patterns on human and murine DCs after fungal stimulation. These specific differences should be carefully considered and highlight potential limitations in the transferability of murine host–pathogen interaction studies.
Das Multiple Myelom ist trotz deutlicher Fortschritte in der Therapie meist eine unheilbare Erkrankung, so dass der Erforschung neuer therapeutischer Optionen mit dem Ziel, eine möglichst langfristige krankheitsfreie Zeit für den betroffenen Patienten zu erreichen, eine wichtige Bedeutung zukommt. Hierbei erweist sich der Ansatz, maligne Plasmazellen spezifisch mit onkolytischen Viren zu infizieren und zu eliminieren, als zunehmend vielversprechend. Im Rahmen dieser Arbeit wurde ein neues rekombinantes Masernvirus kloniert, das selektiv primäre MM-Zellen infiziert und abtötet. Diese Fähigkeit basiert auf der Verwendung eines mutierten H-Proteins, das nicht mehr mit den natürlichen Rezeptoren CD46 oder CD150 interagiert und das zusätzlich mit einem single chain Antikörper (scFvWue) verknüpft ist, der MM-Zellen spezifisch bindet. Unter Verwendung eines etablierten Rescuesystems aus cDNA konnten in vitro replikationskompetente Virionen von MV-Wue erstellt werden. Diese vorgenommenen Veränderungen beeinflussten die Fähigkeit zur effizienten Replikation und Produktion infektiöser Viren in vitro nicht. Zur funktionellen Testung des neuen rekombinanten Virus MV-Wue wurde die Spezifität des Virus für primäre maligne Plasmazellen in Infektionsexperimenten gezeigt sowie der Mechanismus der Ablation als Apoptose definiert.
Butyrophilin (BTN)–3A and BTN2A1 molecules control the activation of human Vγ9Vδ2 T cells during T cell receptor (TCR)-mediated sensing of phosphoantigens (PAg) derived from microbes and tumors. However, the molecular rules governing PAg sensing remain largely unknown. Here, we establish three mechanistic principles of PAg-mediated γδ T cell activation. First, in humans, following PAg binding to the intracellular BTN3A1-B30.2 domain, Vγ9Vδ2 TCR triggering involves the extracellular V-domain of BTN3A2/BTN3A3. Moreover, the localization of both protein domains on different chains of the BTN3A homo-or heteromers is essential for efficient PAg-mediated activation. Second, the formation of BTN3A homo-or heteromers, which differ in intracellular trafficking and conformation, is controlled by molecular interactions between the juxtamembrane regions of the BTN3A chains. Finally, the ability of PAg not simply to bind BTN3A-B30.2, but to promote its subsequent interaction with the BTN2A1-B30.2 domain, is essential for T-cell activation. Defining these determinants of cooperation and the division of labor in BTN proteins improves our understanding of PAg sensing and elucidates a mode of action that may apply to other BTN family members.
Background
HIV-disease progression correlates with immune activation. Here we investigated whether corticosteroid treatment can attenuate HIV disease progression in antiretroviral-untreated patients.
Methods
Double-blind, placebo-controlled randomized clinical trial including 326 HIV-patients in a resource-limited setting in Tanzania (clinicaltrials.gov NCT01299948). Inclusion criteria were a CD4 count above 300 cells/μl, the absence of AIDS-defining symptoms and an ART-naïve therapy status. Study participants received 5 mg prednisolone per day or placebo for 2 years. Primary endpoint was time to progression to an AIDS-defining condition or to a CD4-count below 200 cells/μl.
Results
No significant change in progression towards the primary endpoint was observed in the intent-to-treat (ITT) analysis (19 cases with prednisolone versus 28 cases with placebo, p = 0.1407). In a per-protocol (PP)-analysis, 13 versus 24 study participants progressed to the primary study endpoint (p = 0.0741). Secondary endpoints: Prednisolone-treatment decreased immune activation (sCD14, suPAR, CD38/HLA-DR/CD8+) and increased CD4-counts (+77.42 ± 5.70 cells/μl compared to -37.42 ± 10.77 cells/μl under placebo, p < 0.0001). Treatment with prednisolone was associated with a 3.2-fold increase in HIV viral load (p < 0.0001). In a post-hoc analysis stratifying for sex, females treated with prednisolone progressed significantly slower to the primary study endpoint than females treated with placebo (ITT-analysis: 11 versus 21 cases, p = 0.0567; PP-analysis: 5 versus 18 cases, p = 0.0051): No changes in disease progression were observed in men.
Conclusions
This study could not detect any significant effects of prednisolone on disease progression in antiretroviral-untreated HIV infection within the intent-to-treat population. However, significant effects were observed on CD4 counts, immune activation and HIV viral load. This study contributes to a better understanding of the role of immune activation in the pathogenesis of HIV infection.