TY - JOUR A1 - Wong, David A1 - Winter, Oliver A1 - Hartig, Christina A1 - Siebels, Svenja A1 - Szyska, Martin A1 - Tiburzy, Benjamin A1 - Meng, Lingzhang A1 - Kulkarni, Upasana A1 - Fähnrich, Anke A1 - Bommert, Kurt A1 - Bargou, Ralf A1 - Berek, Claudia A1 - Van, Trung Chu A1 - Bogen, Bjarne A1 - Jundt, Franziska A1 - Manz, Rudolf Armin T1 - Eosinophils and Megakaryocytes Support the Early Growth of Murine MOPC315 Myeloma Cells in Their Bone Marrow Niches JF - PLOS ONE N2 - Multiple myeloma is a bone marrow plasma cell tumor which is supported by the external growth factors APRIL and IL-6, among others. Recently, we identified eosinophils and megakaryocytes to be functional components of the micro-environmental niches of benign bone marrow plasma cells and to be important local sources of these cytokines. Here, we investigated whether eosinophils and megakaryocytes also support the growth of tumor plasma cells in the MOPC315. BM model for multiple myeloma. As it was shown for benign plasma cells and multiple myeloma cells, IL-6 and APRIL also supported MOPC315. BM cell growth in vitro, IL-5 had no effect. Depletion of eosinophils in vivo by IL-5 blockade led to a reduction of the early myeloma load. Consistent with this, myeloma growth in early stages was retarded in eosinophil-deficient Delta dblGATA-1 mice. Late myeloma stages were unaffected, possibly due to megakaryocytes compensating for the loss of eosinophils, since megakaryocytes were found to be in contact with myeloma cells in vivo and supported myeloma growth in vitro. We conclude that eosinophils and megakaryocytes in the niches for benign bone marrow plasma cells support the growth of malignant plasma cells. Further investigations are required to test whether perturbation of these niches represents a potential strategy for the treatment of multiple myeloma. KW - plasma cells KW - human multiple-myeloma KW - immune response KW - receptor expression KW - B-cells KW - stromal cells KW - dexamethasone KW - april KW - survival KW - Interleukin-5 Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115269 VL - 9 IS - 10 ER - TY - JOUR A1 - Morton, Charles Oliver A1 - Fliesser, Mirjam A1 - Dittrich, Marcus A1 - Müller, Tobias A1 - Bauer, Ruth A1 - Kneitz, Susanne A1 - Hope, William A1 - Rogers, Thomas Richard A1 - Einsele, Hermann A1 - Löffler, Jürgen T1 - Gene Expression Profiles of Human Dendritic Cells Interacting with Aspergillus fumigatus in a Bilayer Model of the Alveolar Epithelium/Endothelium Interface N2 - The initial stages of the interaction between the host and Aspergillus fumigatus at the alveolar surface of the human lung are critical in the establishment of aspergillosis. Using an in vitro bilayer model of the alveolus, including both the epithelium (human lung adenocarcinoma epithelial cell line, A549) and endothelium (human pulmonary artery epithelial cells, HPAEC) on transwell membranes, it was possible to closely replicate the in vivo conditions. Two distinct sub-groups of dendritic cells (DC), monocyte-derived DC (moDC) and myeloid DC (mDC), were included in the model to examine immune responses to fungal infection at the alveolar surface. RNA in high quantity and quality was extracted from the cell layers on the transwell membrane to allow gene expression analysis using tailored custom-made microarrays, containing probes for 117 immune-relevant genes. This microarray data indicated minimal induction of immune gene expression in A549 alveolar epithelial cells in response to germ tubes of A. fumigatus. In contrast, the addition of DC to the system greatly increased the number of differentially expressed immune genes. moDC exhibited increased expression of genes including CLEC7A, CD209 and CCL18 in the absence of A. fumigatus compared to mDC. In the presence of A. fumigatus, both DC subgroups exhibited up-regulation of genes identified in previous studies as being associated with the exposure of DC to A. fumigatus and exhibiting chemotactic properties for neutrophils, including CXCL2, CXCL5, CCL20, and IL1B. This model closely approximated the human alveolus allowing for an analysis of the host pathogen interface that complements existing animal models of IA. KW - aspergillus fumigatus KW - gene expression KW - immune receptors KW - immune response KW - denritic cells KW - B cell receptors KW - gene regulation KW - RNA