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Die rheumatoide Arthritis (RA) ist eine chronische, progressive und systemische Autoimmunerkrankung, in deren Zentrum das dauerhaft entzündete Synovialgewebe der Gelenke steht. Aufgrund vielfältiger Knochen- und Knorpel-destruierender Prozesse kommt es zu irreversiblen Funktionalitätsverlusten der betroffenen Gelenke. Eine tragende Rolle bei der Ausprägung der klinischen Manifestationen wird dabei der exzessiven Synthese des proinflammatorischen Cytokins IL-1 zugesprochen. Dessen Aktivität kann durch kompetitive Blockade des IL-1 Rezeptors Typ I mit dem natürlich vorkommenden, antiinflammatorischen IL-1 Rezeptorantagonisten (IL-1Ra) inhibiert werden. Der Cytokin-blockierende Therapieansatz mit Anakinra, einem rekombinant hergestellten IL-1Ra, konnte die pharmakologischen Behandlungsmöglichkeiten der RA seit 2001 wesentlich erweitern. Gleichwohl erfordern die geringen Halbwertszeiten von IL-1Ra regelmäßige subkutane Injektionen, um hinreichende therapeutische Wirkstoffspiegel im Patienten aufrecht zu erhalten. Vor diesem Hintergrund bieten somatische Gentherapiekonzepte eine vielversprechende Alternative zu den konventionellen Behandlungsstrategien bei der RA-Therapie. Ein IL-1Ra-Gentransfer ins Gelenk soll die persistierende, lokale, endogene Synthese des therapeutischen IL-1Ra-Proteins ermöglichen und lässt in dieser Hinsicht eine nachhaltige Verbesserung der klinischen Symptomatik erwarten. In dieser Arbeit wurden dafür gentherapeutische Foamyvirus-Adenovirus-Hybridvektoren (FAD) zur Expression des IL-1Ra entwickelt und die Funktionalität der Konstrukte evaluiert. Die Vektoren sollten die effizienten adenoviralen Transduktionsmechanismen mit dem Potential der foamyviralen somatischen Integration für einen direkten in vivo Gentransfer kombinieren. Das System besteht aus einem adenoviralen Hochkapazitätsvektor vom Serotyp 5, der eine selbstinaktivierende PFV-Vektorkassette unter Kontrolle des Reversen Tetracyclin Transaktivator Systems (Tet-On) enthält. In FAD-transduzierten Zellen wurde die funktionelle Induzierbarkeit der PFV-Vektorexpression nachgewiesen und die Kinetik der PFV-Partikelfreisetzung charakterisiert. Nach Induktion der PFV-Vektorkassette konnte in FAD-transduzierten Zellen ein langfristig-stabiler IL-1Ra-Gentransfer gezeigt werden. Ferner konnten protektive Effekte eines FAD-vermittelten IL-1Ra-Gentransfers im Zellkulturmodell nachgewiesen werden. Tierexperimentelle Untersuchungen zeigten eine erfolgreiche Transduktion von Synovialzellen nach intraartikulärer Applikation von FAD-Vektoren. Das Tetracyclin-regulierbare Hybridvektorsystem zur Expression des IL-1Ra, das in der vorliegenden Arbeit geschaffen wurde, könnte zukünftig die Basis für ein effektives Werkzeug zum intraartikulären Gentransfer in der klinischen Praxis bieten.
