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The known YAP inhibitor verteporfin is capable of repressing IL‐17A production in Th17 cells. However, this effect is mediated independently of YAP and can ameliorate Th17‐mediated experimental autoimmune encephalomyelitis (EAE) upon in vivo administration. The data suggest verteprofin's mode of action for the design of novel therapeutic autoimmune disease intervention.
Aspergillus fumigatus (A. fumigatus) ist der häufigste Erreger der invasiven Aspergillose, welche vornehmlich immunsupprimierte Patientinnen und Patienten betrifft und mit einer hohen Letalität einhergeht. Zur Entwicklung neuer diagnostischer sowie therapeutischer Ansätze ist ein besseres Verständnis der Interaktion von A. fumigatus mit dem humanen Immunsystem zwingend erforderlich. Zur Erforschung dieser Interaktion werden häufig Mausmodelle herangezogen, welche aufgrund der unterschiedlichen Biologie des Wirts jedoch nicht direkt übertragbar sind. Ziel dieser Studie war es, einen funktionellen in vitro Vergleich zwischen humanen und murinen Makrophagen, neutrophilen Granulozyten (PMNs) und dendritischen Zellen (DCs) in ihrer Interaktion mit A. fumigatus Konidien, Keimschläuchen sowie depletiertem Zymosan zu erstellen, um eine bessere Beurteilung und Übertragbarkeit des Mausmodells bei der invasiven Aspergillose zu ermöglichen. Dabei wurden die verschiedenen Zellen des Immunsystems auf standardisierte und reproduzierbare Weise generiert und Stimulationsversuche durchgeführt.
Hierbei zeigten humane und murine Zellen in vitro eine unterschiedliche Antwort auf die Stimulation mit A. fumigatus: Murine Makrophagen und neutrophile Granulozyten zeigten im Vergleich zu den humanen Zellen eine stärkere primäre Immunantwort mit einer vermehrten Ausschüttung reaktiver Sauerstoffspezies (ROS). Humane DCs hingegen, welche als Bindeglied zwischen angeborenem und adaptivem Immunsystem fungieren, zeigten nach Stimulation mit A. fumigatus eine vermehrte Oberflächenexpression von Maturationsmarkern sowie eine höhere Phagozytoserate als die murinen DCs. Weiterhin konnte eine inverse Dectin-1-Expression auf humanen und murinen DCs nach Stimulation mit A. fumigatus nachgewiesen werden. Es konnte gezeigt werden, dass es für alle untersuchten Zelltypen Unterschiede zwischen humanen und murinen Zellen in der basalen und der Zytokinausschüttung nach Stimulation mit A. fumigatus gab.
In Zusammenschau der Ergebnisse dieser Arbeit zeigt das murine Immunsystem eine stärkere angeborene Immunantwort mit vermehrter ROS-Ausschüttung, jedoch auch eine anti-inflammatorische Zytokinantwort, um möglicherweise eine überschießende Inflammation zu verhindern. Dies könnte durch die stärkere Exposition der Maus gegenüber A. fumigatus durch den bodennahen Lebensraum sowie ihrer kurzen Lebensdauer bedingt sein. Im humanen System kommt hingegen der Aktivierung des adaptiven Immunsystems über die DCs eine übergeordnete Rolle zu. So zeigen beide Spezies distinkte Unterschiede in ihrer in vitro Immunantwort gegenüber A. fumigatus, welche bei der Übertragung von experimentellen Daten von der Maus auf den Menschen beachtet werden sollten.
Die AML stellt mit einem Anteil von 80 % an den akuten Leukämien bei Erwachsenen eine bedeutende Erkrankung für die Gesellschaft dar. Aufgrund fehlender durchbrechender Erfolge in der Therapieentwicklung liegt die durchschnittliche Fünfjahresüberlebensrate dennoch nur bei etwa 25 %. Der Blick auf die Kraft des Graft-versus-Leukämie-Effekts nach allogener Stammzelltransplantation, eine Langzeitremission der AML erzielen zu können, weist jedoch auf die Immunogenität und Eignung der Erkrankung für neue immuntherapeutische Ansätze hin.
Anhand der Kartierung der in-vivo präsentierten MHC-Klasse-I-Peptidome auf
AML-Blasten sollten in dieser Arbeit potenziell geeignete Therapietargets identifiziert werden, um eine breitere Anwendung immuntherapeutischer Strategien bei AML-Patienten zu ermöglichen. Auf primären Patientenmaterialien, Zelllinien und benignen Zellen wurden hierzu über eine Immunoaffinitätschromatographie mit nachfolgenden Purifizierungsschritten
die MHC-präsentierten Peptide massenspekrometrisch-basiert
identifiziert. Zusätzlich erfolgte eine Quantifizierung der Oberflächen- und intrazellulären MHC-Klasse-I-Moleküle der verwendeten Proben durch einen indirekten Immunfluoreszenz-Assay.
