TY - THES A1 - Lother, Jasmin T1 - Interaktion dendritischer Zell-Subtypen mit dem human pathogenen Schimmelpilz \(Aspergillus fumigatus\) T1 - Interaction of dendritic cell subtypes with the human pathogenic mould fungus \(Aspergillus fumigatus\) N2 - Die invasive Aspergillose (IA) z¨ ahlt zu den seltenen, bei immunsupprimierten Patienten jedoch mit einer hohen Letalit¨ at verbundenen Infektionskrankheiten. Sie wird, wie alle Aspergillosen, durch den humanpathogenen Schimmelpilz Aspergillus fumigatus ausgel¨ ost. Bis heute ist die oft nicht effektive Therapie einer IA mit hohen Nebenwirkungen und Kosten verbunden. Die Entwicklung von Pathogen-spezifischen Immuntherapien soll durch die Forschung im Bereich der immunologischen Infektionsbiologie vorangetrieben werden. Fur neuen Erkenntnisse wird die Interaktion von humanen Immunzellen mit ¨ A. fumigatus analysiert. In der vorliegenden Studie wurde mit dendritischen Zellen (DCs) gearbeitet, da diese Pilzmorphologien von A. fumigatus phagozytieren k¨ onnen und uber Antigenpr ¨ ¨ asentation das adaptive Immunsystem aktivieren. Es wurden aus humanen Monozyten differenzierte DCs (moDCs) verwendet, mit welchen viele Forschergruppen aufgrund ihrer verfugbar ¨ großen Anzahl arbeiten. Allerdings dauert die Generierung von moDCs funf Tage. Aus ¨ dem peripheren Blut entstammende CD1c-positive myeloide DCs (mDCs) oder CD303- positive plasmazytoide DCs (pDCs) k¨ onnen dagegen direkt nach der Isolation verwendet werden. Die beiden DC-Populationen werden aus verschiedenen Vorl¨ auferzellen des h¨ amatopoetischen Systems im Knochenmark gebildet. Ihr Ph¨ anotyp und ihre Immunfunktionen unterscheiden sich untereinander und auch von denen der moDCs. In Interaktionsstudien konnte analysiert werden, dass die drei verwendeten DC-Subtypen (moDCs, mDCs, pDCs) unterschiedlich auf A. fumigatus reagieren. moDCs und mDCs reiften in direktem Kontakt zu Aspergillus, sie sekretierten ein relativ ¨ ahnliches Zytokinprofil und exprimierten die bekannten Aspergillus-Rezeptoren Dectin-1, TLR2 und TLR4. Im Kontrast dazu verblieben pDCs trotz Aspergillus-Kontakt unreif und sekretierten nahezu keine Zytokine. Da moDCs und mDCs eine Immunreaktion auf den Pilz zeigten, wurden sie mit verschiedenen Aspergillus-Antigenen beladen und n¨ aher untersucht. Bevor verschiedene Aspergillus-Antigene zur Beladung der DCs eingesetzt werden konnten, wurden diese analysiert und aufgereinigt. Hierfur wurde ein routinierter Arbeitsprozess ¨ etabliert. Zwei der vier verfugbaren Proteinantigene waren mit Endotoxin kontaminiert. ¨ Da schon geringe Mengen an Endotoxinen auf DCs einen stimulatorischen Effekt ausubten, ¨ wurden die Proteine mittels Affinit¨ atschromatografie von den verunreinigenden Endotoxinen befreit. In den Stimulationsexperimenten wirkten die beiden Proteinantigene CcpA und SHMT immunogen auf moDCs und mDCs. CcpA induzierte eine st¨ arkere Maturierung und Zytokinfreisetzung als SHMT. Auff¨ allig war, dass mDCs im Vergleich zu moDCs die Expression von MHC Klasse II st¨ arker erh¨ ohten und mehr IL18 freisetzten. Die mit CcpA oder SHMT beladenen moDCs und mDCs aktivierten autologe T-Zellen zur IFNg Sekretion und zur Proliferation. Zudem wurden durch die beiden Proteine Aspergillus-spezifische, CD154- positive T-Zellen induziert. Diese Aspergillus-spezifische Immunogenit¨ at von CcpA und SHMT macht die beiden Proteine zu interessanten Kandidaten fur einen Vakzinierungs- ¨ Cocktail einer DC-Immuntherapie. Aspergillus Lysat induzierte als weiteres Antigen eine T-Zell Immunantwort mit CD154-positiven T-Zellen. Zudem war die Proliferation und IFNg Sekretion von T-Zellen induziert, obwohl moDCs und mDCs nicht reiften und nur wenige Zytokine sekretierten. Die beiden Aspergillus-Proteine CpcB und fg-gap induzierten die Reifung und Zytokinsekretion von moDCs und mDCs nicht. Demzufolge sind