TY - JOUR A1 - Nono, Justin Komguep A1 - Pletinckx, Katrien A1 - Lutz, Manfred B. A1 - Brehm, Klaus T1 - Excretory/Secretory-Products of Echinococcus multilocularis Larvae Induce Apoptosis and Tolerogenic Properties in Dendritic Cells In Vitro JF - PLoS Neglected Tropical Diseases N2 - Background: Alveolar echinococcosis, caused by Echinococcus multilocularis larvae, is a chronic disease associated with considerable modulation of the host immune response. Dendritic cells (DC) are key effectors in shaping the immune response and among the first cells encountered by the parasite during an infection. Although it is assumed that E. multilocularis, by excretory/secretory (E/S)-products, specifically affects DC to deviate immune responses, little information is available on the molecular nature of respective E/S-products and their mode of action. Methodology/Principal Findings: We established cultivation systems for exposing DC to live material from early (oncosphere), chronic (metacestode) and late (protoscolex) infectious stages. When co-incubated with Echinococcus primary cells, representing the invading oncosphere, or metacestode vesicles, a significant proportion of DC underwent apoptosis and the surviving DC failed to mature. In contrast, DC exposed to protoscoleces upregulated maturation markers and did not undergo apoptosis. After pre-incubation with primary cells and metacestode vesicles, DC showed a strongly impaired ability to be activated by the TLR ligand LPS, which was not observed in DC pre-treated with protoscolex E/S-products. While none of the larvae induced the secretion of pro-inflammatory IL-12p70, the production of immunosuppressive IL-10 was elevated in response to primary cell E/S-products. Finally, upon incubation with DC and naive T-cells, E/S-products from metacestode vesicles led to a significant expansion of Foxp3+ T cells in vitro. Conclusions: This is the first report on the induction of apoptosis in DC by cestode E/S-products. Our data indicate that the early infective stage of E. multilocularis is a strong inducer of tolerance in DC, which is most probably important for generating an immunosuppressive environment at an infection phase in which the parasite is highly vulnerable to host attacks. The induction of CD4+CD25+Foxp3+ T cells through metacestode E/S-products suggests that these cells fulfill an important role for parasite persistence during chronic echinococcosis. KW - granulosus KW - hydatid disease KW - metacestode vesicles KW - antigen-B KW - alveoar echinococcosis KW - TGF-BETA KW - regulatory T cells KW - gene expression KW - Brugia Malayi KW - TNF-alpha Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-134280 VL - 6 IS - 2 ER - TY - JOUR A1 - Götz, Ralph A1 - Panzer, Sabine A1 - Trinks, Nora A1 - Eilts, Janna A1 - Wagener, Johannes A1 - Turrà, David A1 - Di Pietro, Antonio A1 - Sauer, Markus A1 - Terpitz, Ulrich T1 - Expansion Microscopy for Cell Biology Analysis in Fungi JF - Frontiers in Microbiology N2 - Super-resolution microscopy has evolved as a powerful method for subdiffraction-resolution fluorescence imaging of cells and cellular organelles, but requires sophisticated and expensive installations. Expansion microscopy (ExM), which is based on the physical expansion of the cellular structure of interest, provides a cheap alternative to bypass the diffraction limit and enable super-resolution imaging on a conventional fluorescence microscope. While ExM has shown impressive results for the magnified visualization of proteins and RNAs in cells and tissues, it has not yet been applied in fungi, mainly due to their complex cell wall. Here we developed a method that enables reliable isotropic expansion of ascomycetes and basidiomycetes upon treatment with cell wall degrading enzymes. Confocal laser scanning microscopy (CLSM) and structured illumination microscopy (SIM) images of 4.5-fold expanded sporidia of Ustilago maydis expressing fluorescent fungal rhodopsins and hyphae of Fusarium oxysporum or Aspergillus fumigatus expressing either histone H1-mCherry together with Lifeact-sGFP or mRFP targeted to mitochondria, revealed details of subcellular structures with an estimated spatial resolution of around 30 nm. ExM is thus well suited for cell biology studies in fungi on conventional fluorescence microscopes. KW - Expansion microscopy KW - fluorescence microscopy KW - fungi KW - sporidia KW - hyphae Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202569 SN - 1664-302X VL - 11 ER - TY - JOUR A1 - Aldejohann, Alexander Maximilian A1 - Wiese-Posselt, Miriam A1 - Gastmeier, Petra A1 - Kurzai, Oliver T1 - Expert recommendations for prevention and management of Candida auris transmission JF - Mycoses N2 - Candida auris was first described as a yeast pathogen in 2009. Since then, the species has emerged worldwide. In contrast to most other Candida spp., C. auris frequently exhibits multi-drug resistance and is readily transmitted in hospital settings. While most detections so far are from colonised patients, C. auris does cause superficial and life-threatening invasive infections. During management of the first documented C. auris transmission in a German hospital, experts from the National Reference Centers for Invasive Fungal Infections (NRZMyk) and the National Reference Center for Surveillance of Nosocomial Infections screened available literature and integrated available knowledge on infection prevention and C. auris epidemiology and biology to enable optimal containment. Relevant recommendations developed during this process are summarised in this guidance document, intended to assist in management of C. auris transmission and potential outbreak situations. Rapid and effective measures to contain C. auris spread require a multi-disciplinary approach that includes clinical specialists of the affected unit, nursing staff, hospital hygiene, diagnostic microbiology, cleaning staff, hospital management and experts in diagnostic mycology / fungal infections. Action should be initiated in a step-wise process and relevant interventions differ between management of singular C. auris colonised / infected patients and detection of potential C. auris transmission or nosocomial outbreaks. KW - Candida auris KW - nosocomial transmission KW - infection prevention KW - expert recommendation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318570 VL - 65 IS - 6 SP - 590 EP - 598 ER - TY - JOUR A1 - Walther, Grit A1 - Zimmermann, Anna A1 - Theuersbacher, Johanna A1 - Kaerger, Kerstin A1 - Lilienfeld-Toal, Marie von A1 - Roth, Mathias A1 - Kampik, Daniel A1 - Geerling, Gerd A1 - Kurzai, Oliver T1 - Eye infections caused by filamentous fungi: spectrum and antifungal susceptibility of the prevailing agents in Germany JF - Journal of Fungi N2 - Fungal eye infections can lead to loss of vision and blindness. The disease is most prevalent in the tropics, although case numbers in moderate climates are increasing as well. This study aimed to determine the dominating filamentous fungi causing eye infections in Germany and their antifungal susceptibility profiles in order to improve treatment, including cases with unidentified pathogenic fungi. As such, we studied all filamentous fungi isolated from the eye or associated materials that were sent to the NRZMyk between 2014 and 2020. All strains were molecularly identified and antifungal susceptibility testing according to the EUCAST protocol was performed for common species. In total, 242 strains of 66 species were received. Fusarium was the dominating genus, followed