TY - JOUR A1 - Kim, Brandon J. A1 - McDonagh, Maura A. A1 - Deng, Liwen A1 - Gastfriend, Benjamin D. A1 - Schubert-Unkmeir, Alexandra A1 - Doran, Kelly S. A1 - Shusta, Eric V. T1 - Streptococcus agalactiae disrupts P-glycoprotein function in brain endothelial cells JF - Fluids and Barriers of the CNS N2 - Bacterial meningitis is a serious life threatening infection of the CNS. To cause meningitis, blood–borne bacteria need to interact with and penetrate brain endothelial cells (BECs) that comprise the blood–brain barrier. BECs help maintain brain homeostasis and they possess an array of efflux transporters, such as P-glycoprotein (P-gp), that function to efflux potentially harmful compounds from the CNS back into the circulation. Oftentimes, efflux also serves to limit the brain uptake of therapeutic drugs, representing a major hurdle for CNS drug delivery. During meningitis, BEC barrier integrity is compromised; however, little is known about efflux transport perturbations during infection. Thus, understanding the impact of bacterial infection on P-gp function would be important for potential routes of therapeutic intervention. To this end, the meningeal bacterial pathogen, Streptococcus agalactiae, was found to inhibit P-gp activity in human induced pluripotent stem cell-derived BECs, and live bacteria were required for the observed inhibition. This observation was correlated to decreased P-gp expression both in vitro and during infection in vivo using a mouse model of bacterial meningitis. Given the impact of bacterial interactions on P-gp function, it will be important to incorporate these findings into analyses of drug delivery paradigms for bacterial infections of the CNS. KW - Group B Streptococcus KW - Streptococcus agalactiae KW - Brain endothelial cells KW - P-glycoprotein KW - Efflux transport KW - Meningitis KW - Stem cells KW - P-gp Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201895 VL - 16 ER - TY - JOUR A1 - Soundararajan, Manonmani A1 - Marincola, Gabriella A1 - Liong, Olivia A1 - Marciniak, Tessa A1 - Wencker, Freya D. R. A1 - Hofmann, Franka A1 - Schollenbruch, Hannah A1 - Kobusch, Iris A1 - Linnemann, Sabrina A1 - Wolf, Silver A. A1 - Helal, Mustafa A1 - Semmler, Torsten A1 - Walther, Birgit A1 - Schoen, Christoph A1 - Nyasinga, Justin A1 - Revathi, Gunturu A1 - Boelhauve, Marc A1 - Ziebuhr, Wilma T1 - Farming practice influences antimicrobial resistance burden of non-aureus staphylococci in pig husbandries JF - Microorganisms N2 - Non-aureus staphylococci (NAS) are ubiquitous bacteria in livestock-associated environments where they may act as reservoirs of antimicrobial resistance (AMR) genes for pathogens such as Staphylococcus aureus. Here, we tested whether housing conditions in pig farms could influence the overall AMR-NAS burden. Two hundred and forty porcine commensal and environmental NAS isolates from three different farm types (conventional, alternative, and organic) were tested for phenotypic antimicrobial susceptibility and subjected to whole genome sequencing. Genomic data were analysed regarding species identity and AMR gene carriage. Seventeen different NAS species were identified across all farm types. In contrast to conventional farms, no AMR genes were detectable towards methicillin, aminoglycosides, and phenicols in organic farms. Additionally, AMR genes to macrolides and tetracycline were rare among NAS in organic farms, while such genes were common in conventional husbandries. No differences in AMR detection existed between farm types regarding fosfomycin, lincosamides, fusidic acid, and heavy metal resistance gene presence. The combined data show that husbandry conditions influence the occurrence of resistant and multidrug-resistant bacteria in livestock, suggesting that changing husbandry practices may be an appropriate means of limiting the spread of AMR bacteria on farms. KW - non-aureus staphylococci KW - NAS KW - alternative pig farming KW - antimicrobial resistance KW - one-health approach KW - intervention strategies KW - livestock-associated staphylococci KW - organic farming KW - pig farming methods Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-312750 SN - 2076-2607 VL - 11 IS - 1 ER - TY - GEN A1 - Tort, Jose F. A1 - Mitreva, Makedonka A1 - Brehm, Klaus R. A1 - Rinaldi, Gabriel T1 - Editorial: Novel Frontiers in Helminth Genomics T2 - Frontiers in Genetics N2 - No abstract available. KW - flatworm KW - nematodes KW - genomics KW - helminths KW - neglected diseases Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-210209 SN - 1664-8021 VL - 11 IS - 791 ER - TY - THES A1 - Ebner, Sebastian Manfred T1 - Antimykotikaresistenzen bei deutschen \(Candida\) \(auris\) Isolaten T1 - Antimycotic resistance in German \(Candida\) \(auris\) isolates N2 - Bei dem 2009 erstbeschriebenen Hefepilz C. auris handelt es sich um einen Keim, welcher aufgrund von nosokomialen Ausbrüchen und hohen Antimykotikaresistenzen Aufmerksamkeit erregte. Ziel dieser Arbeit war es in Deutschland gesammelte Isolate bezüglich vorhandener Resistenzen und Mutationen in Resistenzregionen zu testen und das