CpcB und fg-gap fur eine DC-Immuntherapie nicht empfehlenswert. ¨ Ein Vakzinierungs-Cocktail enth¨ alt in der Regel Adjuvantien, welche die Immunreaktion verst¨ arken. Adjuvante Effekte auf moDCs konnten die getesteten Aspergillus-RezeptorLiganden Zymosan, Pam3CSK4, LPS ultrapur und R848 ausl¨ osen. Hyalurons¨ aure konnte keine Verbesserung der Reifung oder Vitalit¨ at von moDCs und mDCs bewirken. Die Antigen-bedingte Reifung der DCs fur n ¨ ¨ otige Restimulationen w¨ ahrend der Therapie konnte mittels einer tiefgekuhlten Lagerung in CryoStor Einfriermedium stabil beibehalten ¨ werden. Die beiden immunogenen Aspergillus-Proteine, die adjuvanten Rezeptor-Agonisten und die stabile Lagerung in CryoStor k¨ onnen als elementare Grundsteine fur einen Vakzinierungs- ¨ Cocktail einer anti-fungalen DC-Immuntherapie mit moDCs oder mDCs angesehen werden. N2 - Invasive aspergillosis (IA) is one of the rare infectious diseases associated with a high mortality rate that occurs in immunocompromised patients. Like all aspergillosis, it is caused by the human pathogenic fungus Aspergillus fumigatus. No effective therapy of IA is known to date and the current therapy is associated with high side effects and costs. More in-depth research is needed in the field of immunological infection biology, such as the interactions of human immune cells with A. fumigatus, for the development of pathogen-specific immunotherapies. In the present study dendritic cells (DCs) are investigated due to their ability to phago- cytose fungal morphologies of A. fumigatus and activate the adaptive immune system via antigen presentation. Monocytes which differentiate into DCs (moDCs) are used by many research groups due to their large numbers; however, their total generation time lasts five days. CD1c-positive myeloid DCs (mDCs) and CD303-positive plasmacytoid DCs (pDCs) found in the peripheral blood can be used directly after isolation. The two DC populations are formed from different precursor cells of the hematopoietic system in the bone marrow and therefore their phenotype and immune functions differ from each other and also from those of moDCs. ... KW - Dendritische Zellen KW - Aspergillus KW - Untertyp Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-140940 ER - TY - JOUR A1 - Kessel, Johanna A1 - Hogardt, Michael A1 - Aspacher, Lukas A1 - Wichelhaus, Thomas A. A1 - Gerkrath, Jasmin A1 - Rosenow, Emely A1 - Springer, Jan A1 - Rickerts, Volker T1 - Exclusion of Mucorales co-infection in a patient with Aspergillus flavus sinusitis by fluorescence in situ hybridization (FISH) JF - Journal of Fungi N2 - Invasive fungal infections are associated with increased mortality in hematological patients. Despite considerable advances in antifungal therapy, the evaluation of suspected treatment failure is a common clinical challenge requiring extensive diagnostic testing to rule out potential causes, such as mixed infections. We present a 64-year-old patient with secondary AML, diabetes mellitus, febrile neutropenia, and sinusitis. While cultures from nasal tissue grew Aspergillus flavus, a microscopic examination of the tissue was suggestive of concomitant mucormycosis. However, fluorescence in situ hybridization (FISH) using specific probes targeting Aspergillus and Mucorales species ruled out mixed infection. This was confirmed by specific qPCR assays amplifying the DNA of Aspergillus, but not of Mucorales. These results provided a rational basis for step-down targeted therapy, i.e., the patient received posaconazole after seven days of calculated dual therapy with liposomal amphotericin B and posaconazole. Despite clinical response to the antifungal therapy, he died due to the progression of the underlying disease within two weeks after diagnosis of fungal infection. Molecular diagnostics applied to tissue blocks may reveal useful