Unter der Gesamtheit von 17.750 identifizierten nicht-redundanten MHC-Klasse-
I-präsentierten Peptiden konnte eine Vielzahl von 5.626 Peptiden mit Präsentationsfrequenzen bis zu 72 % als AML-exklusiv beschrieben werden. Hierunter wurden 240 kryptische Peptide vermeintlich nicht-codierenden Ursprungs identifiziert. Zudem wurden mehrere potenziell CMV-kreuzreaktive AML-Peptide erfasst, die zu der reduzierten Rezidivrate bei CMV-Infektion nach allogener Stammzelltransplantation führen könnten. Bei der MHC-Quantifizierung wiesen die AML-Blasten keine verminderte MHC-Expression auf und stellten sich somit als geeignete Target-Zellen für eine T-Zell-Immuntherapie dar.
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.
Chemotherapy, the standard treatment for pancreatic ductal adenocarcinoma (PDAC), has only a modest effect on the outcome of patients with late-stage disease. Investigations of the genetic features of PDAC have demonstrated a frequent occurrence of mutations in genes involved in homologous recombination (HR), especially in the breast cancer susceptibility gene 2 (BRCA2). Olaparib, a poly(ADP-ribose) polymerase (PARP) inhibitor, is approved as a maintenance treatment for patients with advanced PDAC with germline BRCA1/2 mutations following a platinum-containing first-line regimen. Limitations to the use of PARP inhibitors are represented by the relatively small proportion of patients with mutations in BRCA1/2 genes and the modest capability of these substances of inducing objective response. We have previously shown that pancreatic cancer with BRCA2 mutations exhibits a remarkably enhanced sensitivity towards tumor-necrosis-factor-related apoptosis-inducing ligand (TRAIL) receptor-stimulating agents. We thus aimed to investigate the effect of combined treatment with PARP inhibitors and TRAIL receptor-stimulating agents in pancreatic cancer and its dependency on the BRCA2 gene status. The respective effects of TRAIL-targeting agents and the PARP inhibitor olaparib or of their combination were assessed in pancreatic cancer cell lines and patient-derived organoids. In addition, BRCA2-knockout and -complementation models were investigated. The effects of these agents on apoptosis, DNA damage, cell cycle, and receptor surface expression were assessed by immunofluorescence, Western blot, and flow cytometry. PARP inhibition and TRAIL synergized to cause cell death in pancreatic cancer cell lines and PDAC organoids. This effect proved independent of BRCA2 gene status in three independent models. Olaparib and TRAIL in combination caused a detectable increase in DNA damage and a concentration-dependent cell cycle arrest in the G2/M and S cell cycle phases. Olaparib also significantly increased the proportion of membrane-bound death receptor 5. Our results provide a preclinical rationale for the combination of PARP inhibitors and TRAIL receptor agonists for the treatment of pancreatic cancer and suggest that the use of PARP inhibitors could be extended to patients without BRCA2 mutations if used in combination with TRAIL agonists.
This non-interventional, prospective phase IV trial evaluated trabectedin in patients with soft tissue sarcoma (STS) in real-life clinical practice across Germany. The primary endpoints were progression-free survival (PFS) rates at 3 and 6 months, as defined by investigators. Overall, 128 patients from 19 German sites were evaluated for efficacy and 130 for safety. Median age was 58.5 years (range: 23–84) and leiomyosarcoma was the most frequent histotype (n = 45; 35.2%). Trabectedin was mostly used as second/third-line treatment (n = 91; 71.1%). Median PFS was 5.2 months (95% CI: 3.3–6.7), with 60.7% and 44.5% of patients free from progression at 3 and 6 months, respectively. Median overall survival was 15.2 months (95% CI: 9.6–21.4). One patient achieved a complete and 14 patients a partial response, conferring an objective response rate of 11.7%. Decreases in white blood cells (27.0% of patients), platelets (16.2%) and neutrophils (13.1%) and increased alanine aminotransferase (10.8%) were the most common trabectedin-related grade 3/4 adverse drug reactions. Two deaths due to pneumonia and sepsis were considered trabectedin-related. Trabectedin confers clinically meaningful activity in patients with multiple STS histotypes, comparable to that previously observed in clinical trials and other non-interventional studies, and with a manageable safety profile.