epidemiologische Geschehen hierzulande mit dem globalen Auftreten des Keims zu vergleichen. Bezüglich der durchgeführten Resistenztestungen wiesen die CLSI-konformen Testarten (YO-Platten und E-Test-Verfahren) meist vergleichbare Ergebnisse auf. Für das EUCAST-konforme Mikrodilutionstestverfahren kann aufgrund eines stark ausgeprägten paradoxen Wachstumseffekts nur Anidulafungin, nicht jedoch Caspofungin, zur Testung empfohlen werden. Insgesamt erwiesen sich 25 % der Isolate als Caspofungin-resistent. Zwei Isolate zeigten eine Resistenz gegenüber allen getesteten Echinocandinen (16,7 %). Die höchsten Resistenzraten wurden gegenüber Fluconazol (92 %) beobachtet. Zwei der Isolate zeigten sich gegenüber Voriconazol resistent (16,7 %). Für Amphotericin B konnte eine Resistenzrate von 33,3 % festgestellt werden. Für die Wirkstoffe Posaconazol und Itraconazol erwiesen sich alle untersuchten Isolate als sensitiv. Dies konnte auch mit Ausnahme eines Isolates für 5-Flucytosin beobachtet werden. Die durch eine Sanger-Sequenzierung erhaltenen Sequenzen der Gene FKS1 und ERG11 wurden auf Mutationen untersucht, welche zu Aminosäuresubstitutionen im Gesamtprotein führten. Hierbei ergaben sich für zwei Isolate (16,7 %) Mutationen im FKS1-Hot Spot 1 (Typ S639F und S639Y). Beide Isolate zeigten sich in den AFST Echinocandin-resistent. Bei allen untersuchten Isolaten lagen Mutationen im ERG11 Gen vor. So fand sich in 8 Fällen eine Mutation des Typen Y132F (66,7 %), in 3 Fällen der Typ K143R (25 %) und in einem Fall der Typ F126L (8,3 %). Im Rahmen eines anderen Projekts wurde mit den hier gewonnenen PCR-Produkten ein WGS durchgeführt, um die Isolate durch SNPs-Vergleich mit Referenzstämmen phylogenetischen Clades zuzuordnen. Dabei konnten 91,7 % der Isolate dem südasiatischen Clade I und ein Isolat dem südafrikanischen Clade III zugeordnet werden. Aufgrund der geringen epidemiologischen Fallzahlen in Deutschland scheint gegenwärtig keine Bedrohung von C. auris auszugehen. Berichte aus anderen Ländern konnten allerdings eine rasche, ausbruchartige Zunahme von C. auris Fällen nachweisen. So kann nur angeraten werden das infektiologische Geschehen in Deutschland weiterhin zu beobachten. N2 - The fungus C. auris was first described in the year 2009. Because of a high number of nosocomial outbrakes and high antimycotic resistance rates the fungus attracted great media attention. The aim of this dissertion was to test German isolates for antimycotic resistance and mutations in resistance genes. Additionally, the epidemiological occurrence in Germany was compared to the global outspread. In this context CLSI-conform methods for resistance testing (YO-Plates and E-Test-Plates) generated comparable results. The testing of EUCAST-conform microdilution plates showed a strong paradoxical growth for Caspofungin. Because of this only Anidulafungin can be recommended for testing. In summary 25 % of the isolates were resistant against Caspofungin. Two isolates showed resistance against all tested Echinocandines (16,7 %). The highest rates were detected for Fluconazol (92 %). Furthermore, two of the isolates (16,7 %) showed resistance against Voriconazol. There was a resistance rate of 33,3 % to Amphotericin B. No isolate showed resistance against Posaconazol or Itraconazol. And only one isolate was resistant against 5-Flucytosin. Sanger-Sequencing was used to detect mutations in resistance genes FKS1 und ERG11, which could lead to a substitution of amino acids in the protein. There were two isolates (16,7 %) with mutations in FKS1-Hot Spot 1 (type S639F and S639Y). Both isolates showed a Echinocandin resistance in AFST. All tested isolates showed a mutation in ERG11. There were eight cases of type Y132F (66,7 %), three cases of K143R (25 %) and in one case type F126L (8,3 %). The PCR products of this study were used in a different project for WSG. This made it possible to group the isolates into phylogenetic clades. In summary 91,7 % of the isolates were related to Clade I (South Asia) and one isolate was related to Clade III (South Africa). Because of low epidemiologic occurence in Germany, there is little threat of servere health care issues at the moment. Reports from diffferent countries all over the world however, showed a quick, outbrake-like increase of C. auris cases. Therefore, further observation of German epidemiology is highly recommended. KW - Candida KW - Resistenz KW - Wirkstoff KW - Behandlung KW - Antimykotikaresistenz KW - Candida auris KW - Resistance mechanism C. auris KW - Mutation FKS Hot Spot 1/ERG11 KW - Nosokomiale Infektion KW - E-Test KW - Mikrodilutionstest KW - Hospitalismus KW - Pilz Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318068 ER - TY - JOUR A1 - Kim, Brandon J. A1 - Shusta, Eric V. A1 - Doran, Kelly S. T1 - Past and current perspectives in modeling bacteria and blood–brain barrier interactions JF - Frontiers in Microbiology N2 - The central nervous system (CNS) barriers are highly specialized cellular barriers that promote brain homeostasis while restricting pathogen and toxin entry. The primary cellular constituent regulating