information on the etiology of invasive fungal infections, including challenging situations, such as with mixed infections. A thorough understanding of fungal etiology facilitates targeted therapy that may improve therapeutic success while limiting side effects. KW - invasive fungal infection KW - fluorescence in situ hybridization (FISH) KW - fungal sinusitis KW - mixed infection KW - Aspergillus Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-267208 SN - 2309-608X VL - 8 IS - 3 ER - TY - THES A1 - Page, Lukas T1 - Entwicklung und präklinische Evaluation immunologischer und nuklearmedizinischer diagnostischer Tests für Schimmelpilz-assoziierte Hypersensitivität und invasive Mykosen T1 - Development and preclinical evaluation of immunological and nuclear medical diagnostic assays for mould-associated hypersensitivity and invasive mycoses N2 - Schimmelpilze können in Abhängigkeit des Immunstatus und der Vorerkrankungen betroffener Patienten unterschiedliche Krankheitsbilder wie Hypersensitivitäts-erkrankungen oder lebensbedrohliche invasive Infektionen hervorrufen. Da die Diagnosestellung dieser Erkrankungen mitunter komplex und insensitiv ist, sollten im Rahmen dieser Arbeit unterschiedliche Ansätze neuer diagnostischer Assays untersucht werden. In den letzten Jahren wurden Assays entwickelt, die auf Basis durchflusszytometrisch quantifizierter Pilz-spezifischer T-Zellen aus peripherem Blut einen supportiven Biomarker zur Diagnostik invasiver Mykosen liefern könnten. Da die hierfür isolierten T-Zellen anfällig gegenüber präanalytischer Lagerzeiten und immunsuppressiver Medikation sind, wurden hier Protokolloptimierungen vorgenommen, um anhand eines Vollblut-basierten Assays mit zusätzlicher CD49d-Kostimulation diesen Limitationen entgegen zu wirken. In einer Studie an gesunden Probanden konnte dabei gezeigt werden, dass die Kombination der Durchflusszytometrie mit ausgewählten Zytokin-Messungen (IL-5, IL-10 und IL-17) zu einer verbesserten Erkennung vermehrt Schimmelpilz-exponierter Personen beitragen könnte. Neben Infektionen könnten dabei im umwelt- und arbeitsmedizinischen Kontext Polarisationen der T-Zell-Populationen detektiert werden, welche mit Sensibilisierungen und Hypersensitivität assoziiert werden. Zusätzlich wurde ein in vitro Transwell® Alveolarmodell zur Simulation pulmonaler Pilzinfektionen für Erreger der Ordnung Mucorales adaptiert, durch Reproduktion wichtiger Merkmale der Pathogenese von Mucormykosen validiert, und für Untersuchungen der Immunpathologie und Erreger-Invasion verwendet. Das Modell wurde anschließend zur in vitro Evaluation von radioaktiv markiertem Amphotericin B mit 99mTc oder 68Ga als nuklearmedizinischen Tracer verwendet. Die untersuchten Schimmelpilze zeigten dabei eine zeit- und dosis-abhängige Aufnahme der Tracer, während bakteriell infizierte Proben nicht detektiert wurden. Die erhobenen Daten dokumentieren ein vielversprechendes Potenzial von Amphotericin B-basierten Tracer, das in zukünftigen in vivo Studien weiter evaluiert werden sollte. N2 - Depending on the immune constitution and predisposing illnesses, moulds can cause a variety of diseases ranging from hypersensitivity syndromes to life-threatening invasive infections. As the diagnosis of mould-associated diseases remains challenging, this work aimed to refine immunological assays and to develop molecular imaging protocols for pulmonary mould infections. Recently, a flow cytometric assay for mould specific T cell quantification has been proposed as a novel supportive biomarker to diagnose invasive mycoses. As these assays are susceptible to pre-analytic delays and immunosuppressive drugs, a whole blood-based protocol with enhanced CD28 plus CD49d co-stimulation was developed and was shown to be less prone to these limitations. In addition, a study on healthy volunteers demonstrated