TY - THES A1 - Peña Mosca, María Josefina T1 - Local regulation of T-cell immunity in the intestinal mucosa T1 - Lokale Regulation der T-Zell-Immunität in der Darmschleimhaut N2 - After priming in Peyer's patches (PPs) and mesenteric lymph nodes (mLN) T- cells infiltrate the intestine through lymphatic draining and homing through the bloodstream. However, we found that in mouse models of acute graft-versus-host disease (GvHD), a subset of alloreactive T-cells directly migrates from PPs to the adjacent intestinal lamina propria (LP), bypassing the normal lymphatic drainage and vascular trafficking routes. Notably, this direct migration occurred in irradiated and unirradiated GvHD models, indicating that irradiation is not a prerequisite for this observed behavior. Next, we established a method termed serial intravascular staining (SIVS) in mouse models to systematically investigate the trafficking and migration of donor T- cells in the early stages of acute GvHD initiation. We found that the direct migration of T-cells from PPs to LP resulted in faster recruitment of cells after allogeneic hematopoietic cell transplantation (allo-HCT). These directly migrating T-cells were found to be in an activated and proliferative state, exhibiting a TH1/TH17-like phenotype and producing cytokines such as IFN-γ and TNF-α. Furthermore, we observed that the directly migrating alloreactive T-cells expressed specific integrins (α4+, αE+) and chemokine receptors (CxCR3+, CCR5+, and CCR9+). Surprisingly, blocking these integrins and chemokine-coupled receptors did not hinder the direct migration of T- cells from PPs to LP, suggesting the involvement of alternative mechanisms. Previous experiments ruled out the involvement of S1PR1 and topographical features of macrophages, leading us to hypothesize that mediators of cytoskeleton reorganization, such as Coro1a, Dock2, or Cdc42, may play a role in this unique migration process. Additionally, we observed that directly migrating T-cells created a local inflammatory microenvironment, which attracts circulating T-cells. Histological analysis confirmed that alloreactive PPs-derived T-cells and bloodborne T-cells colocalized. We employed two experimental approaches, including either photoconversion of T-cells in PPs or direct transfer of activated T-cells into the vasculature, to demonstrate this colocalization. We hypothesize that cytokines released by migrating T-cells, such as IFN-γ and TNF-α, may play a role in recruiting T-cells from the vasculature, as inhibiting chemokine-coupled receptors did not impair recruitment. N2 - Nach der Priming-Phase in den Peyer-Plaques (PPs) und mesenterialen Lymphknoten (mLN) migrieren T-Zellen über die lymphatische Drainage und den Blutkreislauf die Darmschleimhaut. Allerdings haben wir festgestellt, dass in Mausmodellen der akuten Graft-versus-Host Erkrankung (GvHD) eine Untergruppe alloreaktiver T-Zellen direkt von den Peyer-Plaques in das benachbarte intestinale Lamina propria (LP) migriert, ohne lymphatische Drainage- oder vaskuläre Transportwege zu nutzen. Bemerkenswert ist, dass diese direkte Migration sowohl in bestrahlten als auch in nicht bestrahlten GvHD-Modellen auftrat, was darauf hindeutet, dass Gewebeschaden durch ionisierende Strahlung keine Voraussetzung für dieses beobachtete T-Zell-Migrationsverhalten ist. Anschließend haben wir die Methode der "serielle intravaskulären Zellmarkierung" (SIVS) für Mausmodelle etabliert, um systematisch das Migrationsverhalten von alloreaktiven Spender-T-Zellen in den frühen Stadien der akuten GvHD-Initiierung zu untersuchen. Wir beobachteten, dass die direkte Migration von T-Zellen von PPs zu LP zu einer schnelleren Rekrutierung von Zellen nach allogener hämatopoetischer Zelltransplantation (allo-HCT) führte. Diese direkt migrierenden T-Zellen befanden sich in einem aktivierten und proliferativen Zustand, wiesen einen TH1-/TH17- ähnlichen Phänotyp auf und produzierten Zytokine wie IFN- γ und TNF-α. Darüber hinaus beobachteten wir, dass die direkt migrierenden alloreaktiven T-Zellen spezifische Integrine (α4+, αE+) und Chemokinrezeptoren (CxCR3+, CCR5+ und CCR9+) exprimierten. Überraschenderweise verhinderte die Blockierung dieser Integrine und Chemokinrezeptoren nicht die direkte Migration von T-Zellen aus PPs in LP, was auf die Beteiligung alternativer T- Zellmigrationsmechanismen schließen lässt. Vorangegangene Experimente schlossen die Beteiligung von S1PR1 und topografischer Merkmale gewebeständiger Makrophagen aus, was uns zu der Hypothese führte, dass Mediatoren der Zytoskelett- Reorganisation wie Coro1a, Dock2 oder Cdc42 eine Rolle in diesem einzigartigen Migrationsprozess spielen könnten. Zusätzlich beobachteten wir, dass direkt migrierende T-Zellen in der Darmschleimhaut ein lokales entzündliches Mikromilieu schaffen, welches zirkulierende T-Zellen anzieht. Die histologische Analyse bestätigte die Kolokalisation von direkt aus PP stammenden T-Zellen und T Zellen, welche über die Blutbahn in die Darmmukosa einwanderten. Um die direkte T-Zellmigration eindeutig zu bestätigen, wählten wir zwei experimentelle Ansätze: Die Photokonversion von T-Zellen in PPs während der Priming-Phase sowie den direkten Transfer aktivierter T-Zellen in das Gefäßsystem, um eine T-Zellkolokalisierung nachzuweisen. Aufbauend auf den Ergebnissen vermuten wir, dass Zytokine, die von migrierenden T-Zellen freigesetzt werden, wie zum Beispiel IFN-γ und TNF-α, möglicherweise eine Rolle bei der Rekrutierung von T-Zellen aus dem Gefäßsystem spielen, da die Hemmung von G- Protein-gekoppelter Rezeptoren (und somit aller Chemokinrezeptoren) die T-Zell- Rekrutierung nicht beeinträchtigte. KW - T-Lymphozyt KW - Transplantat-Wirt-Reaktion KW - Zellmigration KW - Darm KW - Peyer's patch KW - Graft versus Host disease KW - T-cell KW - Cell migration KW - Small intestine KW - Bone marrow transplantation Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352665 ER - TY - JOUR A1 - Neuchel, Christine A1 - Fürst, Daniel A1 - Niederwieser, Dietger A1 - Bunjes, Donald A1 - Tsamadou, Chrysanthi A1 - Wulf, Gerald A1 - Pfreundschuh, Michael A1 - Wagner, Eva A1 - Stuhler, Gernot A1 - Einsele, Hermann A1 - Schrezenmeier, Hubert A1 - Mytilineos, Joannis T1 - Impact of donor activating KIR genes on HSCT outcome in C1-ligand negative myeloid disease patients transplanted with unrelated donors - a retrospective study JF - PLOS One N2 - Natural Killer cells (NK) are lymphocytes with the potential to recognize and lyse cells which escaped T-cell mediated lysis due to their aberrant HLA expression profiles. Killer cell immunoglobulin-like receptors (KIR) influence NK-cell activity by mediation of activating or inhibitory signals upon interaction with HLA-C (C1, C2) ligands. Therefore, absence of ligands for donor inhibitory KIRs following hematopoietic stem cell transplantation (HSCT) may have an influence on its outcome. Previous studies showed that C1 negative patients have a decreased HSCT outcome. Our study, based on a cohort of 200 C1-negative patients, confirmed these findings for the endpoints: overall survival (OS: HR = 1.41, CI = 1.14–1.74, p = 0.0012), disease free survival (DFS: HR = 1.27, CI = 1.05–1.53, p = 0.015), treatment related mortality (TRM: HR = 1.41, CI = 1.01–1.96, p = 0.04), and relapse incidence (RI: HR = 1.33, CI = 1.01–1.75, p = 0.04) all being inferior when compared to C1-positive patients (n = 1246). Subsequent analysis showed that these findings applied for patients with myeloid malignancies but not for patients