extraction Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112893 ER - TY - JOUR A1 - Notz, Quirin A1 - Schmalzing, Marc A1 - Wedekink, Florian A1 - Schlesinger, Tobias A1 - Gernert, Michael A1 - Herrmann, Johannes A1 - Sorger, Lena A1 - Weismann, Dirk A1 - Schmid, Benedikt A1 - Sitter, Magdalena A1 - Schlegel, Nicolas A1 - Kranke, Peter A1 - Wischhusen, Jörg A1 - Meybohm, Patrick A1 - Lotz, Christopher T1 - Pro- and Anti-Inflammatory Responses in Severe COVID-19-Induced Acute Respiratory Distress Syndrome—An Observational Pilot Study JF - Frontiers in Immunology N2 - Objectives The severity of Coronavirus Disease 2019 (COVID-19) is largely determined by the immune response. First studies indicate altered lymphocyte counts and function. However, interactions of pro- and anti-inflammatory mechanisms remain elusive. In the current study we characterized the immune responses in patients suffering from severe COVID-19-induced acute respiratory distress syndrome (ARDS). Methods This was a single-center retrospective study in patients admitted to the intensive care unit (ICU) with confirmed COVID-19 between March 14th and May 28th 2020 (n = 39). Longitudinal data were collected within routine clinical care, including flow-cytometry of lymphocyte subsets, cytokine analysis and growth differentiation factor 15 (GDF-15). Antibody responses against the receptor binding domain (RBD) of Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) Spike protein were analyzed. Results All patients suffered from severe ARDS, 30.8% died. Interleukin (IL)-6 was massively elevated at every time-point. The anti-inflammatory cytokine IL-10 was concomitantly upregulated with IL-6. The cellular response was characterized by lymphocytopenia with low counts of CD8+ T cells, natural killer (NK) and naïve T helper cells. CD8+ T and NK cells recovered after 8 to 14 days. The B cell system was largely unimpeded. This coincided with a slight increase in anti-SARS-CoV-2-Spike-RBD immunoglobulin (Ig) G and a decrease in anti-SARS-CoV-2-Spike-RBD IgM. GDF-15 levels were elevated throughout ICU treatment. Conclusions Massively elevated levels of IL-6 and a delayed cytotoxic immune defense characterized severe COVID-19-induced ARDS. The B cell response and antibody production were largely unimpeded. No obvious imbalance of pro- and anti-inflammatory mechanisms was observed, with elevated GDF-15 levels suggesting increased tissue resilience. KW - Coronavirus Disease 2019 KW - acute respiratory distress syndrome KW - Severe Acute Respiratory Syndrome Coronavirus 2 KW - cytokines KW - inflammation KW - growth differentiation factor 15 KW - immune response Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212815 SN - 1664-3224 VL - 11 ER - TY - THES A1 - Zoran, Tamara T1 - Multilevel analysis of the human immune response to \(Aspergillus\) \(fumigatus\) infection: Characteristic molecular signatures and individual risk factors T1 - Analysen der humanen Immunantwort auf eine Infektion mit \(Aspergillus\) \(fumigatus\): Charakteristische molekulare Signaturen und individuelle Risikofaktoren N2 - Although the field of fungal infections advanced tremendously, diagnosis of invasive pulmonary aspergillosis (IPA) in immunocompromised patients continues to be a challenge. Since IPA is a multifactorial disease, investigation from different aspects may provide new insights, helpful for improving IPA diagnosis. This work aimed to characterize the human immune response to Aspergillus fumigatus in a multilevel manner to identify characteristic molecular candidates and risk factors indicating IPA, which may in the future support already established diagnostic assays. We combined in vitro studies using myeloid cells infected with A. fumigatus and longitudinal case-control studies investigating patients post allogeneic stem cell transplantation (alloSCT) suffering from IPA and their match controls. Characteristic miRNA and mRNA signatures indicating A. fumigatus-infected monocyte-derived dendritic cells (moDCs) demonstrated the potential to differentiate between A. fumigatus and Escherichia coli infection. Transcriptome and protein profiling of alloSCT patients suffering from IPA and their matched controls revealed a distinctive IPA signature consisting of MMP1 induction and LGAL2 repression in combination with elevated IL-8 and caspase-3 levels. Both, in vitro and case-control