by Aspergillus, Purpureocillium, Alternaria, and Scedosporium. The most prevalent species in eye samples were Fusarium petroliphilum, F. keratoplasticum, and F. solani of the Fusarium solani species complex. The spectrum of species comprises less susceptible taxa for amphotericin B, natamycin, and azoles, including voriconazole. Natamycin is effective for most species but not for Aspergillus flavus or Purpureocillium spp. Some strains of F. solani show MICs higher than 16 mg/L. Our data underline the importance of species identification for correct treatment. KW - eye infection KW - fungal infection KW - keratitis KW - antifungal susceptibility KW - natamycin KW - Fusarium KW - Purpureocillium KW - Aspergillus KW - Alternaria KW - Scedosporium Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241810 SN - 2309-608X VL - 7 IS - 7 ER - TY - JOUR A1 - Moremi, Nyambura A1 - Claus, Heike A1 - Vogel, Ulrich A1 - Mshana, Stephen E. T1 - Faecal carriage of CTX-M extended-spectrum beta-lactamase-producing Enterobacteriaceae among street children dwelling in Mwanza city, Tanzania JF - PLoS ONE N2 - Background Data on ESBL carriage of healthy people including children are scarce especially in developing countries. We analyzed the prevalence and genotypes of ESBL-producing Enterobacteriaceae (EPE) in Tanzanian street children with rare contact to healthcare facilities but significant interactions with the environment, animals and other people. Methodology/ Principle findings Between April and July 2015, stool samples of 107 street children, who live in urban Mwanza were analyzed for EPE. Intestinal carriage of EPE was found in 34 (31.8%, 95% CI; 22.7–40.3) children. Of the 36 isolates from 34 children, 30 (83.3%) were Escherichia coli (E. coli) and six Klebsiella pneumoniae (K. pneumoniae). Out of 36 isolates, 36 (100%), 35 (97%), 25 (69%) and 16 (44%) were resistant to tetracycline, trimethoprim-sulfamethoxazole, ciprofloxacin and gentamicin, respectively. Beta-lactamase genes and the multilocus sequence types of E. coli and K. pneumoniae were characterized. ESBL gene bla\(_{CTX-M-15}\) was detected in 75% (27/36) of ESBL isolates. Sequence types (STs) 131, 10, 448 and 617 were the most prevalent in E. coli. Use of local herbs (OR: 3.5, 95% CI: 1.51–8.08, P = 0.003) and spending day and night on streets (OR: 3.6, 95% CI: 1.44–8.97, P = 0.005) were independent predictors of ESBL carriage. Conclusions/ Significance We observed a high prevalence of bla\(_{CTX-M-15}\) in EPE collected from street children in Tanzania. Detection of E. coli STs 131, 10, 38 and 648, which have been observed worldwide in animals and people, highlights the need for multidisciplinary approaches to understand the epidemiology and drivers of antimicrobial resistance in low-income countries. KW - Tanzania KW - children KW - Enterobacteriaceae KW - ESBL Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170331 VL - 12 IS - 9 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 - 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 - TY - THES A1 - Schielke, Stephanie T1 - Functional and molecular characterization of FarR – a transcriptional regulator of the MarR family in Neisseria meningitidis T1 - Funktionelle und molekulare Charakterisierung von FarR, einem Transkriptionsregulator der MarR Familie in Neisseria meningitidis N2 - Neisseria meningitidis is a facultatively pathogenic human commensal and strictly adapted to its niche within the human host, the nasopharynx. Not much is known about the regulatory processes required for adaptation to this environment. Therefore the role of the transcriptional regulator NMB1843, one of the two predicted regulators of the MarR family in the meningococcal genome, was investigated. As this gene displayed a high sequence homology to FarR, the Fatty acid resistance Regulator in N. gonorrhoeae, we designated the meningococcal protein FarR (NmFarR). Homology modeling of this protein revealed a dimeric structure with the characteristic winged helix-turn-helix DNA binding motif of the MarR family. NmFarR is highly conserved among meningococcal strains and expression of farR during exponential growth is controlled post-transcriptionally, being highest in the late exponential phase. By means of electrophoretic mobility shift assays (EMSAs) the direct and specific binding of FarR to the farAB promoter region was shown, comparable to its homologue in gonococci. As FarR is involved in fatty acid resistance in N. gonorrhoeae, susceptibility assays with the medium chain lauric acid (C12:0), the long chain saturated palmitic acid (C16:0) and the long chain unsaturated linoleic acid (C18:2) were performed, testing a wide variety of strains of both species. In contrast to the unusually susceptible gonococci, a high intrinsic fatty acid resistance was detected in almost all meningococcal isolates. The molecular basis for this intrinsic resistance in N. meningitidis was elucidated, showing that both a functional FarAB efflux pump system as well as an intact lipopolysaccharide (LPS) are responsible for palmitic acid resistance. However, even despite circumvention of the intrinsic resistance, FarR could not be connected with fatty acid resistance in meningococci. Instead, FarR was shown to directly and specifically repress expression of the Neisseria adhesin A (nadA), a promising vaccine candidate absent in N. gonorrhoeae. Microarray analyses verified these results and disclosed no further similarly regulated genes, rendering the FarR regulon the smallest regulon in meningococci reported until now. The exact FarR binding site within the nadA promoter region was identified as a 16 bp palindromic repeat and its influence on nadA transcription was proved by reporter gene fusion assays. This repression was also shown to be relevant for infection as farR deficient mutant strains displayed an increased attachment to epithelial cells. Furthermore, farR transcription was attested to be repressed upon contact with active complement components within human serum. Concluding, it is shown that FarR adopted a role in meningococcal host niche adaptation, holding the balance between immune evasion by repressing the highly antigenic nadA and host cell attachment via this same adhesin. N2 - Neisseria meningitidis ist ein fakultativ pathogener menschlicher Kommensale und eng an die Bedingungen seiner spezifischen Nische, den Nasopharynx, angepasst. Über die regulatorischen Mechanismen, die für diese Anpassung vonnöten sind, ist nicht viel bekannt. Daher wurde die Rolle des Transkriptionsregulators NMB1843 untersucht, eines der beiden prognostizierten Regulatoren der MarR Familie im Meningokokken-Genom. Aufgrund einer hohen Sequenzhomologie dieses Gens zu FarR, dem Fatty acid resistance Regulator in N. gonorrhoeae, nannten wir das Meningokokken-Protein ebenfalls FarR (NmFarR). Homologie-Modellierung dieses Proteins ergab eine dimere Struktur mit dem charakteristischen winged helix-turn-helix DNA-Bindemotiv der MarR Familie. Es wurde gezeigt, dass NmFarR in Meningokokken-Stämmen hochkonserviert ist. Die Expression von farR wird während des exponentiellen Wachstums posttranskriptional kontrolliert und erreicht ihren Höchststand in der spätexponentiellen Phase. Wie bei seinem Homolog in Gonokokken konnte die direkte und spezifische Bindung von FarR an die farAB Promotorregion nachgewiesen werden. Da FarR in N. gonorrhoeae an der Fettsäureresistenz beteiligt ist, wurde die Suszeptibilität einer großen Auswahl von Stämmen beider Spezies gegenüber drei unterschiedlichen Fettsäuren