the applicability of flow cytometric antigen-reactive T cell quantification as a surrogate of environmental mould exposure, especially when combined with T-cellular cytokine measurements (specifically, IL-5, IL-10, and IL-17). Therefore, these assays could potentially be used to detect polarizations of T-cell populations associated with sensitization and hypersensitivity, e. g. in allergology and occupational medicine. Moreover, an in vitro Transwell® alveolar model of invasive pulmonary mould infections has been adapted to study mucormycoses, validated by recapitulation of known pathogenicity factors, and used to characterize the immunopathology and epithelial invasion of Mucorales. The Transwell® model was subsequently used to evaluate radioactively labelled Amphotericin B with either 99mTc or 68Ga as a potential nuclear medical tracer. Time- and dose-dependent enrichment of the tracers was found in both Aspergillus and Mucorales, whereas samples infected with bacteria showed negligible uptake. These in vitro data document a promising potential of radiolabeled amphotericin B for molecular imaging of invasive mycoses and encourage further evaluation in animal models. KW - Schimmelpilze KW - Diagnostik KW - Biomarker KW - Tracer KW - Zellkultur KW - Antimykotika KW - Mucorales KW - Aspergillus KW - T-Zellen KW - Immunsuppressiva KW - Antifungal KW - Mucormycosis KW - Aspergillosis KW - T cells KW - Immunosuppressant Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-252459 ER - TY - JOUR A1 - Yu, Yidong A1 - Wolf, Ann-Katrin A1 - Thusek, Sina A1 - Heinekamp, Thorsten A1 - Bromley, Michael A1 - Krappmann, Sven A1 - Terpitz, Ulrich A1 - Voigt, Kerstin A1 - Brakhage, Axel A. A1 - Beilhack, Andreas T1 - Direct Visualization of Fungal Burden in Filamentous Fungus-Infected Silkworms JF - Journal of Fungi N2 - Invasive fungal infections (IFIs) are difficult to diagnose and to treat and, despite several available antifungal drugs, cause high mortality rates. In the past decades, the incidence of IFIs has continuously increased. More recently, SARS-CoV-2-associated lethal IFIs have been reported worldwide in critically ill patients. Combating IFIs requires a more profound understanding of fungal pathogenicity to facilitate the development of novel antifungal strategies. Animal models are indispensable for studying fungal infections and to develop new antifungals. However, using mammalian animal models faces various hurdles including ethical issues and high costs, which makes large-scale infection experiments extremely challenging. To overcome these limitations, we optimized an invertebrate model and introduced a simple calcofluor white (CW) staining protocol to macroscopically and microscopically monitor disease progression in silkworms (Bombyx mori) infected with the human pathogenic filamentous fungi Aspergillus fumigatus and Lichtheimia corymbifera. This advanced silkworm A. fumigatus infection model could validate knockout mutants with either attenuated, strongly attenuated or unchanged virulence. Finally, CW staining allowed us to efficiently visualize antifungal treatment outcomes in infected silkworms. Conclusively, we here present a powerful animal model combined with a straightforward staining protocol to expedite large-scale in vivo research of fungal pathogenicity and to investigate novel antifungal candidates. KW - fungal infection model KW - calcofluor white staining KW - Aspergillus KW - Lichtheimia KW - silkworm Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228855 SN - 2309-608X VL - 7 IS - 2 ER - TY - JOUR A1 - Springer, Jan A1 - Held, Jürgen A1 - Mengoli, Carlo A1 - Schlegel, Paul Gerhardt A1 - Gamon, Florian A1 - Träger, Johannes A1 - Kurzai, Oliver A1 - Einsele, Hermann A1 - Loeffler, Juergen A1 - Eyrich, Matthias T1 - Diagnostic performance of (1→3)-β-D-glucan alone and