pathogen entry in most of these brain barriers is the brain endothelial cell (BEC) that exhibits properties that allow for tight regulation of CNS entry. Bacterial meningoencephalitis is a serious infection of the CNS and occurs when bacteria can cross specialized brain barriers and cause inflammation. Models have been developed to understand the bacterial – BEC interaction that lead to pathogen crossing into the CNS, however, these have been met with challenges due to these highly specialized BEC phenotypes. This perspective provides a brief overview and outlook of the in vivo and in vitro models currently being used to study bacterial brain penetration, and opinion on improved models for the future. KW - bacteria KW - blood–brain barrier KW - meningitis KW - stem cells KW - brain endothelial cell Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201766 VL - 10 IS - 1336 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 - Claus, Heike A1 - Hubert, Kerstin A1 - Becher, Dörte A1 - Otto, Andreas A1 - Pawlik, Marie-Christin A1 - Lappann, Ines A1 - Strobel, Lea A1 - Vogel, Ulrich A1 - Johswich, Kay T1 - A homopolymeric adenosine tract in the promoter region of nspA influences factor H-mediated serum resistance in Neisseria meningitidis JF - Scientific Reports N2 - Although usually asymptomatically colonizing the human nasopharynx, the Gram-negative bacterium Neisseria meningitidis (meningococcus) can spread to the blood stream and cause invasive disease. For survival in blood, N. meningitidis evades the complement system by expression of a polysaccharide capsule and surface proteins sequestering the complement regulator factor H (fH). Meningococcal strains belonging to the sequence type (ST-) 41/44 clonal complex (cc41/44) cause a major proportion of serogroup B meningococcal disease worldwide, but they are also common in asymptomatic carriers. Proteome analysis comparing cc41/44 isolates from invasive disease versus carriage revealed differential expression levels of the outer membrane protein NspA, which binds fH. Deletion of nspA reduced serum resistance and NspA expression correlated with fH sequestration. Expression levels of NspA depended on the length of a homopolymeric tract in the nspA promoter: A 5-adenosine tract dictated low NspA expression, whereas a 6-adenosine motif guided high NspA expression. Screening German cc41/44 strain collections revealed the 6-adenosine motif in 39% of disease isolates, but only in 3.4% of carriage isolates. Thus, high NspA expression is associated with disease, but not strictly required. The 6-adenosine nspA promoter is most common to the cc41/44, but is also found in other hypervirulent clonal complexes. KW - Meningitis KW - Pathogens Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200956 VL - 9 ER - TY - JOUR A1 - Kraus, Amelie J. A1 - Brink, Benedikt G. A1 - Siegel, T. Nicolai T1 - Efficient and specific oligo-based depletion of rRNA JF - Scientific Reports N2 - In most organisms, ribosomal RNA (rRNA) contributes to >85% of total RNA. Thus, to obtain useful information from RNA-sequencing (RNA-seq) analyses at reasonable sequencing depth, typically, mature polyadenylated transcripts are enriched or rRNA molecules are depleted. Targeted depletion of rRNA is particularly useful when studying transcripts lacking a poly(A) tail, such as some non-coding RNAs (ncRNAs), most bacterial RNAs and partially degraded or immature transcripts. While several commercially available kits allow effective rRNA depletion, their efficiency relies on a high degree of sequence homology between oligonucleotide probes and the target RNA. This restricts the use of such kits to a limited number of organisms with conserved rRNA sequences. In this study we describe the use of biotinylated oligos and streptavidin-coated paramagnetic beads for the efficient and specific depletion of trypanosomal rRNA. Our approach reduces the levels of the most abundant rRNA transcripts to less than 5% with minimal off-target effects. By adjusting the sequence of the oligonucleotide probes, our approach can be used to deplete rRNAs or other abundant transcripts independent of species. Thus, our protocol provides a useful alternative for rRNA removal where enrichment of polyadenylated transcripts is not an option and commercial kits for rRNA are not available. KW - parasite biology KW - RNA sequencing KW - transcriptomics Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224829 VL - 9 ER - TY - THES A1 - Pätzel [geb. Ditter], Katharina Sabine T1 - Molekulare Charakterisierung eines Mitgliedes der TNF-Rezeptor-Superfamilie des Fuchsbandwurmes \(Echinococcus\) \(multilocularis\) T1 - Molecular characterization of a TNF-receptor-superfamily member of \(Echinococcus\) \(multilocularis\) N2 - Die alveoläre Echinokokkose (AE), die durch den Fuchsbandwurm Echinococcus multilocularis verursacht wird, ist eine seltene jedoch schwere und oft tödlich verlaufende Erkrankung. Aufgrund der späten Diagnosestellung sind kurative Behandlungsmethoden häufig nicht durchführbar und als einzige Behandlungsmöglichkeit bleibt eine lebenslange und