getestet: Laurinsäure (C12:0), Palmitinsäure (C16:0) und Linolsäure (C18:2). Im Gegensatz zu den ungewöhnlich sensitiven Gonokokken konnte eine hohe inhärente Fettsäureresistenz in fast allen Meningokokken-Isolaten beobachtet werden. Nach Analyse der molekularen Grundlage dieser Resistenz konnte gezeigt werden, dass sowohl eine funktionale FarAB Efflux-Pumpe als auch ein intaktes Lipopolysaccharid (LPS) für die Palmitinsäureresistenz verantwortlich sind. Trotz Umgehung der inhärenten Resistenz konnte keine Verbindung von FarR mit Fettsäureresistenz in Meningokokken hergestellt werden. Stattdessen reprimiert FarR direkt und spezifisch die Expression des Neisseria Adhäsins A (nadA), eines vielversprechenden Impfstoffbestandteils. Microarrays bestätigten diese Ergebnisse, zeigten aber keine weiteren ähnlich regulierten Gene auf. Somit ist das FarR-Regulon das bisher kleinste Regulon in Meningokokken. Die genaue FarR-Bindestelle innerhalb des nadA Promotors wurde als ein 16 bp Palindrom identifiziert und dessen Einfluss auf die Transkription von nadA mittels Reportergenanalysen gezeigt. Auch in Infektionsversuchen wurde die Relevanz dieser Repression deutlich, da ein farR-deletierter Stamm eine höhere Adhärenz an Epithelzellen aufwies. Die Transkription von farR sank nach Kontakt mit aktiven Komplementbestandteilen aus humanem Serum. Zusammenfassend wurde gezeigt, dass FarR eine Rolle in der Nischenadaptation von Meningokokken zukommt, indem er zwischen Immunevasion durch Repression des hoch-immunogenen nadA und Wirtszelladhäsion durch eben dieses Adhäsin vermittelt. KW - Transkription KW - Neisseria gonorrhoeae KW - Neisseria meningitidis KW - Adhäsine KW - FarR KW - Transkriptionsregulation KW - NadA KW - Neisseria meningitdis KW - transcriptional regulation KW - FarR KW - Neisseria gonorrhoeae KW - niche adaptation Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-48550 ER - TY - THES A1 - Pawlik, Marie-Christin T1 - Gene expression in the human pathogen Neisseria meningitidis: Adaptation to serum exposure and zinc limitation T1 - Genexpression im humanen Pathogen Neisseria meningitidis: Adaptation an Serumexposition und Zinkmangel N2 - Neisseria meningitidis is a facultative human pathogen that occasionally shows strong resistance against serum complement exposure. Previously described factors that mediate meningococcal serum resistance are for example the capsule, LPS sialylation, and expression of the factor H binding protein. I aimed for identification of novel serum resistance factors, thereby following two approaches, i) the analysis of the impact of global regulators of gene expression on serum resistance; and ii) a comparative analysis of closely related strains differing in serum resistance. (i) Of six meningococcal global regulators of gene expression studied, only mutation of the zinc uptake regulator Zur reduced complement deposition on meningococci. Little was known about meningococcal Zur and regulatory processes in response to zinc. I therefore elucidated the yet unidentified meningococcal Zur regulon comparing the transcriptional response of the N. meningitidis strain MC58 under zinc-rich and zinc-deficient conditions using a common reference design of microarray analysis. The meningococcal Zur regulon comprises 17 genes, of which 15 genes were repressed and two genes were activated at high zinc condition. Amongst the Zur-repressed genes were genes involved in zinc uptake, tRNA modification, and ribosomal assembly. A 23 bp meningococcal consensus Zur binding motif (Zur box) with a conserved central palindrome was established (TGTTATDNHATAACA) and detected in the promoter region of all regulated transcriptional units (genes/operons). In vitro binding of meningococcal Zur to the Zur box of three selected genes was shown for the first time using EMSAs. Binding of meningococcal Zur to DNA depended specifically on zinc, and mutations in the palindromic sequence constrained Zur binding to the DNA motif. ii) Three closely related strains of ST-41/44 cc from invasive disease and carriage which differed in their resistance to serum complement exposure were analysed to identify novel mediators of serum resistance. I compared the strains’ gene content by microarray analysis which revealed six genes being present in both carrier isolates, but absent in the invasive isolate. Four of them are part of two Islands of horizontally transferred DNA, i.e. IHT-B and –C. The working group furthermore applied a comprehensive screening assay, a transcriptome and a proteome analysis leading to identification of three target proteins. I contributed to establish the role of these three proteins in serum resistance: The adhesin Opc mediates serum resistance by binding of vitronectin, a negative regulator of the complement system; the hypothetical protein NMB0865 slightly contributes to serum resistance by a yet unknown mechanism; and NspA, recently identified to bind the negative complement regulator factor H, led to considerable reduced complement-mediated killing. N2 - Neisseria meningitidis ist ein fakultatives Humanpathogen, welches mitunter sehr resistant gegenüber Serumkomplement-Exposition ist. Bereits beschriebene Faktoren, welche die Serumresistenz von Meningokokken fördern, sind beispielsweise die Kapsel, LPS-Sialylierung und Expression des fH-bindenden Proteins. Das Ziel dieser Arbeit war die Identifikation neuartiger Serumresistenzfaktoren, wobei ich zwei Ansätzen verfolgte: i) Die Analyse des Einflusses von globalen Regulatoren der Genexpression auf die Serumresistenz; und ii) eine vergleichenden Analyse von eng verwandten Stämmen, die sich hinsichtlich ihrer Serumresistanz unterschieden. i) Von sechs untersuchten globalen Regulatoren der Genexpression, war die Komplementdeposition auf Meningokokken nur nach Mutation des Regulators der Zinkaufnahme, Zur, reduziert. Über Zur selbst und die regulatorischen Prozesse in Reaktion auf Zink war in Meningokokken wenig bekannt. Ich habe daher das bisher nicht bestimmte Zur-Regulon von Meningokokken aufgeklärt, wofür ich mittels Mikroarrays die transkriptionelle Antwort des N. meningitidis-Stammes MC58 unter Zink-Überfluss und Zink-Mangel zu vergleichen. Das Zur-Regulon von Meningokokken umfasst 17 Gene, von denen unter Zinküberfluss 15 reprimiert und zwei aktiviert wurden. Unter den Zur-reprimierten Genen fanden sich Gene, die in die Aufnahme von Zink, die Modikation von tRNAs und den Zusammenbau des Ribosoms involviert sind. Ein 23 bp langes Binde-Konsensusmotiv für Meningokokken-Zur (Zur-Box) mit einem konservierten zentralen Palindrom wurde ermittelt (TGTTATDNHATAACA) und in der Promotorregion aller regulierten Transkriptionseinheiten (Gene/Operons) detektiert. In vitro-Bindung des N. meningitidis Zur an die Zur-Box dreier ausgewählter Genen konnte mittels EMSAs erstmals gezeigt werden. Die Bindung von Zur an DNA war spezifisch abhängig von Zink, und Mutationen in der palindromischen Sequenz hemmten die Zur-Bindung an das DNA-Motiv. ii) Drei eng verwandte Stämme des ST-41/44-Komplexes aus invasiver Erkrankung und Trägertum, die sich in ihrer Resistenz gegenüber Serumkomplement-Exposition unterschieden, wurden analysiert um neuartige Mediatoren der Serumresistenz zu identifizieren. Der Gengehalt der Stämme wurde mittels Mikroarray-Analyse verglichen. Dies offenbarte sechs Gene, die in den beiden Trägerstämmen vorhanden, aber in dem invasiven Isolat abwesend waren. Vier dieser Gene liegen innerhalb zweier Inseln horizontal transferierter DNA, d.h. IHT-B und –C. Weiterhin führte die Arbeitsgruppe eine