in combination with aspergillus PCR and galactomannan in serum of pediatric patients after allogeneic hematopoietic stem cell transplantation JF - Journal of Fungi N2 - Data on biomarker-assisted diagnosis of invasive aspergillosis (IA) in pediatric patients is scarce. Therefore, we conducted a cohort study over two years including 404 serum specimens of 26 pediatric patients after allogeneic hematopoietic stem cell transplantation (alloSCT). Sera were tested prospectively twice weekly for Aspergillus-specific DNA, galactomannan (GM), and retrospectively for (1→3)-β-D-glucan (BDG). Three probable IA and two possible invasive fungal disease (IFD) cases were identified using the European Organization for Research and Treatment of Cancer and the Mycoses Study Group (EORTC/MSGERC) 2019 consensus definitions. Sensitivity and specificity for diagnosis of probable IA and possible IFD was 80% (95% confidential interval (CI): 28–99%) and 55% (95% CI: 32–77%) for BDG, 40% (95% CI: 5–85%) and 100% (95% CI: 83–100%) for GM, and 60% (95% CI: 15–95%) and 95% (95% CI: 75–100%) for Aspergillus-specific real-time PCR. However, sensitivities have to be interpreted with great caution due to the limited number of IA cases. Interestingly, the low specificity of BDG was largely caused by false-positive BDG results that clustered around the date of alloSCT. The following strategies were able to increase BDG specificity: two consecutive positive BDG tests for diagnosis (specificity 80% (95% CI: 56–94%)); using an optimized cutoff value of 306 pg/mL (specificity 90% (95% CI: 68–99%)) and testing BDG only after the acute posttransplant phase. In summary, BDG can help to diagnose IA in pediatric alloSCT recipients. However, due to the poor specificity either an increased cutoff value should be utilized or BDG results should be confirmed by an alternative Aspergillus assay. KW - beta-D-glucan KW - galactomannan KW - real-time PCR KW - Aspergillus KW - pediatric Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-234179 SN - 2309-608X VL - 7 IS - 3 ER - TY - JOUR A1 - Lauruschkat, Chris D. A1 - Page, Lukas A1 - White, P. Lewis A1 - Etter, Sonja A1 - Davies, Helen E. A1 - Duckers, Jamie A1 - Ebel, Frank A1 - Schnack, Elisabeth A1 - Backx, Matthijs A1 - Dragan, Mariola A1 - Schlegel, Nicolas A1 - Kniemeyer, Olaf A1 - Brakhage, Axel A. A1 - Einsele, Hermann A1 - Loeffler, Juergen A1 - Wurster, Sebastian T1 - Development of a simple and robust whole blood assay with dual co-stimulation to quantify the release of T-cellular signature cytokines in response to Aspergillus fumigatus antigens JF - Journal of Fungi N2 - Deeper understanding of mold-induced cytokine signatures could promote advances in the diagnosis and treatment of invasive mycoses and mold-associated hypersensitivity syndromes. Currently, most T-cellular immunoassays in medical mycology require the isolation of mononuclear cells and have limited robustness and practicability, hampering their broader applicability in clinical practice. Therefore, we developed a simple, cost-efficient whole blood (WB) assay with dual α-CD28 and α-CD49d co-stimulation to quantify cytokine secretion in response to Aspergillus fumigatus antigens. Dual co-stimulation strongly enhanced A. fumigatus-induced release of T-cellular signature cytokines detectable by enzyme-linked immunosorbent assay (ELISA) or a multiplex cytokine assay. Furthermore, T-cell-dependent activation and cytokine response of innate immune cells was captured by the assay. The protocol consistently showed little technical variation and high robustness to pre-analytic delays of up to 8 h. Stimulation with an A. fumigatus lysate elicited at least 7-fold greater median concentrations of key T-helper cell signature cytokines, including IL-17 and the type 2 T-helper cell cytokines IL-4 and IL-5 in WB samples from