nebenwirkungsreiche Therapie mit Benzimidazolen. Verbesserte Therapieoptionen durch die Entwicklung neuer Medikamente sind dringend notwendig. Hierfür kann es hilfreich sein die Biologie des Fuchsbandwurmes und die Kommunikationswege zwischen Parasit und Wirt zu verstehen. Bereits in vorherigen Arbeiten als auch in dieser Arbeit erwiesen sich evolutionsgeschichtlich konservierte Signalwege als Kommunikationsweg zwischen dem Fuchsbandwurm und seinem Wirt von zentraler Rolle. Die Entschlüsselung des Echinococcus-Genoms gab Hinweise darauf, dass ein Mitglied der Tumornekrosefaktor-Rezeptor-Superfamilie, jedoch kein endogener TNF α ähnlicher Ligand im Genom kodiert wird. Ein Mitglied der TNFR-Superfamilie des Fuchsbandwurmes (EmTNFR) wurde in dieser Arbeit als membranständiger Rezeptor mit einer intrazellulären Todesdomäne (DD) und hoher Ähnlichkeit zum humanen Typ 16 der TNF-Rezeptor-Superfamilie, auch 〖p75〗^NTR genannt, charakterisiert. Sowohl in bioinformatischen als auch in Sequenzanalysen wurden drei alternative Splicing-Formen von emtnfr (emtnfr, emtnfr-v2 und emtnfr-v3) nachgewiesen. emtnfr-v2 entsteht durch Alternatives Splicing und kodiert ein Protein, das keine intrazelluläre Todesdomäne besitzt. emtnfr-v3 verwendet einen alternativen Transkriptionstart und wird von den letzten 3 Exons von emtnfr kodiert. emtnfr-v3, kodiert ein Protein ohne extrazelluläre Region, aber mit intrazellulärer Todesdomäne. Ein löslicher TNF-Rezeptor konnte auf Proteinebene nicht nachgewiesen werden. Aufgrund von phylogenetischen Analysen und der Rezeptor-Struktur ist zu vermuten, dass EmTNFR ein p75NTR Homolog ist und damit der ursprünglichen Form der TNF-Rezeptoren entspricht. Mitglieder eines intrazellulären TNF-Signalweges wurden in bioinformatischen Analysen beim Fuchsbandwurm E. multilocularis identifiziert. Expressionsuntersuchungen zeigten sowohl in Trankriptomdaten als auch auf Proteinebene eine starke Expression von EmTNFR in Primärzellen und im Metazestoden (MZ), dem pathogenen Stadium für den Zwischenwirt. Echinococcus-Stammzellkulturen zeigten nach RNA-Interferenz-basiertem Knockdown des EmTNFR-kodierenden Gens deutliche Entwicklungsdefekte. Des Weiteren zeigten Echinococcus-Stammzellkulturen nach einer Behandlung mit TNF-α, einem potentiellen Liganden des TNF-Rezeptors und einem zentralen Zytokin in der Immunabwehr des Zwischenwirtes, Entwicklungsfortschritte, wie eine verbesserte Bildung von MZ aus Stammzellen. Zusätzlich wurde in whole-mount in situ Hybridisierungs-Versuchen eine ubiquitäre Expression von emtnfr in der Germinalschicht des MZ sowie eine Spezifität von emtnfr für den MZ, welcher ursächlich für die AE ist, nachgewiesen. Somit scheinen sowohl EmTNFR als auch TNF-α eine wichtige Funktion bei der Entwicklung und Etablierung des Fuchsbandwurmes während der frühen Phase der Infektion des Zwischenwirtes zu haben. TNF-α könnte ein weiterer Faktor für den ausgeprägten Organtropismus des Parasiten zur Leber sein, denn dort bestehen durch Kupfferzellen produzierte hohe lokale Konzentration von TNF-α. Zusammenfassend deuten die hier erarbeiteten Daten darauf hin, dass EmTNFR über die Bindung von Wirts-TNF-α bei der frühen Entwicklung des Echincoccus-Metazestoden eine Rolle spielt. N2 - Alveolar echinococcosis (AE), which is caused by the metacestode larval stage of the fox tapeworm Echinococcus multilocularis, is a rare but severe, often fatal disease. Due to late diagnosis and advanced spread of the infection curative therapy is often not possible and the only treatment option is benzimidazole chemotherapy, which often must be taken lifelong and has adverse side effects. Improvement of therapeutic options is thus urgently needed. To this end, a closer understanding of parasite biology and communication mechanisms between parasite and host are helpful. In this work, focus was laid on the possibility of host-parasite cross-communication involving an evolutionarily conserved signalling pathway. By mining the Echinococcus genome sequence, a gene encoding a member of the tumor necrosis-factor-receptor family (TNF-R), was identified. In this work, EmTNFR, a member of the TNF-R superfamily, of the fox tapeworm was identified as a membrane bound receptor with intracellular death domain and highest similarity to human TNFRSF 16, also called p75NTR. In in silico analysis and cDNA sequencing, 3 alternative splice forms of emtnfr (emtnfr-v1, -v2 and -v3) were found. emtnfr-v2 is the result of alternative splicing and encodes a protein lacking the intracellular death domain. emtnfr-v3 employs an alternative transcription start and is encoded by the last 3 exons of emtnfr. emtnfr-v3 encodes a protein without extracellular domain, but containing an intracellular death domain. A soluble TNF-receptor could not be found in proteomic analysis. Based on phylogenetic analysis and receptor structure, EmTNFR is thought to be a homolog of p75NTR, corresponding to the ancient form of TNF receptors. Members of an intracellular TNF signaling pathway were identified in bioinformatic analyses in the fox tapeworm E. multilocularis, indicating the presence of a full