Transkriptom- und Proteom-Analyse der drei Stämme sowie einen umfangsreichen Screening-Assay durch. Diese Ansätze führten zur Identifikation dreier Kandidaten-Proteine für die weitere Analyse. Ich wirkte daran mit, die Rolle dieser Proteine für die Serumresistenz von Meningokokken zu ermitteln: Das Adhäsin Opc vermittelt Serumresistenz durch Bindung von Vitronektin, einem negativen Regulator des Komplementsystems; das hypothetische Protein NMB0865 trägt über einen bisher unbekannten Mechanismus geringfügig zur Serumresistanz bei; und NspA, für welches vor Kurzem erkannt wurde, dass es den negativen Komplementregulator Faktor H bindet, führte zu beträchtlich reduzierter Abtötung durch Komplement. KW - Komplement KW - Neisseria meningitidis KW - Genregulation KW - Zinkmangel KW - Serumresistenz KW - Meningokokken KW - globale Regulatoren KW - Serum KW - Bakterien KW - Zink KW - serum resistance KW - meningococci KW - global regulators KW - zinc limitation Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-78758 ER - TY - THES A1 - Herz, Michaela T1 - Genome wide expression profiling of Echinococcus multilocularis T1 - Genomweite Expressionsanalysen von Echinococcus multilocularis N2 - Alveolar echinococcosis, which is caused by the metacestode stage of the small fox tapeworm Echinococcus multilocularis, is a severe zoonotic disease with limited treatment options. For a better understanding of cestode biology the genome of E. multilocularis, together with other cestode genomes, was sequenced previously. While a few studies were undertaken to explore the E. multilocularis transcriptome, a comprehensive exploration of global transcription profiles throughout life cycle stages is lacking. This work represents the so far most comprehensive analysis of the E. multilocularis transcriptome. Using RNA-Seq information from different life cycle stages and experimental conditions in three biological replicates, transcriptional differences were qualitatively and quantitatively explored. The analyzed datasets are based on samples of metacestodes cultivated under aerobic and anaerobic conditions as well as metacestodes obtained directly from infected jirds. Other samples are stem cell cultures at three different time points of development as well as non-activated and activated protoscoleces, the larval stage that can develop into adult worms. In addition, two datasets of metacestodes under experimental conditions suitable for the detection of genes that are expressed in stem cells, the so-called germinative cells, and one dataset from a siRNA experiment were analyzed. Analysis of these datasets led to expression profiles for all annotated genes, including genes that are expressed in the tegument of metacestodes and play a role in host-parasite interactions and modulation of the host's immune response. Gene expression profiles provide also further information about genes that might be responsible for the infiltrative growth of the parasite in the liver. Furthermore, germinative cell-specific genes were identified. Germinative cells are the only proliferating cells in E. multilocularis and therefore of utmost importance for the development and growth of the parasite. Using a combination of germinative cell depletion and enrichment methods, genes with specific expression in germinative cells were identified. As expected, many of these genes are involved in translation, cell cycle regulation or DNA replication and repair. Also identified were transcription factors, many of which are involved in cell fate commitment. As an example, the gene encoding the telomerase reverse transcriptase (TERT) was studied further. Expression of E. multilocularis tert in germinative cells was confirmed experimentally. Cell culture experiments indicate that TERT is required for proliferation and development of the parasite, which makes TERT a potentially interesting drug target for chemotherapy of alveolar echinococcosis. Germinative cell specific genes in E. multilocularis also include genes of densoviral origin. More than 20 individual densovirus loci with information for non-structural and structural densovirus proteins were identified in the E. multilocularis genome. Densoviral elements were also detected in many other cestode genomes. Genomic integration of these elements suggests that densovirus-based vectors might be suitable tools for genetic manipulation of tapeworms. Interestingly, only three of more than 20 densovirus loci in the E. multilocularis genome are expressed. Since the canonical piRNA pathway is lacking in cestodes, this raises the question about potential silencing mechanisms. Exploration of RNA-Seq information indicated natural antisense transcripts as a potential gene regulation mechanism in E. multilocularis. Preliminary experiments further suggest DNA-methylation, which was previously shown to occur in platyhelminthes, as an interesting avenue to explore in future. The transcriptome datasets also contain information about genes that are expressed in differentiated cells, for example the serotonin transporter gene that is expressed in nerve cells. Cell culture experiments indicate that serotonin and serotonin transport play an important role in E. multilocularis proliferation, development and survival. Overall, this work provides a comprehensive transcription data atlas throughout the E. multilocularis life cycle. Identification of germinative cell-specific genes and genes important for host-parasite interactions will greatly facilitate future research. A global overview of gene expression profiles will also aide in the detection of suitable drug targets and the development of new chemotherapeutics against alveolar echinococcosis. N2 - Alveoläre Echinokokkose wird durch das Metazestodenstadium des kleinen Fuchsbandwurms Echinococcus multilocularis verursacht und medizinisch als eine schwere Zoonose mit begrenzten Behandlungsmöglichkeiten betrachtet. Um ein besseres Verständnis für die Biologie der Zestoden zu erlangen, wurde das Genom von E. multilocularis, zusammen mit denen anderer Zestoden, bereits sequenziert. Bisher wurden nur wenige Studien zum Transkriptom von E. multilocularis durchgeführt und eine umfassende Analyse der Transkriptionsprofile über verschiedene Stadien des Lebenszyklus hinweg fehlt bislang. Diese Arbeit stellt die bisher umfassendste Untersuchung des Transkriptoms von E. multilocularis dar. Unterschiede in der Genexpression in verschiedenen Stadien des Lebenszyklus und unter experimentellen Bedingungen wurden qualitativ und quantitativ untersucht. Dazu wurden Daten aus RNA-Sequenzierungen in drei biologischen Replikaten verwendet. Die untersuchten Datensätze beruhen auf Proben von Metazestoden, die unter aeroben und anaeroben Bedingungen kultiviert, sowie von Metazestoden, die direkt aus Gerbilen isoliert wurden. Weitere Proben umfassen Stammzellkulturen zu drei verschiedenen Entwicklungszeitpunkten sowie nicht-aktivierte und aktivierte Protoskolizes, das Larvenstadium das sich zu Adulten entwickeln kann. Zusätzlich wurden zwei Datensätze von Metazestoden unter experimentellen Bedingungen, die zur Identifizierung stammzellspezifischer (keimzellspezifischer) Gene geeignet sind, sowie ein Datensatz von einem siRNA-Experiment untersucht. Die Analyse dieser Datensätze führte zu Genexpressionsprofilen für alle annotierten Gene, unter anderem für Gene, die im Tegument des Metazestoden exprimiert werden und eine Rolle spielen bei Wirt-Parasit-Interaktionen und der Modulierung der Immunantwort des Wirts. Genexpressionsprofile liefern zudem