studies, suggested cytokines, matrix-metallopeptidases and galectins are important in the immune response to A. fumigatus. Identified IPA characteristic molecular candidates are involved in numerous processes, thus a combination of these in a distinctive signature may increase the specificity. Finally, low monocyte counts, severe GvHD of the gut (grade ≥ 2) and etanercept administration were significantly associated with IPA diagnosis post alloSCT. Etanercept in monocyte-derived macrophages (MDM) infected with A. fumigatus downregulates genes involved in the NF-κB and TNF-α pathway and affects the secretion of CXCL10. Taken together, identified characteristic molecular signatures and risk factors indicating IPA may in the future in combination with established fungal biomarkers overcome current diagnostic challenges and help to establish tailored antifungal therapy. Therefore, further multicentre studies are encouraged to evaluate reported findings. N2 - Obwohl im Bereich der Erforschung invasiver Pilzinfektionen aktuell enorme Fortschritte erzielt wurden, stellt die Diagnose der Invasiven Pulmonalen Aspergillose (IPA) bei immunsupprimierten Patienten weiterhin eine grosse Herausforderung dar. Da es sich bei der IPA um eine multifaktorielle Erkrankung handelt, können Untersuchungen unter verschiedenen Fragestellungen neue Erkenntnisse liefern, die zur Verbesserung der IPA Diagnose beitragen. In dieser Arbeit wurde die humane Immunantwort auf Aspergillus fumigatus auf mehreren Ebenen untersucht, um charakteristische molekulare Kandidaten und Risikofaktoren zu identifizieren, die auf eine IPA hinweisen um so in Zukunft bereits etablierte diagnostische Tests unterstützen zu können. Wir kombinierten in vitro Studien mit A. fumigatus infizierten, myeloischen Zellen mit longitudinalen Case-Control-Studien, in denen an IPA erkrankte Patienten und ihre passenden Kontrollpatienten nach allogener Stammzelltransplantation (alloSZT) untersucht wurden. Charakteristische miRNA und mRNA Signaturen von A. fumigatus-infizierten Monozyten-abgeleiteten dendritischen Zellen (moDCs) zeigten das Potenzial, zwischen A. fumigatus und Escherichia coli Infektionen zu unterscheiden. Transkriptom- und Protein- Analysen von alloSZT Patienten, die an einer IPA erkrankten, und den passenden Kontrollpatienten ergaben charakteristische IPA Signaturen, bestehend aus einer MMP1 Induktion und einer LGALS2 Repression, in Kombination mit erhöhten IL-8 und Caspase-3 Konzentrationen. Sowohl die in vitro Daten als auch die Fall-Kontroll- Studien zeigten, dass Zytokine, Matrix-Metallopeptidasen und Galectine eine wichtige Rolle bei der Immunantwort auf A. fumigatus spielen. Die in IPA identifizierten charakteristischen molekularen Kandidaten sind an mehreren Prozessen beteiligt, so dass eine Kombination dieser molekularen Kandidaten die Spezifität mittels charakteristischer Signatur erhöhen könnte. Schließlich waren niedrige Monozytenzahlen, eine schwere GvHD des Darms (Grad ≥ 2) und die Anwendung von Etanercept signifikant mit einer IPA Diagnose nach alloSZT assoziiert. Etanercept in Makrophagen, die mit A. fumigatus ko-kultiviert wurden, reguliert Gene herunter, die am NF-κB- und TNF-α-Signalweg beteiligt sind, und beeinflusst die Sekretion von CXCL10. Zusammenfassend lässt sich festhalten, dass die identifizierten charakteristischen molekularen Signaturen und Risikofaktoren, die auf eine IPA hinweisen, in Zukunft in Kombination mit etablierten Pilz-Biomarkern die derzeitigen diagnostischen Limitationen überwinden könnten und dazu beitragen könnten, eine patientenindividuelle antimykotische Therapie zu etablieren. Es werden jedoch weitere multizentrische Studien notwendig sein, um diese Ergebnisse umfassend zu bewerten. KW - Aspergillus fumigatus KW - Immunantwort KW - Risikofaktoren KW - invasive pulmonary aspergillosis KW - immune response KW - risk factors KW - transcriptome profiling Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-298512 ER - TY - THES A1 - Katz, Beverly Vanessa T1 - Rolle der gammadelta T-Zellen in der Immunantwort bei Patienten mit gastrointestinalen Tumoren T1 - Role of gammadelta T cells in the immune response in patients with gastrointestinal tumors N2 - Zusammenfassend konnte im Rahmen der vorliegenden Arbeit die Frage nach der Fähigkeit der selektiven Stimulierung mittels des Phosphorantigens HMBPP und den