Tumor necrosis factor (TNF) receptor associated factor-2 (TRAF2) has been originally identified as a protein interacting with TNF receptor 2 (TNFR2) but also binds to several other receptors of the TNF receptor superfamily (TNFRSF). TRAF2, often in concert with other members of the TRAF protein family, is involved in the activation of the classical NFκB pathway and the stimulation of various mitogen-activated protein (MAP) kinase cascades by TNFRSF receptors (TNFRs), but is also required to inhibit the alternative NFκB pathway. TRAF2 has also been implicated in endoplasmic reticulum (ER) stress signaling, the regulation of autophagy, and the control of cell death programs. TRAF2 fulfills its functions by acting as a scaffold, bringing together the E3 ligase cellular inhibitor of apoptosis-1 (cIAP1) and cIAP2 with their substrates and various regulatory proteins, e.g., deubiquitinases. Furthermore, TRAF2 can act as an E3 ligase by help of its N-terminal really interesting new gene (RING) domain. The finding that TRAF2 (but also several other members of the TRAF family) interacts with the latent membrane protein 1 (LMP1) oncogene of the Epstein–Barr virus (EBV) indicated early on that TRAF2 could play a role in the oncogenesis of B-cell malignancies and EBV-associated non-keratinizing nasopharyngeal carcinoma (NPC). TRAF2 can also act as an oncogene in solid tumors, e.g., in colon cancer by promoting Wnt/β-catenin signaling. Moreover, tumor cell-expressed TRAF2 has been identified as a major factor-limiting cancer cell killing by cytotoxic T-cells after immune checkpoint blockade. However, TRAF2 can also be context-dependent as a tumor suppressor, presumably by virtue of its inhibitory effect on the alternative NFκB pathway. For example, inactivating mutations of TRAF2 have been associated with tumor development, e.g., in multiple myeloma and mantle cell lymphoma. In this review, we summarize the various TRAF2-related signaling pathways and their relevance for the oncogenic and tumor suppressive activities of TRAF2. Particularly, we discuss currently emerging concepts to target TRAF2 for therapeutic purposes.
Growing evidence points to multiple myeloma (MM) and its stromal microenvironment using several mechanisms to subvert effective immune and anti-tumor responses. Recent advances have uncovered the tumor-stromal cell influence in regulating the immune-microenvironment and have envisioned targeting these suppressive pathways to improve therapeutic outcomes. Nevertheless, some subgroups of patients include those with particularly unfavorable prognoses. Biological stratification can be used to categorize patient-, disease- or therapy-related factors, or alternatively, these biological determinants can be included in a dynamic model that customizes a given treatment to a specific patient. Genetic heterogeneity and current knowledge enforce a systematic and comprehensive bench-to-bedside approach. Given the increasing role of cancer stem cells (CSCs) in better characterizing the pathogenesis of solid and hematological malignancies, disease relapse, and drug resistance, identifying and describing CSCs is of paramount importance in the management of MM. Even though the function of CSCs is well-known in other cancer types, their role in MM remains elusive. With this review, we aim to provide an update on MM homing and resilience in the bone marrow micro milieu. These data are particularly interesting for clinicians facing unmet medical needs while designing novel treatment approaches for MM.
Background
Multiple myeloma (MM) is the third most common hematologic malignancy with increasing importance due to improving treatment strategies and long-term outcomes in an aging population. This study aims to analyse influencing factors on health-related quality of life (HRQoL), such as treatment strategies, participation in a clinical trial and patient characteristics like anxiety, depression, gender, and age. A better understanding of the individual factors in context with HRQoL could provide a helpful instrument for clinical decisions.
Methods
In this prospective observational study, the HRQoL of MM patients with different therapies (first-line and relapse) was quantified by standardized questionnaires (EORTC QLQ-C30 and -MY20) in the context of sociodemographic data, individual anxiety and depressiveness (PHQ-4), and a selected number of clinical parameters and symptoms at defined time-points before, during, and after therapy.
Results
In total, 70 patients were included in the study. The median age of the study cohort was 62 years. 44% were female and 56% were male patients. More than half of the patients were fully active with an ECOG 0. Global health status was significantly higher in patients with first-line treatment and even increased after start of therapy, while the pain level decreased. In contrast, patients with relapsed MM reported a decreasing global health status and increasing pain. Additionally, there was a higher global health status in less anxious/depressive patients. HRQoL decreased significantly after start of chemotherapy in the parameters body image, side effects of treatment, and cognitive functioning. Tandem stem-cell transplantation was not found to be a risk factor for higher impairment of HRQoL. Participation in a clinical study led to an improvement of most aspects of HRQoL. Among others, increased anxiety and depression, female gender, older age, impaired performance status, and recurrent disease can be early indicators for a reduced HRQoL.
Conclusion
This study showed the importance of regular longitudinal assessments of patient reported outcomes (PROs) in routine clinical care. For the first time, to our knowledge, we were able to demonstrate a potential impact between participation in clinical trials and HRQoL. However, due to frequently restrictive inclusion criteria for clinical trials, these MM patients might not be directly comparable with patients treated within standard therapy concepts. Further studies are needed to clarify the relevance of this preliminary data in order to develop an individualized, patient-centred, therapy concept.