patients with Aspergillus-associated lung pathologies versus patients with non-mold-related lung diseases, suggesting high discriminatory power of the assay. These results position WB-ELISA with dual co-stimulation as a simple, accurate, and robust immunoassay for translational applications, encouraging further evaluation as a platform to monitor host immunity to opportunistic pathogens. KW - immunoassay KW - biomarker KW - Aspergillus KW - cytokines KW - inflammation KW - adaptive immunity Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241025 SN - 2309-608X VL - 7 IS - 6 ER - TY - JOUR A1 - Tappe, Beeke A1 - Lauruschkat, Chris D. A1 - Strobel, Lea A1 - Pantaleón García, Jezreel A1 - Kurzai, Oliver A1 - Rebhan, Silke A1 - Kraus, Sabrina A1 - Pfeuffer-Jovic, Elena A1 - Bussemer, Lydia A1 - Possler, Lotte A1 - Held, Matthias A1 - Hünniger, Kerstin A1 - Kniemeyer, Olaf A1 - Schäuble, Sascha A1 - Brakhage, Axel A. A1 - Panagiotou, Gianni A1 - White, P. Lewis A1 - Einsele, Hermann A1 - Löffler, Jürgen A1 - Wurster, Sebastian T1 - COVID-19 patients share common, corticosteroid-independent features of impaired host immunity to pathogenic molds JF - Frontiers in Immunology N2 - Patients suffering from coronavirus disease-2019 (COVID-19) are susceptible to deadly secondary fungal infections such as COVID-19-associated pulmonary aspergillosis and COVID-19-associated mucormycosis. Despite this clinical observation, direct experimental evidence for severe acute respiratory syndrome coronavirus type 2 (SARS-CoV-2)-driven alterations of antifungal immunity is scarce. Using an ex-vivo whole blood stimulation assay, we challenged blood from twelve COVID-19 patients with Aspergillus fumigatus and Rhizopus arrhizus antigens and studied the expression of activation, maturation, and exhaustion markers, as well as cytokine secretion. Compared to healthy controls, T-helper cells from COVID-19 patients displayed increased expression levels of the exhaustion marker PD-1 and weakened A. fumigatus- and R. arrhizus-induced activation. While baseline secretion of proinflammatory cytokines was massively elevated, whole blood from COVID-19 patients elicited diminished release of T-cellular (e.g., IFN-γ, IL-2) and innate immune cell-derived (e.g., CXCL9, CXCL10) cytokines in response to A. fumigatus and R. arrhizus antigens. Additionally, samples from COVID-19 patients showed deficient granulocyte activation by mold antigens and reduced fungal killing capacity of neutrophils. These features of weakened anti-mold immune responses were largely decoupled from COVID-19 severity, the time elapsed since diagnosis of COVID-19, and recent corticosteroid uptake, suggesting that impaired anti-mold defense is a common denominator of the underlying SARS-CoV-2 infection. Taken together, these results expand our understanding of the immune predisposition to post-viral mold infections and could inform future studies of immunotherapeutic strategies to prevent and treat fungal superinfections in COVID-19 patients. KW - COVID-19 KW - immune impairment KW - T cells KW - granulocytes KW - Aspergillus KW - Rhizopus Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-283558 SN - 1664-3224 VL - 13 ER - TY - JOUR A1 - Lauruschkat, Chris D. A1 - Etter, Sonja A1 - Schnack, Elisabeth A1 - Ebel, Frank A1 - Schäuble, Sascha A1 - Page, Lukas A1 - Rümens, Dana A1 - Dragan, Mariola A1 - Schlegel, Nicolas A1 - Panagiotou, Gianni A1 - Kniemeyer, Olaf A1 - Brakhage, Axel A. A1 - Einsele, Hermann A1 - Wurster, Sebastian A1 - Loeffler, Juergen T1 - Chronic occupational mold exposure drives expansion of Aspergillus-reactive type 1 and type 2 T-helper cell responses JF - Journal of Fungi N2 - Occupational mold exposure can lead to Aspergillus-associated allergic diseases including asthma and hypersensitivity pneumonitis. Elevated IL-17 levels or