TNFR signalling pathway. Expression studies showed in transcriptome data and at protein level a strong expression of EmTNFR in primary cells and in the metacestode (MZ), the pathogenic stage for the intermediate host. Echinococcus stem cell cultures showed marked developmental defects after RNAi based knockdown of the EmTNFR-encoding gene. Furthermore, Echinococcus stem cell culture displayed accelerated developmental progress such as enhanced formation of MZ from stem cells after treatment with TNF-α, a potential ligand of the TNF receptor, and a central cytokine in the immune defense of the intermediate host. In addition, whole-mount in situ hybridization experiments demonstrated ubiquitous expression of emtnfr in the germinal layer of MZ and specificity of emtnfr for MZ, the causative agent of AE. Thus, both EmTNFR and TNF-α appear to have an important function in development and establishment of the fox tapeworm during the early phase of infection of the intermediate host. TNF-α could be an additional factor for the pronounced organ tropism of the parasite to the liver, caused by a high local concentration of TNF-α produced by Kupffer cells. In summary, the data generated in this work suggest that EmTNFR plays a role in the early development of Echinococcus metacestode via binding of host TNF-α. KW - Fuchsbandwurm KW - Wirt-Parasit-Beziehung KW - Parasit KW - Tumor-Nekrose-Faktor KW - Echinococcus multilocularis KW - TNF-Rezeptor KW - Wirt-Parasiten-Interaktion KW - Molekulare Charakterisierung Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-369397 ER - TY - JOUR A1 - Al-Zaben, Naim A1 - Medyukhina, Anna A1 - Dietrich, Stefanie A1 - Marolda, Alessandra A1 - Hünniger, Kerstin A1 - Kurzai, Oliver A1 - Figge, Marc Thilo T1 - Automated tracking of label-free cells with enhanced recognition of whole tracks JF - Scientific Reports N2 - Migration and interactions of immune cells are routinely studied by time-lapse microscopy of in vitro migration and confrontation assays. To objectively quantify the dynamic behavior of cells, software tools for automated cell tracking can be applied. However, many existing tracking algorithms recognize only rather short fragments of a whole cell track and rely on cell staining to enhance cell segmentation. While our previously developed segmentation approach enables tracking of label-free cells, it still suffers from frequently recognizing only short track fragments. In this study, we identify sources of track fragmentation and provide solutions to obtain longer cell tracks. This is achieved by improving the detection of low-contrast cells and by optimizing the value of the gap size parameter, which defines the number of missing cell positions between track fragments that is accepted for still connecting them into one track. We find that the enhanced track recognition increases the average length of cell tracks up to 2.2-fold. Recognizing cell tracks as a whole will enable studying and quantifying more complex patterns of cell behavior, e.g. switches in migration mode or dependence of the phagocytosis efficiency on the number and type of preceding interactions. Such quantitative analyses will improve our understanding of how immune cells interact and function in health and disease. KW - image processing KW - software Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-221093 VL - 9 ER - TY - THES A1 - Junghanns, Lara Madeleine T1 - Resistenzmechanismen gegen Amphotericin B in humanpathogenen Hefepilzen T1 - Resistance mechanism to amphotericin B in human pathogenic yeasts N2 - Die 2009 erstmals entdeckte Spezies C. auris erlangte binnen kürzester Zeit zunehmend weltweite Aufmerksamkeit. Vor allem die Tendenz der Multiresistenzentwicklung und das rasche Auslösen von nosokomialen Infektionen erschweren den Umgang und die Therapie von C. auris Infektionen im Vergleich zu anderen Candida Spezien. Diese Dissertationsarbeit umfasst eine systematische Resistenzanalyse der im NRZMyk vorhandenen Stammsammlung aus C. auris und C. parapsilosis Isolaten, um Aufschluss über den Wirkmechanismus von Amphotericin B in Hefepilzen zu erlangen. Anhand der zunächst durchgeführten Amphotericin B-Resistenztestungen kristallisierten sich CAU37 und CAU43 mit MHK-Werten bis zu 12 µg/ml als stark Amphotericin B-resistente Isolate heraus. Die Analyse der Sequenzierungsergebnisse zeigte bei beiden Stämmen eine Mutation im ERG4 Gen an Position 576, welche nicht eindeutig als alleinige Ursache für die verminderte Amphotericin B-Empfindlichkeit festgelegt werden konnte. Dennoch wurde im Rahmen eines Survival Assays bei beiden Amphotericin B-resistenten Isolaten anfänglich eine konzentrationsabhängige Aktivität gegenüber Amphotericin B festgestellt, bevor ein Nachwachsen der Kulturen beobachtet wurde. Somit wurde die Vermutung aufgestellt, dass lediglich ein Teil der aufgebrachten Candida-Zellen abgetötet wird und dies in einer Vermehrung der überlebenden Zellen resultiert. Des Weiteren konnte im Rahmen von Resistenztestungen mit dem Sphingolipidinhibitor Myriocin nachgewiesen werden, dass vor allem in Amphotericin B-resistenten