In der vorliegenden Arbeit wurden 15 gesunde Probanden und vier Patienten mit dem primären humoralen Immundefekt "Common Variable Immunodeficiency" (CVID) auf den Immunphänotyp ihrer Lymphozyten sowie die Expression des Transkriptionsfaktors PRDI-BF1/Blimp-1 hin untersucht. Zu Kontrollzwecken wurden zusätzlich einige permanente Lymphozyten-Zelllinien verwendet (B-lymphoblastoide Zelllinien und Jurkat-Zellen). Nach der Blutentnahme wurde zunächst in Vollblut-Lyse-Technik der Immunphänotyp bestimmt, begleitend wurde ein großes Blutbild auf einem Hämatologieautomaten gemessen. Im Vergleich zu den gesunden Probanden zeigten die CVID-Patienten im Differentialblutbild folgende statistisch signifikante Abweichungen: relative Lymphopenie, relative Neutrophilie, relative und absolute Eosinopenie (insgesamt im Sinne einer entzündlichen Reaktion). Durchflusszytometrisch zeigten die Patienten folgende Auffälligkeiten: relative Expansion der zytotoxischen T-Lymphozyten, absolute Verminderung der NK-Zellen, relative Expansion HLA-DR-positiver Lymphozyten, absolute Verminderung CD27-positiver Lymphozyten, relative und absolute Verminderung CD27-positiver B-Zellen (B-Gedächtnis-Zellen). Bei allen vier Patienten war der Anteil IgM-negativer ("geswitchter") Memory-Zellen an den gesamten B-Lymphozyten stark vermindert. Nach Stimulation mit Staphylococcus aureus Stamm Cowan I und Interleukin 2 waren bei allen untersuchten Patienten und gesunden Probanden Immunglobuline im Zellkulturüberstand sowie PRDI-BF1-mRNA im Zelllysat nachweisbar, sodass auf einen gravierenden Defekt von PRDI-BF1 als Ursache der CVID (z. B. im Sinne einer homozygoten Gendeletion) kein Hinweis bestand. Bei den als Negativkontrolle vorgesehenen T-Lymphozyten und in einer permanenten T-Zelllinie (Jurkat) wurde überraschend ebenfalls PRDI-BF1-mRNA nachgewiesen. Dieser Befund konnte durch mehrfache Wiederholung, Kontrollen und hohe Aufreinigung der T-Lymphozyten sowie Auftrennung in ihre Subpopulationen bestätigt werden und wurde von anderen Arbeitsgruppen ebenfalls reproduziert und publiziert. Die Ergebnisse ließen vermuten, dass PRDI-BF1 bei Antigen-erfahrenen, CD45RA-negativen T-Lymphozyten stärker exprimiert wird und daher ebenso wie bei B-Lymphozyten eine Rolle in deren terminaler Differenzierung spielt.
Marine sponges and their associated bacteria have been proven to be a rich source of novel secondary metabolites with therapeutic usefulness in infection and autoimmunity. This Ph.D. project aimed to isolate bioactive secondary metabolites from the marine sponges Amphimedon compressa, Aiolochroia crassa and Theonella swinhoei as well as from bacteria associated with different Caribbean sponges, specifically actinomycetes and sphingomonads. In this study, amphitoxin was isolated from the crude methanol extract of the sponge A. compressa and it was found to have antibacterial and anti-parasitic activities. Amphitoxin showed protease inhibitory activity when tested against the mammalian protease cathepsin B and the parasitic proteases rhodesain and falcipain-2. Furthermore, miraziridine A was identified in the dichloromethane extract of the sponge T. swinhoei collected offshore Israel in the Red Sea. Miraziridine A, a natural peptide isolated previously from the marine sponge Theonella aff. mirabilis, is a potent cathepsin B inhibitor with an IC50 value of 1.4 g/mL (2.1 M). Secondary metabolites from sponge-derived bacteria were also isolated and identified. A total of 79 strains belonging to 20 genera of the order Actinomycetales and seven strains belonging to two genera of the order Sphingomonadales were cultivated from 18 different Caribbean sponges and identified by 16S rRNA gene sequencing. Seven of these strains are likely to represent novel species. Crude extracts from selected strains were found to exhibit protease inhibition against cathepsins B and L, rhodesain, and falcipain-2 as well as immunomodulatory activities such as induction of cytokine release by human peripheral blood mononuclear cells. The isolates Sphingobium sp. CO105 and Lapillicoccus sp. BA53 were selected for cultivation, extraction and purification of bioactive metabolites based on initial bioactive screening results. The isoalloxazine isolumichrome was isolated from the strain Sphingobium sp. CO105 which inhibited the protease rhodesain with an IC50 of 0.2 M. The strain Lapillicoccus sp. BA53 was found to produce p-aminosalicylic acid methyl ester, which showed activity against the proteases cathepsins B and L, falcipain-2 and rhodesain. These results highlight the significance of marine sponge-associated bacteria to produce bioactive secondary metabolites with therapeutic potential in the treatment of infectious diseases and disorders of the immune system.