disbalanced T-helper (Th) cell expansion were previously linked to Aspergillus-associated allergic diseases, whereas alterations to the Th cell repertoire in healthy occupationally exposed subjects are scarcely studied. Therefore, we employed functional immunoassays to compare Th cell responses to A. fumigatus antigens in organic farmers, a cohort frequently exposed to environmental molds, and non-occupationally exposed controls. Organic farmers harbored significantly higher A. fumigatus-specific Th-cell frequencies than controls, with comparable expansion of Th1- and Th2-cell frequencies but only slightly elevated Th17-cell frequencies. Accordingly, Aspergillus antigen-induced Th1 and Th2 cytokine levels were strongly elevated, whereas induction of IL-17A was minimal. Additionally, increased levels of some innate immune cell-derived cytokines were found in samples from organic farmers. Antigen-induced cytokine release combined with Aspergillus-specific Th-cell frequencies resulted in high classification accuracy between organic farmers and controls. Aspf22, CatB, and CipC elicited the strongest differences in Th1 and Th2 responses between the two cohorts, suggesting these antigens as potential candidates for future bio-effect monitoring approaches. Overall, we found that occupationally exposed agricultural workers display a largely balanced co-expansion of Th1 and Th2 immunity with only minor changes in Th17 responses. KW - mold exposure KW - immunoassay KW - biomarker KW - Aspergillus KW - cytokines KW - inflammation KW - adaptive immunity KW - hypersensitivity Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-245202 SN - 2309-608X VL - 7 IS - 9 ER - TY - JOUR A1 - Page, Lukas A1 - Wallstabe, Julia A1 - Lother, Jasmin A1 - Bauser, Maximilian A1 - Kniemeyer, Olaf A1 - Strobel, Lea A1 - Voltersen, Vera A1 - Teutschbein, Janka A1 - Hortschansky, Peter A1 - Morton, Charles Oliver A1 - Brakhage, Axel A. A1 - Topp, Max A1 - Einsele, Hermann A1 - Wurster, Sebastian A1 - Loeffler, Juergen T1 - CcpA- and Shm2-Pulsed Myeloid Dendritic Cells Induce T-Cell Activation and Enhance the Neutrophilic Oxidative Burst Response to Aspergillus fumigatus JF - Frontiers in Immunology N2 - Aspergillus fumigatus causes life-threatening opportunistic infections in immunocompromised patients. As therapeutic outcomes of invasive aspergillosis (IA) are often unsatisfactory, the development of targeted immunotherapy remains an important goal. Linking the innate and adaptive immune system, dendritic cells are pivotal in anti-Aspergillus defense and have generated interest as a potential immunotherapeutic approach in IA. While monocyte-derived dendritic cells (moDCs) require ex vivo differentiation, antigen-pulsed primary myeloid dendritic cells (mDCs) may present a more immediate platform for immunotherapy. To that end, we compared the response patterns and cellular interactions of human primary mDCs and moDCs pulsed with an A. fumigatus lysate and two A. fumigatus proteins (CcpA and Shm2) in a serum-free, GMP-compliant medium. CcpA and Shm2 triggered significant upregulation of maturation markers in mDCs and, to a lesser extent, moDCs. Furthermore, both A. fumigatus proteins elicited the release of an array of key pro-inflammatory cytokines including TNF-α, IL-1β, IL-6, IL-8, and CCL3 from both DC populations. Compared to moDCs, CcpA- and Shm2-pulsed mDCs exhibited greater expression of MHC class II antigens and stimulated stronger proliferation and IFN-γ secretion from autologous CD4\(^+\) and CD8\(^+\) T-cells. Moreover, supernatants of CcpA- and Shm2-pulsed mDCs significantly enhanced the oxidative burst in allogeneic neutrophils co-cultured with A. fumigatus germ tubes. Taken together, our in vitro data suggest that ex vivo CcpA- and Shm2-pulsed primary mDCs have the potential to be developed into an immunotherapeutic