beiden BTN3 Antikörpern bestätigt werden. Es konnte zudem wie erwartet hierbei ein Unterschied zwischen den beiden Kohorten detektiert werden. Dabei zeigte die Kohorte der Normalspender erwartungsgemäß eine stärkere Aktivierungs- sowie Proliferations-fähigkeit. Normalspender ließen sich signifikant besser mit HMBPP aktivieren und bei bestimmter Konzentration signifikant besser proliferieren, bei BTN3A und sc20.1 konnten keine signifikanten Unterschiede ermittelt werden, allerdings anhand der Mittelwerte eine deutlich stärkere Aktivierung und Proliferation aufgezeigt werden. Außerdem konnten interessante interindividuelle Unterschiede detektiert werden, die neue Erkenntnisse brachten. Mit Hilfe der untersuchten Oberflächenmoleküle CD45RA und CD27 und der Einteilung der gammadelta T-Zellen in unterschiedliche Subgruppen konnten so mögliche Erklärungen für die Unterschiede zwischen den Kohorten aufgezeigt werden. Normalspender zeigten signifikant höhere Anteile an naiven gammadelta T-Zellen und nicht signifikant höhere Anteile an central memory T-Zellen, demnach eine deutliche Verschiebung in Richtung nicht differenzierter Subsets, wohingegen die Tumorkohorte signifikant höhere effector memory T-Zellen aufwiesen und somit eine deutliche Verschiebung in Richtung differenzierter Subsets. Dadurch kann erklärt werden, weshalb Normalspender besser aktiviert werden und besser proliferieren können. Auch die Einteilung in unterschiedliche Profile 1-6 anhand CD28, CD27 und CD16 lieferte Gründe für den Unterschied zwischen den Kohorten, wobei Normalspender der Gruppe 1 und 2, Tumorpatienten der Gruppe 3 und 4 angehörten. Durch Ermittlung weiterer signifikanter Änderungen einiger exprimierter Oberflächenmoleküle CD39, CD161 und PD1 wurde mit Hilfe der vorliegenden Arbeit bekräftigt, dass einige Faktoren betrachtet werden müssen, die die Proliferation und Aktivierung der gammadelta T-Zellen positiv und negativ beeinflussen können. Es konnte jedoch auch erneut verdeutlicht werden, wie komplex und weitgreifend der Aktivierungsmechanismus, die damit verbundene Expansion und die Auslösung der einzelnen Effektorfunktionen ist. N2 - In summary, the present thesis confirmed the ability of the antigen HMBPP and the two BTN3 antibodies to stimulate selectively. Moreover, as expected, a difference between the two cohorts could be detected. As expected, the cohort of normal donors showed a stronger activation and proliferation ability. Normal donors were significantly better activated with HMBPP and significantly better proliferated at certain concentrations. No significant differences could be determined for BTN3A and sc20.1, but a significantly stronger activation and proliferation could be shown on the basis of the mean values. In addition, interesting interindividual differences could be detected, which provided new insights. With the help of the investigated surface molecules CD45RA and CD27 and the classification of the T cells into different subgroups, possible explanations for the differences between the cohorts could be revealed. Normal donors showed significantly higher proportions of naïve T cells and non-significantly higher proportions of central memory T cells, thus a clear shift towards non-differentiated subsets, whereas the tumor cohort showed significantly higher effector memory T cells and thus a clear shift towards differentiated subsets. This may explain why normal donors are better activated and better able to proliferate. Also, classification into different profiles 1-6 based on CD28, CD27, and CD16 provided reasons for the difference between the cohorts, with normal donors belonging to groups 1 and 2, and tumor patients to groups 3 and 4. By identifying further significant changes in some expressed surface molecules CD39, CD161 and PD1, the present work affirmed the need to consider some factors that may positively and negatively influence T cell proliferation and activation. However, it was also possible to illustrate once again how complex and far-reaching the activation mechanism, the associated expansion and the triggering of the individual effector functions are. KW - T-Lymphozyt KW - Immunsystem KW - Immunmodulation KW - Gammadelta T Zellen KW - gastrointestinale Tumore KW - Immunreaktion KW - T cells KW - Immunreaction KW - immune response Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-290140 ER -