with lymphoproliferative diseases (OS: myeloid: HR = 1.51, CI = 1.15–1.99, p = 0.003; lymphoblastic: HR = 1.26, CI = 0.91–1.75, p = 0.16; DFS: myeloid: HR = 1.31, CI = 1.01–1.70, p = 0.04; lymphoblastic: HR = 1.21, CI = 0.90–1.61, p = 0.21; RI: myeloid: HR = 1.31, CI = 1.01–1.70, p = 0.04; lymphoblastic: HR = 1.21, CI = 0.90–1.61, p = 0.21). Interestingly, within the C1-negative patient group, transplantation with KIR2DS2 resulted in better OS (9/10 matched: HR = 0.24, CI = 0.08–0.67, p = 0.007) as well as DFS (9/10 matched: HR = 0,26, CI = 0.11–0.60, p = 0.002), and transplantation with KIR2DS1 positive donors was associated with a decreased RI (HR = 0.30, CI = 0.13–0.69, p = 0.005). TRM was increased when the donor was positive for KIR2DS1 (HR = 2.61, CI = 1.26–5.41, p = 0.001). Our findings suggest that inclusion of KIR2DS1/2/5 and KIR3DS1-genotyping in the unrelated donor search algorithm of C1-ligand negative patients with myeloid malignancies may prove to be of clinical relevance. KW - Hematopoietic stem cell transplantation KW - Cancer risk factors KW - Multivariate analysis KW - Stem cell transplantation KW - T-cells KW - Bone marrow transplantation KW - NK-cells KW - Immune receptor signaling KW - Killer cell immunoglobulin-like receptors KW - Acute myeloid leukemia KW - Acute lymphoblastic leukemia KW - Chronic lymphoblastic leukemia KW - Chronic myeloid leukemia Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-180995 VL - 12 IS - 1 ER - TY - JOUR A1 - Beilhack, Andreas A1 - Chopra, Martin A1 - Kraus, Sabrina A1 - Schwinn, Stefanie A1 - Ritz, Miriam A1 - Mattenheimer, Katharina A1 - Mottok, Anja A1 - Rosenwald, Andreas A1 - Einsele, Hermann T1 - Non-Invasive Bioluminescence Imaging to Monitor the Immunological Control of a Plasmablastic Lymphoma-Like B Cell Neoplasia after Hematopoietic Cell Transplantation N2 - To promote cancer research and to develop innovative therapies, refined pre-clinical mouse tumor models that mimic the actual disease in humans are of dire need. A number of neoplasms along the B cell lineage are commonly initiated by a translocation recombining c-myc with the immunoglobulin heavy-chain gene locus. The translocation is modeled in the C.129S1-Ighatm1(Myc)Janz/J mouse which has been previously engineered to express c-myc under the control of the endogenous IgH promoter. This transgenic mouse exhibits B cell hyperplasia and develops diverse B cell tumors. We have isolated tumor cells from the spleen of a C.129S1-Ighatm1(Myc)Janz/J mouse that spontaneously developed a plasmablastic lymphoma-like disease. These cells were cultured, transduced to express eGFP and firefly luciferase, and gave rise to a highly aggressive, transplantable B cell lymphoma cell line, termed IM380. This model bears several advantages over other models as it is genetically induced and mimics the translocation that is detectable in a number of human B cell lymphomas. The growth of the tumor cells, their dissemination, and response to treatment within immunocompetent hosts can be imaged non-invasively in vivo due to their expression of firefly luciferase. IM380 cells are radioresistant in vivo and mice with established tumors can be allogeneically transplanted to analyze graft-versus-tumor effects of transplanted T cells. Allogeneic hematopoietic stem cell transplantation of tumor-bearing mice results in prolonged survival. These traits make the IM380 model very valuable for the study of B cell lymphoma pathophysiology and for the development of innovative cancer therapies. KW - B cells KW - T cells KW - Bioluminescence imaging KW - Bone marrow cells KW - Bone marrow transplantation KW - Cancer treatment KW - Spleen KW - Lymphomas Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-111341 ER -