TY - JOUR A1 - Irmer, Henriette A1 - Tarazona, Sonia A1 - Sasse, Christoph A1 - Olbermann, Patrick A1 - Loeffler, Jürgen A1 - Krappmann, Sven A1 - Conesa, Ana A1 - Braus, Gerhard H. T1 - RNAseq analysis of Aspergillus fumigatus in blood reveals a just wait and see resting stage behavior JF - BMC Genomics N2 - Background: Invasive aspergillosis is started after germination of Aspergillus fumigatus conidia that are inhaled by susceptible individuals. Fungal hyphae can grow in the lung through the epithelial tissue and disseminate hematogenously to invade into other organs. Low fungaemia indicates that fungal elements do not reside in the bloodstream for long. Results: We analyzed whether blood represents a hostile environment to which the physiology of A. fumigatus has to adapt. An in vitro model of A. fumigatus infection was established by incubating mycelium in blood. Our model allowed to discern the changes of the gene expression profile of A. fumigatus at various stages of the infection. The majority of described virulence factors that are connected to pulmonary infections appeared not to be activated during the blood phase. Three active processes were identified that presumably help the fungus to survive the blood environment in an advanced phase of the infection: iron homeostasis, secondary metabolism, and the formation of detoxifying enzymes. Conclusions: We propose that A. fumigatus is hardly able to propagate in blood. After an early stage of sensing the environment, virtually all uptake mechanisms and energy-consuming metabolic pathways are shut-down. The fungus appears to adapt by trans-differentiation into a resting mycelial stage. This might reflect the harsh conditions in blood where A. fumigatus cannot take up sufficient nutrients to establish self-defense mechanisms combined with significant growth. KW - Saccharomyces cerevisiae KW - cerebral aspergillosis KW - gene expression KW - Aspergillus fumigatus KW - iron homeostasis KW - invasive pulmonary aspergillosis KW - Candida albicans KW - cell wall KW - lysine biosynthesis KW - human pathogen KW - murine model KW - virulence KW - mRNA-Seq KW - transcriptome KW - human pathogenic fungi KW - secondary metabolite gene cluster KW - detoxification Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151390 VL - 16 IS - 640 ER - TY - JOUR A1 - Paholcsek, Melinda A1 - Fidler, Gabor A1 - Konya, Jozsef A1 - Rejto, Laszlo A1 - Mehes, Gabor A1 - Bukta, Evelin A1 - Loeffler, Juergen A1 - Biro, Sandor T1 - Combining standard clinical methods with PCR showed improved diagnosis of invasive pulmonary aspergillosis in patients with hematological malignancies and prolonged neutropenia JF - BMC Infectious Diseases N2 - Background: We assessed the diagnostic value of standard clinical methods and combined biomarker testing (galactomannan assay and polymerase chain reaction screening) in a prospective case-control study to detect invasive pulmonary aspergillosis in patients with hematological malignancies and prolonged neutropenia. Methods: In this observational study 162 biomarker analyses were performed on samples from 27 febrile neutropenic episodes. Sera were successively screened for galactomannan antigen and for Aspergillus fumigatus specific nucleic acid targets. Furthermore thoracic computed tomography scanning was performed along with bronchoscopy with lavage when clinically indicated. Patients were retrospectively stratified to define a case-group with "proven" or "probable" invasive pulmonary aspergillosis (25.93 %) and a control-group of patients with no evidence for of invasive pulmonary aspergillosis (74.07 %). In 44.44 % of episodes fever ceased in response to antibiotic treatment (group II). Empirical antifungal therapy was administered for episodes with persistent or relapsing fever (group I). 48.15 % of patients died during the study period. Postmortem histology was pursued in 53.85 % of fatalities. Results: Concordant negative galactomannan and computed tomography supported by a polymerase chain reaction assay were shown to have the highest discriminatory power to exclude invasive pulmonary aspergillosis. Bronchoalveolar lavage was performed in 6 cases of invasive pulmonary aspergillosis and in 15 controls. Although bronchoalveolar lavage proved negative in 93 % of controls it did not detect IPA in 86 % of the cases. Remarkably post mortem histology convincingly supported the presence of Aspergillus hyphae in lung tissue from a single case which had consecutive positive polymerase chain reaction assay results but was misdiagnosed by both computed tomography and consistently negative galactomannan assay results. For the galactomannan enzyme-immunoassay the diagnostic odds ratio was 15.33 and for the polymerase chain reaction assay it was 28.67. According to Cohen's kappa our in-house polymerase chain reaction method showed a fair agreement with the galactomannan immunoassay. Combined analysis of the results from the Aspergillus galactomannan enzyme immunoassay together with those generated by our polymerase chain reaction assay led to no misdiagnoses in the control group. Conclusion: The data from this pilot-study demonstrate that the consideration of standard clinical methods combined with biomarker testing improves the capacity to make early and more accurate diagnostic decisions. KW - whole blood specimens KW - high risk KW - mold disease KW - therapy KW - combination testing KW - real time PCR KW - fungal infections KW - immunocompromised patients KW - prospective feasibility KW - galactomannan KW - epidemiology KW - invasive pulmonary aspergillosis KW - biomarkers KW - acute leukemia KW - neutropenic fever Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151607 VL - 15 IS - 251 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 - JOUR A1 - Zoran, Tamara A1 - Seelbinder, Bastian A1 - White, Philip Lewis A1 - Price, Jessica Sarah A1 - Kraus, Sabrina A1 - Kurzai, Oliver A1 - Linde, Joerg A1 - Häder, Antje A1 - Loeffler, Claudia A1 - Grigoleit, Goetz Ulrich A1 - Einsele, Hermann A1 - Panagiotou, Gianni A1 - Loeffler, Juergen A1 - Schäuble, Sascha T1 - Molecular profiling reveals characteristic and decisive signatures in patients after allogeneic stem cell transplantation suffering from invasive pulmonary aspergillosis JF - Journal of Fungi N2 - Despite available diagnostic tests and recent advances, diagnosis of pulmonary invasive aspergillosis (IPA) remains challenging. We performed a longitudinal case-control pilot study to identify host-specific, novel, and immune-relevant molecular candidates indicating IPA in patients post allogeneic stem cell transplantation (alloSCT). Supported by differential gene expression analysis of six relevant in vitro studies, we conducted RNA sequencing of three alloSCT patients categorized as probable IPA cases and their matched controls without Aspergillus infection (66 samples in total). We additionally performed immunoassay analysis for all patient samples to gain a multi-omics perspective. Profiling analysis suggested LGALS2, MMP1, IL-8, and caspase-3 as potential host molecular candidates indicating IPA in investigated alloSCT patients. MMP1, IL-8, and caspase-3 were evaluated further in alloSCT patients for their potential to differentiate possible IPA cases and patients suffering from COVID-19-associated pulmonary aspergillosis (CAPA) and appropriate control patients. Possible IPA cases showed differences in IL-8 and caspase-3 serum levels compared with matched controls. Furthermore, we observed significant differences in IL-8 and caspase-3 levels among CAPA patients compared with control patients. With our conceptual work, we demonstrate the potential value of considering the human immune response during Aspergillus infection to identify immune-relevant molecular candidates indicating IPA in alloSCT patients. These human host candidates together with already established fungal biomarkers might improve the accuracy of IPA diagnostic tools. KW - host response KW - invasive pulmonary aspergillosis KW - alloSCT patients KW - galectin-2 KW - caspase-3 KW - matrix metallopeptidase-1 Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-262105 SN - 2309-608X VL - 8 IS - 2 ER -