Isolaten eine deutliche Wirkungsverstärkung des Polyens hervorgerufen wird. Diese Sensitivitätssteigerung ist allgemein bei allen C. auris Isolaten zu beobachten, fällt bei resistenten Stämmen jedoch deutlich stärker aus. Hierdurch kam die Annahme auf, dass Amphotericin B-Resistenzen auch in möglichen Veränderungen des Sphingolipid-Haushaltes begründet sein könnten. Darüber hinaus scheint Myriocin keinen Einfluss auf Fluconazol-resistente oder FKS-mutierte Echinocandin-resistente C. auris Stämme zu haben. Das ebenfalls untersuchte und von Myriocin abgeleitete Medikament Fingolimod hatte jedoch ebenfalls keinen wirkungsverstärkenden Effekt. Allerdings reagierte ein Großteil der C. auris Isolate (57,6 %) sensitiv gegenüber dem neusten medizinisch bekannten Triazol Isavuconazol und es konnte erstmalig ein ECV-Wert von 0,03125 µg/ml festgelegt werden. Ein valider Vergleich von C. auris zu C. parapsilosis war aufgrund der mangelnden Anzahl an C. parapsilosis Isolaten jedoch nicht möglich N2 - The species C. auris, which was first discovered in 2009, quickly attracted worldwide attention. In particular, the development of multidrug resistance and the rapid onset of nosocomial infections complicate the management and treatment of C. auris infections compared to other Candida species. This dissertation comprises a systematic resistance analysis of the strain collection available at the NRZMyk from C. auris and C. parapsilosis isolates in order to shed light on the mechanism of action of amphotericin B in yeast fungi. CAU37 and CAU43 ermerged as highly amphotericin B-resistant isolates in the initially performed amphotericin B resistance tests, with MIC values up to 12 µg/ml. Sequencing results showed a mutation in the ERG4 gene at position 576 in both strains, which can`t be clearly identified as the main cause of the reduced susceptibility to amphotericin B. Nevertheless both amphotericin B-resistant isolates initially showed a concentration dependent activity against amphotericin B, followed by a regrowth of the cultures. The hypothesis is, that only some of the applied Candida cells are killed, resulting in a proliferation of the surviving cells. Furthermore the resistance tests with the sphingolipid inhibitor Myriocin in combination with amphotericin B showed that sublethal myriocin concentrations increased the C. auris susceptibility to amphotericin B. This increase in sensitivity is generally observed in all C. auris isolates, but is significantly stronger in resistant strains. This leeds to the assumption that amphotericin B resistance can also be due to possible changes in the sphingolipid balance. Furthermore, myriocin does not appear to have any influence on fluconazole-resistant or FKS-mutated echinocandin-resistant C. auris strains. Fingolimod, a drug also investigated and derived from Myriocin, doesn`t have any enhancing effect either. However the majority of C. auris isolates (57.6 %) reacted sensitively to the latest medically known triazole isavuconazole and for the first time an ECV value of of 0.03125 µg/ml could be determined. A valid comparison of C. auris to C. parapsilosis was not possible due to the lack of C. parapsilosis isolates. KW - Candida KW - antifungal susceptibility KW - Multidrug-Resistenz KW - Amphotericin B KW - Sphingolipide KW - Fingolimod KW - Candida auris KW - Multiresistenz KW - Myriocin KW - Isavuconazol KW - Antimykotikaresistenz KW - C. auris KW - Empdindlichkeitsprüfung Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-369861 ER - TY - THES A1 - Fohmann, Ingo T1 - The Role of Sphingosine 1-phosphate and S1PR1-3 in the Pathophysiology of Meningococcal Meningitis T1 - Die Rolle von Sphingosin 1-Phosphat und S1PR1-3 in der Pathophysiologie der durch Meningokokken ausgelösten Meningitis N2 - Neisseria meningitidis (N. meningitidis) is an obligate human pathogen which causes live-threatening sepsis and meningitis. The fatality rate after meningococcal infection is high and surviving patients often suffer from severe sequelae. To cause meningitis, N. meningitidis must overcome the endothelium of the blood-brain barrier. The bacterium achieves this through the interaction with endothelial surface receptors leading to alternations of the cellular metabolism and signaling, which lastly results in cellular uptake and barrier traversal of N. meningitidis. Sphingosine 1-phosphate (S1P) is a lipid mediator that belongs to the class of sphingolipids and regulates the integrity of the blood-brain barrier through the interaction with its cognate receptors S1P receptors 1-3 (S1PR1-3). In this study, high performance liquid chromatography coupled with mass spectrometry (LC-MS/MS) was used to generate a time-resolved picture of the sphingolipid metabolism in a brain endothelial cell line (hCMEC/D3) upon meningococcal infection. Among various changes, S1P was elevated in the cellular compartment as well as in the supernatant of infected hCMEC/D3s. Analysis of mRNA expression in infected hCMEC/D3s with quantitative real-time polymerase chain reaction (RT-qPCR) revealed that the increase in S1P could be attributed