approach to tackle IA. KW - antigens KW - dendritic cells KW - cytokines KW - host defense KW - immunotherapy KW - Aspergillus Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-239493 SN - 1664-3224 VL - 12 ER - TY - JOUR A1 - Boch, Tobias A1 - Spiess, Birgit A1 - Heinz, Werner A1 - Cornely, Oliver A. A1 - Schwerdtfeger, Rainer A1 - Hahn, Joachim A1 - Krause, Stefan W. A1 - Duerken, Matthias A1 - Bertz, Hartmut A1 - Reuter, Stefan A1 - Kiehl, Michael A1 - Claus, Bernd A1 - Deckert, Peter Markus A1 - Hofmann, Wolf‐Karsten A1 - Buchheidt, Dieter A1 - Reinwald, Mark T1 - Aspergillus specific nested PCR from the site of infection is superior to testing concurrent blood samples in immunocompromised patients with suspected invasive aspergillosis JF - Mycoses N2 - Invasive aspergillosis (IA) is a severe complication in immunocompromised patients. Early diagnosis is crucial to decrease its high mortality, yet the diagnostic gold standard (histopathology and culture) is time‐consuming and cannot offer early confirmation of IA. Detection of IA by polymerase chain reaction (PCR) shows promising potential. Various studies have analysed its diagnostic performance in different clinical settings, especially addressing optimal specimen selection. However, direct comparison of different types of specimens in individual patients though essential, is rarely reported. We systematically assessed the diagnostic performance of an Aspergillus‐specific nested PCR by investigating specimens from the site of infection and comparing it with concurrent blood samples in individual patients (pts) with IA. In a retrospective multicenter analysis PCR was performed on clinical specimens (n = 138) of immunocompromised high‐risk pts (n = 133) from the site of infection together with concurrent blood samples. 38 pts were classified as proven/probable, 67 as possible and 28 as no IA according to 2008 European Organization for Research and Treatment of Cancer/Mycoses Study Group consensus definitions. A considerably superior performance of PCR from the site of infection was observed particularly in pts during antifungal prophylaxis (AFP)/antifungal therapy (AFT). Besides a specificity of 85%, sensitivity varied markedly in BAL (64%), CSF (100%), tissue samples (67%) as opposed to concurrent blood samples (8%). Our results further emphasise the need for investigating clinical samples from the site of infection in case of suspected IA to further establish or rule out the diagnosis. KW - antifungal KW - aspergillosis KW - BAL KW - blood KW - cerebrospinal fluid KW - comparison KW - PCR KW - Aspergillus Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-214065 VL - 62 IS - 11 SP - 1035 EP - 1042 ER - TY - JOUR A1 - White, P. Lewis A1 - Springer, Jan A1 - Wise, Matt P. A1 - Einsele, Hermann A1 - Löffler, Claudia A1 - Seif, Michelle A1 - Prommersberger, Sabrina A1 - Backx, Matthijs A1 - Löffler, Jürgen T1 - A clinical case of COVID-19-associated pulmonary aspergillosis (CAPA), illustrating the challenges in diagnosis (despite overwhelming mycological evidence) JF - Journal of Fungi N2 - The COVID-19 pandemic has resulted in large numbers of patients requiring critical care management. With the established association between severe respiratory virus infection and invasive pulmonary aspergillosis (7.6% for COVID-19-associated pulmonary aspergillosis (CAPA)), the pandemic places a significant number of patients at potential risk from secondary invasive fungal disease. We described a case of CAPA with substantial supporting mycological evidence, highlighting the need to employ strategic diagnostic algorithms and weighted definitions to improve the accuracy in diagnosing CAPA. KW - COVID-19 KW - CAPA KW - diagnostics KW - Aspergillus Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-302438 SN - 2309-608X VL - 8 IS - 1 ER -