Informationen über Gene, die für das infiltrative Wachstum des Parasiten in der Leber verantwortlich sein könnten. Des Weiteren wurden keimzellspezifische Gene identifiziert. Keimzellen sind die einzigen proliferierenden Zellen in E. multilocularis und daher von essentieller Bedeutung für die Entwicklung und das Wachstum des Parasiten. Durch eine Kombination von Keimzelldepletierungs- und Keimzellanreicherungsverfahren wurden Gene mit keimzellspezifischer Expression identifiziert. Wie erwartet, sind viele dieser Gene in der Translation, der Zellzyklusregulation oder DNA-Replikation und –Reparatur involviert. Darüber hinaus wurden keimzellspezifisch exprimierte Transkriptionsfaktoren detektiert, von denen viele in der Festlegung des Zellschicksals eine Rolle spielen. Als Beispiel eines keimzellspezifischen Genes wurde das Gen, das für die reverse Transkriptase (TERT) kodiert, genauer untersucht. Die Expression von E. multilocularis tert in Keimzellen wurde experimentell bestätigt. Zellkulturexperimente weisen darauf hin, dass TERT für die Proliferation und die Entwicklung essentiell ist. TERT ist daher ein potentiell interessantes Wirkstofftarget für die chemotherapeutische Behandlung der alveolären Echinokokkose. Zu den keimzellspezifischen Genen in E. multilocularis gehören auch Gene densoviralen Ursprungs. Es wurden mehr als 20 Densovirusloci mit Informationen für nicht-strukturelle und strukturelle Densovirusproteine im E. multilocularis-Genom identifiziert. Densovirale Elemente wurden auch in vielen anderen Zestodengenomen detektiert. Die genomische Integration dieser Elemente deutet darauf hin, dass densovirus-basierte Vektoren zur genetischen Manipulation von Zestoden geeignet sein könnten. Interessanterweise sind nur drei von mehr als 20 Densovirusloci im E. multilocularis-Genom exprimiert. Da es in Zestoden keinen kanonischen piRNA-Signalweg gibt, stellt sich die Frage nach möglichen Genabschaltungsmechanismen. Die Analyse der RNA-Sequenzierdaten ergab Hinweise auf natürliche Antisense-Transkripte als einen möglichen Genregulationsmechanismus in E. multilocularis. Vorläufige Experimente und bisherige Studien deuten weiterhin darauf hin, dass DNA-Methylierung ein Mechanismus der Genregulation und -abschaltung in Zestoden sein könnte. Die Transkriptionsdaten enthalten auch Informationen zu Genen, die in differenzierten Zellen exprimiert werden, wie zum Beispiel das Serotonintransportergen, das in Nervenzellen exprimiert wird. Zellkulturversuche weisen darauf hin, dass Serotonin und Serotonintransport eine wichtige Rolle bei der Proliferation, der Entwicklung und dem überleben von E. multilocularis spielen. Insgesamt bietet diese Arbeit einen umfassenden Transkriptionsdatenatlas über die Stadien des Lebenszyklus von E. multilocularis. Die Identifizierung von keimzellspezifischen Genen und Genen, die für die Interaktion zwischen Wirt und Parasit wichtig sind, wird die zukünftige Forschung erheblich erleichtern. Ein globaler Überblick über die Genexpressionsprofile wird zudem hilfreich sein bei der Entdeckung geeigneter Wirkstofftargets und bei der Entwicklung neuer Chemotherapeutika gegen die alveoläre Echinokokkose. KW - Fuchsbandwurm KW - Serotonin KW - Telomerase KW - Stammzelle KW - Transkriptomanalyse KW - foxtapeworm KW - transcriptome data analysis KW - germinative cell Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-203802 ER - TY - JOUR A1 - Nyawale, Helmut A. A1 - Moremi, Nyambura A1 - Mohamed, Mohamed A1 - Njwalila, Johnson A1 - Silago, Vitus A1 - Krone, Manuel A1 - Konje, Eveline T. A1 - Mirambo, Mariam M. A1 - Mshana, Stephen E. T1 - High seroprevalence of SARS-CoV-2 in Mwanza, northwestern Tanzania: a population-based survey JF - International Journal of Environmental Research and Public Health N2 - The transmission of the SARS-CoV-2 virus, which causes COVID-19, has been documented worldwide. However, the evidence of the extent to which transmission has occurred in different countries is still to be established. Understanding the magnitude and distribution of SARS-CoV-2 through seroprevalence studies is important in designing control and preventive strategies in communities. This study investigated the seropositivity of the SARS-CoV-2 virus antibodies in the communities of three different districts in the Mwanza region, Tanzania. A household cross-sectional survey was conducted in September 2021 using the modified African Centre for Disease and Prevention (ACDC) survey protocol. A blood sample was obtained from one member of each of the selected households who consented to take part in the survey. Immunochromatographic rapid test kits were used to detect IgM and IgG SARS-CoV-2 antibodies, followed by descriptive data analysis. Overall, 805 participants were enrolled in the study with a median age of 35 (interquartile range (IQR):27–47) years. The overall SARS-CoV-2 seropositivity was 50.4% (95%CI: 46.9–53.8%). The IgG and IgM seropositivity of the SARS-CoV-2 antibodies was 49.3% and 7.2%, respectively, with 6.1% being both IgG and IgM seropositive. A history of runny nose (aOR: 1.84, 95%CI: 1.03–3.5, p = 0.036), loss of taste (aOR: 1.84, 95%CI: 1.12–4.48, p = 0.023), and living in Ukerewe (aOR: 3.55, 95%CI: 1.68–7.47, p = 0.001) and Magu (aOR: 2.89, 95%CI: 1.34–6.25, p= 0.007) were all independently associated with SARS-CoV-2 IgM seropositivity. Out of the studied factors, living in the Ukerewe district was independently associated with IgG seropositivity (aOR 1.29, CI 1.08–1.54, p = 0.004). Twenty months after the first case of COVID-19 in Tanzania, about half of the studied population in Mwanza was seropositive for SARS-CoV-2. KW - SARS-CoV-2 KW - COVID-19 KW - seroprevalence KW - antibodies KW - Mwanza KW - Tanzania Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288134 SN - 1660-4601 VL - 19 IS - 18 ER - TY - JOUR A1 - Wurmb, Thomas A1 - Scholtes, Katja A1 - Kolibay, Felix A1 - Schorscher, Nora A1 - Ertl, Georg A1 - Ernestus, Ralf-Ingo A1 - Vogel, Ulrich A1 - Franke, Axel A1 - Kowalzik, Barbara T1 - Hospital preparedness for mass critical care during SARS-CoV-2 pandemic JF - Critical Care N2 - Mass critical care caused by the severe acute respiratory syndrome corona virus 2 pandemic poses an extreme challenge to hospitals. The primary goal of hospital disaster preparedness and response is to maintain conventional or contingency care for as long as possible. Crisis care must be delayed as long as possible by appropriate measures. Increasing the intensive care unit (ICU) capacities is essential. In order to adjust surge capacity, the reduction of planned, elective patient care is an adequate response. However, this involves numerous problems that must be solved with a sense of proportion. This paper summarises preparedness and response measures recommended to acute care hospitals. KW - Mass critical care KW - Disaster response KW - SARS-CoV-2 KW - Hospital emergency plan Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230201 VL - 24 ER - TY - JOUR A1 - Brehm, Klaus A1 - Hemer, Sarah A1 - Konrad, Christian A1 - Spiliotis, Markus A1 - Koziol, Uriel A1 - Schaack, Dominik A1 - Förster, Sabine A1 - Gelmedin, Verena A1 - Stadelmann, Britta A1 - Dandekar, Thomas A1 - Hemphill, Andrew T1 - Host insulin stimulates Echinococcus multilocularis insulin signalling pathways and larval development N2 - Background The metacestode of the tapeworm Echinococcus multilocularis is the causative agent of alveolar echinococcosis, a lethal zoonosis. Infections are initiated through establishment of parasite larvae within the