to the enhanced expression of the S1P-generating enzyme sphingosine kinase 1 (SphK1). Antibody-based detection of SphK1 protein or phosphorylation at SphK1 residue Serine 225 in hCMEC/D3 plasma membrane fractions via Western Blot revealed that N. meningitidis also induced SphK1 phospho-activation and recruitment to the plasma membrane. Importantly, recruitment of SphK1 to the plasma membrane increases the probability of substrate encounter, thus elevating SphK activity. Enhanced SphK activity was also reflected on a functional level, as detected by a commercially available ATP depletion assay used for measuring the enzymatic activity of SphK. Infection of hCMEC/D3 cells with pilus-deficient mutants resulted in a lower SphK activation compared to the N. meningitidis wild type strain. hCMEC/D3 treatment with pilus-enriched protein fractions showed SphK activation similar to the infection with living bacteria and could be ascribed to pilus interaction with the membrane-proximal domain of cellular surface receptor CD147. Inhibition of SphK1 or SphK2 through pre-treatment with specific inhibitors or RNA interference reduced uptake of N. meningitidis into hCMEC/D3 cells, as measured with Gentamicin protection assays. Released S1P induced the phospho-activation of epidermal growth factor receptor (EGFR) via S1PR2 activation, whose expression was also increasing during infection. Furthermore, S1PR2 blockage had a preventive effect on bacterial invasion into hCMEC/D3 cells. On the contrary, activation of S1PR1+3 also reduced bacterial uptake, indicating an opposing regulatory role of S1PR1+3 and S1PR2 during N. meningitidis uptake. Moreover, SphK2 inhibition prevented inflammatory cytokine expression as well as release of interleukin-8 after N. meningitidis infection. Taken together, this study demonstrates the central role of S1P and its cognate receptors S1PR1-3 in the pathophysiology of meningococcal meningitis. N2 - Neisseria meningitidis (N. meningitidis) ist ein obligat humanpathogenes Bakterium, welches lebensbedrohliche Sepsis und Meningitis auslöst. Die Todesrate nach einer Meningokokkeninfektion ist hoch und überlebende Patienten leiden oft unter gravierenden Folgeschäden. N. meningitidis muss zuerst das Endothel der Blut-Hirn-Schranke überwinden, um Meningitis auslösen zu können. Das Bakterium erzielt dies durch die Interaktion mit endothelialen Rezeptoren, welche den zellulären Metabolismus und die zellulären Signalwege beeinflusst und letztlich zur zellulären Aufnahme von N. meningitidis und zur Überwindung der Barriere führt. Sphingosine 1-phosphat (S1P) ist ein Lipidmediator, der zur Klasse der Sphingolipide gehört und die Integrität der Blut-Hirn-Schranke durch die Interaktion mit den zugehörigen S1P Rezeptoren 1-3 (S1PR1-3s) beeinflusst. In dieser Arbeit wurde Hochleistungsflüssigkeitschromatographie-gekoppelte Massenspektrometrie (LC-MS/MS) genutzt, um ein zeitlich aufgelöstes Bild des Sphingolipidmetabolismus in einer Hinendothelzelllinie (hCMEC/D3) nach Meningokokkeninfektion zu generieren. Neben zahlreichen Veränderungen zeigte sich ein Anstieg von S1P im zellulären Kompartiment und im Überstand von infizierten hCMEC/D3 Zellen. Die Analyse der mRNA Expression in infizierten hCMEC/D3 Zellen mittels quantitativer Echtzeit-Polymerase-Kettenreaktion (RT-qPCR) offenbarte, dass der Anstieg von S1P auf eine erhöhte Expression der S1P-bildenden Sphingosinkinase 1 (SphK1) zurückzuführen war. Die ntikörperbasierte Detektion des Proteins SphK1 oder dessen Phosphorylierung an Serin 225 in den Membranfraktionen von hCMEC/D3 Zellen mittels Western Blot zeigte, dass N. meningitidis außerdem die Phospho-Aktivierung und Membrantranslokation von SphK1 induzierte. Die Plasmamembrantranslokation von SphK1 erhöht die Wahrscheinlichkeit auf das Substrat Sphingosine zu treffen und verstärkt somit die SphK-Aktivität. Die erhöhte SphK-Aktivität zeigte sich auch auf funktioneller Ebene, wie mittels eines ATP-Verbrauchs-Assays zur Messung der SphK-Aktivität nachgewiesen werden konnte. Die Infektion von hCMEC/D3 Zellen mit Pilus-defizienten Mutanten resultierte in einer geringeren SphK-Aktivierung im Vergleich zum Wildtypstamm. Die Behandlung von hCMEC/D3 Zellen mit Pilus-aufgereinigten Fraktionen zeigte eine SphK-Aktivierung, die mit der Aktivierung durch lebende Bakterien vergleichbar war und der Interaktion des Pilus mit der membranproximalen Domäne des zellulären Oberflächenrezeptors CD147 zugeordnet werden konnte. Die Inhibition von SphK1 und SphK2 durch die Vorbehandlung mit spezifischen Inhibitoren oder RNA-Interferenz reduzierte die Aufnahme von N. meningitidis in hCMEC/D3 Zellen, wie mittels Gentamicin Protection Assay nachgewiesen wurde. Das freigesetzte S1P induzierte die Phospho-Aktivierung des epidermalen Wachstumsfaktorrezeptors (EGFR) durch die Aktivierung von S1PR2, welcher während der Infektion vermehrt exprimiert wurde. Die Blockierung von S1PR2 hatte einen präventiven Effekt auf die bakterielle Invasion in hCMEC/D3 Zellen. Im Gegenzug reduzierte die Aktivierung von S1PR1+3 ebenfalls die bakterielle Aufnahme, was auf eine gegensätzliche