intermediate host’s liver, where high concentrations of insulin are present, followed by tumour-like growth of the metacestode in host organs. The molecular mechanisms determining the organ tropism of E. multilocularis or the influences of host hormones on parasite proliferation are poorly understood. Results Using in vitro cultivation systems for parasite larvae we show that physiological concentrations (10 nM) of human insulin significantly stimulate the formation of metacestode larvae from parasite stem cells and promote asexual growth of the metacestode. Addition of human insulin to parasite larvae led to increased glucose uptake and enhanced phosphorylation of Echinococcus insulin signalling components, including an insulin receptor-like kinase, EmIR1, for which we demonstrate predominant expression in the parasite’s glycogen storage cells. We also characterized a second insulin receptor family member, EmIR2, and demonstrated interaction of its ligand binding domain with human insulin in the yeast two-hybrid system. Addition of an insulin receptor inhibitor resulted in metacestode killing, prevented metacestode development from parasite stem cells, and impaired the activation of insulin signalling pathways through host insulin. Conclusions Our data indicate that host insulin acts as a stimulant for parasite development within the host liver and that E. multilocularis senses the host hormone through an evolutionarily conserved insulin signalling pathway. Hormonal host-parasite cross-communication, facilitated by the relatively close phylogenetic relationship between E. multilocularis and its mammalian hosts, thus appears to be important in the pathology of alveolar echinococcosis. This contributes to a closer understanding of organ tropism and parasite persistence in larval cestode infections. Furthermore, our data show that Echinococcus insulin signalling pathways are promising targets for the development of novel drugs. KW - Cestode KW - Tapeworm KW - Echinococcus KW - Echinococcosis KW - Insulin KW - Receptor kinase KW - Kinase inhibitor KW - Host-parasite interaction Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110357 ER - TY - JOUR A1 - Doran, Kelly S. A1 - Fulde, Marcus A1 - Gratz, Nina A1 - Kim, Brandon J. A1 - Nau, Roland A1 - Prasadarao, Nemani A1 - Schubert-Unkmeir, Alexandra A1 - Tuomanen, Elaine I. A1 - Valentin-Weigand, Peter T1 - Host-pathogen interactions in bacterial meningitis JF - Acta Neuropathologica N2 - Bacterial meningitis is a devastating disease occurring worldwide with up to half of the survivors left with permanent neurological sequelae. Due to intrinsic properties of the meningeal pathogens and the host responses they induce, infection can cause relatively specific lesions and clinical syndromes that result from interference with the function of the affected nervous system tissue. Pathogenesis is based on complex host-pathogen interactions, some of which are specific for certain bacteria, whereas others are shared among different pathogens. In this review, we summarize the recent progress made in understanding the molecular and cellular events involved in these interactions. We focus on selected major pathogens, Streptococcus pneumonia, S. agalactiae (Group B Streptococcus), Neisseria meningitidis, and Escherichia coli K1, and also include a neglected zoonotic pathogen, Streptococcus suis. These neuroinvasive pathogens represent common themes of host-pathogen interactions, such as colonization and invasion of mucosal barriers, survival in the blood stream, entry into the central nervous system by translocation of the blood-brain and blood-cerebrospinal fluid barrier, and induction of meningeal inflammation, affecting pia mater, the arachnoid and subarachnoid spaces. KW - microvascular endothelial cells KW - outer membrane protein KW - Neuroinfectiology KW - Bacterial meningitis KW - Pneumococci KW - Meningococci KW - Group B Streptococcus KW - Streptococcus suis KW - Escherichia coli K1 Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-191034 VL - 131 IS - 2 ER - TY - THES A1 - Nono, Justin T1 - Immunomodulation through Excretory/Secretory Products of the parasitic Helminth Echinococcus multilocularis T1 - Immunmodulation durch Exkretorisch/Sekretorischen Produkten der parasitären Helminthen Echinococcus multilocularis N2 - Die Alveoläre Echinokokkose (AE) ist eine lebensbedrohliche Zoonose, die durch das Metazestoden-Larvenstadium des Fuchsbandwurms Echinococcus multilocularis ausgelöst wird. Nach Eintritt des Parasiten in den Zwischenwirt wird zunächst eine potentiell anti-parasitische, Th1-dominierte Immunantwort ausgelöst, welche anschließend in der chronischen Phase graduell durch eine permissive, Th2-dominierte Antwort ersetzt wird. Als Ergebnis einer zugrunde liegenden Immunmodulation durch den Parasiten können Echinococcus-Larven für Jahre bis Jahrzehnte im Wirt persistieren und verhalten sich ähnlich einem perfekt transplantierten Organ. Über die molekulare Basis der Immunmodulation durch den Parasiten ist derzeit wenig bekannt. In dieser Arbeit wurden geeignete Kultursysteme für verschiedene E. multilocularis Larvenstadien verwendet, um den Einfluss exkretorisch/sekretorischer Metaboliten (E/S-Produkte) auf Wirts-Immuneffektor-Zellen zu studieren. E/S-Produkte kultivierter Larven, die die frühe (Primärzellen) und chronische (Metazestode) Phase der Infektion repräsentieren induzierten Apoptose und tolerogene Eigenschaften in Dendritischen Zellen (DC) des Wirts, während solche von Kontroll-Larven (Protoskolizes) keine derartigen Effekte zeigten. Dies zeigt, dass die frühen infektiösen Stadien von E. multilocularis in DC ein tolerierendes Milieu erzeugen, welches sehr wahrscheinlich die initiale Etablierung des Parasiten in einer Phase begünstigt, in der er höchst sensitiv gegenüber Wirtsangriffen ist. Interessanterweise förderten E/S-Produkte des Metazestoden in vitro die Konversion von CD4+ T-Zellen in Foxp3+, regulatorische T-Zellen (Treg) während E/S-Produkte von Primärzellen oder Protoskolizes dies nicht vermochten. Da Foxp3+ Tregs generell als immunosuppressorisch bekannt sind, deuten diese Daten an, dass der Metazestode aktiv eine Induktion von Tregs herbeiführt, um eine permissive Immunsuppression während einer Infektion zu erreichen. Eine substantielle Zunahme von Anzahl und Frequenz Foxp3+ Tregs konnte zudem in Peritoneal-Exsudaten von Mäuuen nach intraperitonealer Injektion von Parasitengewebe gemessen werden, was anzeigt, dass eine Expansion von Foxp3+ Tregs auch während der in vivo Infektion von Bedeutung ist. Interessanterweise konnte in dieser Arbeit ein Activin-Orthologes des Parasiten, EmACT, identifiziert werden, weleches vom Metazestoden sekretiert wird und ähnlich wie humanes Activin in der Lage ist, eine TGF-β-abhängige Expansion von Tregs in vitro zu induzieren. Dies zeigt an, dass E. multilocularis evolutionsgeschichtlich konservierte Zytokine nutzt, um aktiv die Wirts-Immunantwort zu beeinflussen. Zusammenfassend deuten die gewonnenen Daten auf eine wichtige Rolle Foxp3+ Tregs, welche u.a. durch EmACT induziert werden, im immunologischen geschehen der AE hin. Ein weiterer Parasiten-Faktor, EmTIP, mit signifikanten Homologien zum T-cell Immunomodulatory Protein (TIP) des Menschen wurde in dieser Arbeit näher charakterisiert. EmTIP konnte in der E/S-Fraktion von Primärzellen nachgewiesen werden und induzierte die Freisetzung von IFN-γ in CD4+ T-Helferzellen. Durch Zugabe von anti-EmTIP-Antikörpern konnte zudem die Entwicklung des Parasiten zum Metazestoden in vitro gehemmt werden. EmTIP dürfte daher einerseits bei der frühen Parasiten-Entwicklung im Zwischenwirt eine Rolle spielen und könnte im Zuge dessen auch die Ausprägung der frühen, Th-1-dominierten Immunantwort während der AE begünstigen. Zusammenfassend wurden in dieser Arbeit zwei E. multilocularis E/S-Faktoren identifiziert, EmACT und EmTIP, die ein hohes immunmodulatorisches Potential besitzen. Die hier vorgestellten Daten liefern neue, fundamentale Einsichten in die molekularen Mechanismen der Parasiten-induzierten Immunmodulation bei der AE und sind hoch relevant für die Entwicklung anti-parasitischer Immuntherapien. N2 - Alveolar echinococcosis (AE) is a severe and life-threatening disease caused by the metacestode larva of the fox-tapeworm Echinococcus multilocularis. Parasite entry into the host evokes an early and potentially parasiticidal Th1 immune response that is gradually replaced by a permissive Th2 response. An immunoregulatory environment has also been reported in the host as the disease progresses. As a result of immunomodulation, E. multilocularis larvae persist in the host for decades without being expelled, and thus almost act like a perfect transplant. Very little is currently known on the molecular basis of the host immunomodulation by E. multilocularis. In this work, in vitro cultivation systems were used to assess the influence of metabolites released by the parasite larvae (E/S products) on host immune effector cells. E/S products of cultivated larvae that respresent the early (primary cells) and chronic (metacestode vesicles) phase of AE induced apoptosis and tolerogenic properties (poor responsiveness to LPS stimulation) in host dendritic cells (DC) whereas those of control larvae (protoscoleces) failed to do so. These findings show that the early infective stage of E. multilocularis induces tolerogenicity in host DC, which is most probably important for generating an immunosuppressive environment at an infection phase in which the parasite is highly vulnerable to host attacks. Interestingly, metacestode E/S products promoted the conversion of naïve CD4+ T-cells into Foxp3+ regulatory T-cells in vitro, whereas primary cell and protoscolex E/S products failed to do it. Since Foxp3+ regulatory T-cells are generally known to mediate immunosuppression, the present finding indicates that Foxp3+ regulatory T-cells, expanded by E/S products of the metacestode larva, could play a role in the parasite-driven immunomodulation of the host observed during AE. Furthermore, a substantial increase in number and frequency of suppressive Foxp3+ regulatory T-cells could be observed within peritoneal exudates of mice following intraperitoneal injection of E. multilocularis metacestodes, indicating that Foxp3+ regulatory T-cells could also play an important role in E. multilocularis-driven immunomodulation in vivo. Interestingly, a parasite activin ortholog, EmACT, secreted by metacestodes, was shown to expand host regulatory T-cells in a TGF-β-dependent manner, similarly to mammalian activin A. This observation indicated that E. multilocularis utilizes evolutionarily conserved TGF-β superfamily ligands, like EmACT, to expand host regulatory T-cells. Taken together, the present findings suggest EmACT, a parasite activin secreted by the metacestode and capable of expanding host regulatory T-cells, as an important player in the host immunomodulation by E. multilocularis larvae. Another parasite factor EmTIP, homologous to mammalian T-cell immunomodulatory protein (TIP) was characterized in this work. EmTIP could be detected in the secretions of the parasite primary cells and localized to the intercellular space within the parasite larvae. EmTIP blockade inhibited the proliferation of E. multilocularis primary cells and the formation of metacestode vesicles indicating a major role for parasite development. Furthermore, EmTIP evoked a strong release of IFN-γ by CD4+ T-cells hence suggesting that the secretion of this factor as a result of its role in parasite development could “secondarily” induce a potentially protective Th1 response. In conclusion, this work identified two molecules, EmACT and EmTIP, with high immunomodulatory potential that are released by E. multilocularis larvae. The data presented do provide insights into the mechanisms of parasite-driven host immunomodulation during AE that are highly relevant for the development of anti-parasitic immune therapies. KW - Immunmodulation KW - Fuchsbandwurm KW - Regulatorischer T-Lymphozyt KW - Dendritische Zelle KW - Immunomodulation KW - Helminths KW - Tapeworm KW - Echinococcus KW - Regulatory T-cell KW - Dendritic cell KW - Würmer Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-85449 ER - TY - JOUR A1 - Brehony, Carina A1 - Trotter, Caronline L. A1 - Ramsay, Mary E. A1 - Chandra, Manosree A1 - Jolley, Keith A. A1 - van der Ende, Arie A1 - Carion, Françoise A1 - Berthelsen, Lene A1 - Hoffmann, Steen A1 - Harðardóttir, Hjördís A1 - Vazques, Julio A. A1 - Murphy, Karen A1 - Toropainen, Maija A1 - Caniça, Manuela A1 - Ferreira, Eugenia A1 - Diggle, Mathew A1 - Edwards, Giles F. A1 - Taha, Muhamed-Kheir A1 - Stefanelli, Paola A1 - Kriz, Paula A1 - Gray, Steve J. A1 - Fox, Andrew J. A1 - Jacobsson, Susanne A1 - Claus, Heike A1 - Vogel, Ulrich A1 - Tzanakaki, Georgina A1 - Heuberger, Sigrid A1 - Caugant, Dominique A. A1 - Frosch, Matthias A1 - Maiden, Martin C. J. T1 - Implications of Differential Age Distribution of Disease-Associated Meningococcal Lineages for Vaccine Development JF - Clinical and Vaccine Immunology : CVI N2 - New vaccines targeting meningococci expressing serogroup B polysaccharide have been developed, with some being licensed in Europe. Coverage depends on the distribution of disease-associated genotypes, which may vary by age. It is well established that a small number of hyperinvasive lineages account for most disease, and these lineages are associated with particular antigens, including vaccine candidates. A collection of 4,048 representative meningococcal disease isolates from 18 European countries, collected over a 3-year period, were characterized by multilocus sequence typing (MLST). Age data were available for 3,147 isolates. The proportions of hyperinvasive lineages, identified as particular clonal complexes (ccs) by MLST, differed among age groups. Subjects <1 year of age experienced lower risk of sequence type 11 (ST-11) cc, ST-32 cc, and ST-269 cc disease and higher risk of disease due to unassigned STs, 1- to 4-year-olds experienced lower risk of ST-11 cc and ST-32 cc disease, 5- to 14-year-olds were less likely to experience ST-11 cc and ST-269 cc disease, and ≥25-year-olds were more likely to experience disease due to less common ccs and unassigned STs. Younger and older subjects were vulnerable to a more diverse set of genotypes, indicating the more clonal nature of genotypes affecting adolescents and young adults. Knowledge of temporal and spatial diversity and the dynamics of meningococcal populations is essential for disease control by vaccines, as coverage is lineage specific. The nonrandom age distribution of hyperinvasive lineages has consequences for the design and implementation of vaccines, as different variants, or perhaps targets, may be required for different age groups. KW - differential age distribution KW - disease-associated KW - meningococcal lineages KW - vaccine development Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120808 VL - 21 IS - 6 ER - TY - JOUR A1 - Stock, Nina Katharina A1 - Petráš, Petr A1 - Melter, Oto A1 - Kapounová, Gabriela