regulatorische Rolle von S1PR1+3 und S1PR2 während der Aufnahme von N. meningitidis in hCMEC/D3 Zellen hindeutet. Darüber hinaus verhinderte die Inhibition von SphK2 die Expression von inflammatorischen Cytokinen sowie die Freisetzung von Interleukin-8 nach Infektion mit N. meningitidis. Zusammenfassend zeigt diese Arbeit die zentrale Rolle von S1P und den zugehörigen Rezeptoren S1PR1-3 in der Pathophysiologie der durch Meningokokken ausgelösten Meningitis. KW - Blut-Hirn-Schranke KW - Sphingosinkinase KW - Sphingolipide KW - Bakterielle Infektion KW - Sphingosine 1-phosphate KW - Sphingosine 1-phosphate receptor KW - Epidermal growth factor receptor KW - CD147 KW - S1P KW - S1PR KW - Meningococci KW - Basigin KW - EGFR KW - Meningitis cerebrospinalis epidemica KW - Meningitis, Meningococcal Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-369764 ER - TY - JOUR A1 - Klotz, Peter A1 - Higgins, Paul G. A1 - Schaubmar, Andreas R. A1 - Failing, Klaus A1 - Leidner, Ursula A1 - Seifert, Harald A1 - Scheufen, Sandra A1 - Semmler, Torsten A1 - Ewers, Christa T1 - Seasonal Occurrence and Carbapenem Susceptibility of Bovine Acinetobacter baumannii in Germany JF - Frontiers in Microbiology N2 - Acinetobacter baumannii is one of the leading causes of nosocomial infections in humans. To investigate its prevalence, distribution of sequence types (STs), and antimicrobial resistance in cattle, we sampled 422 cattle, including 280 dairy cows, 59 beef cattle, and 83 calves over a 14-month period. Metadata, such as the previous use of antimicrobial agents and feeding, were collected to identify putative determining factors. Bacterial isolates were identified via MALDI-TOF/MS and PCR, antimicrobial susceptibility was evaluated via VITEK2 and antibiotic gradient tests, resistance genes were identified by PCR. Overall, 15.6% of the cattle harbored A. baumannii, predominantly in the nose (60.3% of the A. baumannii isolates). It was more frequent in dairy cows (21.1%) than in beef cattle (6.8%) and calves (2.4%). A seasonal occurrence was shown with a peak between May and August. The rate of occurrence of A. baumannii was correlated with a history of use of 3rd generation cephalosporins in the last 6 months prior to sampling Multilocus sequence typing (Pasteur scheme) revealed 83 STs among 126 unique isolates. Nine of the bovine STs have previously been implicated in human infections. Besides known intrinsic resistance of the species, the isolates did not show additional resistance to the antimicrobial substances tested, including carbapenems. Our data suggest that cattle are not a reservoir for nosocomial A. baumannii but carry a highly diverse population of this species. Nevertheless, some STs seem to be able to colonize both cattle and humans. KW - ESKAPE KW - Acinetobacter baumannii KW - antimicrobial susceptibility KW - MLST KW - cattle KW - epidemiology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-325927 VL - 10 ER - TY - JOUR A1 - Weiss, Esther A1 - Ziegler, Sabrina A1 - Fliesser, Mirjam A1 - Schmitt, Anna-Lena A1 - Hünniger, Kerstin A1 - Kurzai, Oliver A1 - Morton, Charles-Oliver A1 - Einsele, Hermann A1 - Loeffler, Juergen T1 - First Insights in NK—DC Cross-Talk and the Importance of Soluble Factors During Infection With Aspergillus fumigatus JF - Frontiers in Cellular and Infection Microbiology N2 - Invasive aspergillosis (IA) is an infectious disease caused by the fungal pathogen Aspergillus fumigatus that mainly affects immunocompromised hosts. To investigate immune cell cross-talk during infection with A. fumigatus, we co-cultured natural killer (NK) cells and dendritic cells (DC) after stimulation with whole fungal structures, components of the fungal cell wall, fungal lysate or ligands for distinct fungal receptors. Both cell types showed activation after stimulation with fungal components and were able to transfer activation signals to the counterpart not stimulated cell type. Interestingly, DCs recognized a broader spectrum of fungal components and thereby initiated NK cell activation when those did not recognize fungal structures. These experiments highlighted the supportive function of DCs in NK cell activation. Furthermore, we focused on soluble DC mediated NK cell activation and showed that DCs stimulated with the TLR2/Dectin-1 ligand zymosan could maximally stimulate the expression of CD69 on NK cells. Thus, we investigated the influence of both receptors for zymosan, Dectin-1 and TLR2, which are highly expressed on DCs but show only minimal expression on NK cells. Specific focus was laid on the question whether Dectin-1 or TLR2 signaling in DCs is important for the secretion of soluble factors leading to NK cell activation. Our results show that Dectin-1 and TLR2 are negligible for NK cell activation. We conclude that besides Dectin-1 and TLR2 other receptors on DCs are able to compensate for the missing signal. KW - natural killer cells KW - dendritic cells KW - NK-DC cross-talk KW - Aspergillus fumigatus KW - soluble factors KW - innate immunity Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-233565 VL - 8 ER -