A1 - Vopalková, Petra A1 - Kubele, Jan A1 - Vaniš, Václav A1 - Tkadlec, Jan A1 - Bukáčková, Eva A1 - Machová, Ivana A1 - Jindrák, Vlastimil T1 - Importance of Multifaceted Approaches in Infection Control: A Practical Experience from an Outbreak Investigation JF - PLoS ONE N2 - Background This study presents the results of a multidisciplinary, nosocomial MRSA outbreak investigation in an 8-bed medical intensive care unit (ICU). The identification of seven MRSA positive patients in the beginning of 2014 led to the closure of the ward for several weeks. A multidisciplinary, retrospective investigation was initiated in order to identify the reason and the source for the outbreak, describe MRSA transmission in the department and identify limitations in infection control. Methods The investigation comprised an epidemiological description of MRSA cases from 2012 to 2014 and a characterization of MRSA isolates, including phage-, spa- and PFGE-typing. Additionally, MRSA screening was performed from the hospital staff and the environment. To identify the reason for the outbreak, work-related, psychological and behavioral factors were investigated by impartial audits and staff interviews. Results Thirty-one MRSA cases were registered during the study period, and 36 isolates were investigated. Molecular typing determined the outbreak strain (phage type 54/812, PFGE type A4, spa type t003) and identified the probable index case. Nasal carriage in one employee and a high environmental contamination with the outbreak strain was documented. Important gaps in nursing procedures and general management were identified. Elevated stress levels and communication problems preceded the outbreak. Compliance with hand hygiene and isolation procedures was evaluated as appropriate. Conclusion This study demonstrates the complexity of controlling hospital-associated infections. The combined use of different typing methods is beneficial for outbreak investigations. Psychological, behavioral and other work-related factors have an important impact on the spread of nosocomial pathogens. These factors should be addressed and integrated in routine infection control practice. KW - multifaceted approaches KW - infection control KW - Methicillin resistant Staphylococcus aureus KW - MRSA Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-166891 VL - 11 IS - 6 ER - TY - JOUR A1 - Kohlmorgen, Britta A1 - Elias, Johannes A1 - Schoen, Christoph T1 - Improved performance of the artus Mycobacterium tuberculosis RG PCR kit in a low incidence setting: a retrospective monocentric study JF - Scientific Reports N2 - Tuberculosis (TB) and the spread of Mycobacterium tuberculosis complex (MTBC) strains resistant against rifampin (RIF) and isoniazid (INH) pose a serious threat to global health. However, rapid and reliable MTBC detection along with RIF/INH susceptibility testing are challenging in low prevalence countries due to the higher rate of false positives. Here, we provide the first performance data for the artus MTBC PCR assay in a low prevalence setting. We analyze 1323 respiratory and 311 non-respiratory samples with the artus MTBC PCR assay as well as by mycobacterial culture and microscopy. We propose retesting of specimens in duplicate and consideration of a determined cycle-threshold value cut-off greater than 34, as this significantly increases accuracy, specificity, and negative predictive value without affecting sensitivity. Furthermore, we tested fourteen MTBC positive samples with the GenoType MTBDRplus test and demonstrate that using an identical DNA extraction protocol for both assays does not impair downstream genotypic testing for RIF and INH susceptibility. In conclusion, our procedure optimizes the use of the artus MTB assay with workload efficient methods in a low incidence setting. Combining the modified artus MTB with the GenoType MTBDRplus assays allows rapid and accurate detection of MTBC and RIF/INH resistance. KW - laboratory techniques and procedures KW - Tuberculosis Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159248 VL - 7 IS - 14127 ER - TY - JOUR A1 - Walter, T. A1 - Collenburg, L. A1 - Japtok, L. A1 - Kleuser, B. A1 - Schneider-Schaulies, S. A1 - Müller, N. A1 - Becam, J. A1 - Schubert-Unkmeir, A. A1 - Kong, J. N. A1 - Bieberich, E. A1 - Seibel, J. T1 - Incorporation and visualization of azido-functionalized N-oleoyl serinol in Jurkat cells, mouse brain astrocytes, 3T3 fibroblasts and human brain microvascular endothelial cells JF - Chemical Communications N2 - The synthesis and biological evaluation of azido-N-oleoyl serinol is reported. It mimicks biofunctional lipid ceramides and has shown to be capable of click reactions for cell membrane imaging in Jurkat and human brain microvascular endothelial cells. KW - Ceramide KW - Apoptosis KW - Golgi KW - N-oleoyl serinol KW - Jurkat cells Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-191263 VL - 52 IS - 55 ER - TY - JOUR A1 - Gomes, Sara F. Martins A1 - Westermann, Alexander J. A1 - Sauerwein, Till A1 - Hertlein, Tobias A1 - Förstner, Konrad U. A1 - Ohlsen, Knut A1 - Metzger, Marco A1 - Shusta, Eric V. A1 - Kim, Brandon J. A1 - Appelt-Menzel, Antje A1 - Schubert-Unkmeir, Alexandra T1 - Induced pluripotent stem cell-derived brain endothelial cells as a cellular model to study Neisseria meningitidis infection JF - Frontiers in Microbiology N2 - Meningococcal meningitis is a severe central nervous system infection that occurs when Neisseria meningitidis (Nm) penetrates brain endothelial cells (BECs) of the meningeal blood-cerebrospinal fluid barrier. As a human-specific pathogen, in vivo models are greatly limited and pose a significant challenge. In vitro cell models have been developed, however, most lack critical BEC phenotypes limiting their usefulness. Human BECs generated from induced pluripotent stem cells (iPSCs) retain BEC properties and offer the prospect of modeling the human-specific Nm interaction with BECs. Here, we exploit iPSC-BECs as a novel cellular model to study Nm host-pathogen interactions, and provide an overview of host responses to Nm infection. Using iPSC-BECs, we first confirmed that multiple Nm strains and mutants follow similar phenotypes to previously described models. The recruitment of the recently published pilus adhesin receptor CD147 underneath meningococcal microcolonies could be verified in iPSC-BECs. Nm was also observed to significantly increase the expression of pro-inflammatory and neutrophil-specific chemokines IL6, CXCL1, CXCL2, CXCL8, and CCL20, and the secretion of IFN-γ and RANTES. For the first time, we directly observe that Nm disrupts the three tight junction proteins ZO-1, Occludin, and Claudin-5, which become frayed and/or discontinuous in BECs upon Nm challenge. In accordance with tight junction loss, a sharp loss in trans-endothelial electrical resistance, and an increase in sodium fluorescein permeability and in bacterial transmigration, was observed. Finally, we established RNA-Seq of sorted, infected iPSC-BECs, providing expression data of Nm-responsive host genes. Altogether, this model provides novel insights into Nm pathogenesis, including an impact of Nm on barrier properties and tight junction complexes, and suggests that the paracellular route may contribute to Nm traversal of BECs. KW - Neisseria meningitidis KW - meningococcus KW - bacteria KW - stem cells KW - blood-cerebrospinal fluid barrier KW - blood-brain barrier KW - brain endothelial cells Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201562 VL - 10 IS - 1181 ER -