Molecular modelling and simulation are powerful methods in providing important in-formation on different biological systems to elucidate their structural and functional proper-ties, which cannot be determined in experiment. These methods are applied to analyse versa-tile biological systems: lipid membrane bilayers stabilized by an intercalated single wall carbon nanotube and retroviral proteins such as HIV protease and integrase. HIV-1 integrase has nuclear localization signals (NLS) which play a crucial role in nuclear import of viral preintegration complex (PIC). However, the detailed mechanisms of PIC formation and its nuclear transport are not known. Previously it was shown that NLSs bind to the cell transport machinery e.g. proteins of nuclear pore complex such as transportins. I investigated the interaction of this viral protein HIV-1 integrase with proteins of the nuclear pore complex such as transportin-SR2 (Shityakov et al., 2010). I showed that the transportin-SR2 in nuclear import is required due to its interaction with the HIV-1 integrase. I analyzed key domain interaction, and hydrogen bond formation in transportin-SR2. These results were discussed in comparison to other retroviral species such as foamy viruses to better understand this specific and efficient retroviral trafficking route. The retroviral nuclear import was next analyzed in experiments regarding the retroviral ability to infect nondividing cells. To accomplish the gene transfer task successfully, ret-roviruses must efficiently transduce different cell cultures at different phases of cell cycle. However, promising and safe foamy viral vectors used for gene transfer are unable to effi-ciently infect quiescent cells. This drawback was due to their inability to create a preintegra-tion complex (PIC) for nuclear import of retroviral DNA. On the contrary, the lentiviral vec-tors are not dependant on cell cycle. In the course of reverse transcription the polypurine tract (PPT) is believed to be crucial for PIC formation. In this thesis, I compared the transduction frequencies of PPT modified FV vectors with lentiviral vectors in nondividing and dividing alveolar basal epithelial cells from human adenocarcinoma (A549) by using molecular cloning, transfection and transduction techniques and several other methods. In contrast to lentiviral vectors, FV vectors were not able to effi-ciently transduce nondividing cell (Shityakov and Rethwilm, unpublished data). Despite the findings, which support the use of FV vectors as a safe and efficient alternative to lentiviral vectors, major limitation in terms of foamy-based retroviral vector gene transfer in quiescent cells still remains. Many attempts have been made recently to search for the potential molecules as pos-sible drug candidates to treat HIV infection for over decades now. These molecules can be retrieved from chemical libraries or can be designed on a computer screen and then synthe-sized in a laboratory. Most notably, one could use the computerized structure as a reference to determine the types of molecules that might block the enzyme. Such structure-based drug design strategies have the potential to save off years and millions of dollars compared to a more traditional trial-and-error drug development process. After the crystal structure of the HIV-encoded protease enzyme had been elucidated, computer-aided drug design played a pivotal role in the development of new compounds that inhibit this enzyme which is responsible for HIV maturation and infectivity. Promising repre-sentatives of these compounds have recently found their way to patients. Protease inhibitors show a powerful sustained suppression of HIV-1 replication, especially when used in combi-nation therapy regimens. However, these drugs are becoming less effective to more resistant HIV strains due to multiple mutations in the retroviral proteases. In computational drug design I used molecular modelling methods such as lead ex-pansion algorithm (Tripos®) to create a virtual library of compounds with different binding affinities to protease binding site. In addition, I heavily applied computer assisted combinato-rial chemistry approaches to design and optimize virtual libraries of protease inhibitors and performed in silico screening and pharmacophore-similarity scoring of these drug candidates. Further computational analyses revealed one unique compound with different protease bind-ing ability from the initial hit and its role for possible new class of protease inhibitors is dis-cussed (Shityakov and Dandekar, 2009). A number of atomistic models were developed to elucidate the nanotube behaviour in lipid bilayers. However, none of them provided useful information for CNT effect upon the lipid membrane bilayer for implementing all-atom models that will allow us to calculate the deviations of lipid molecules from CNT with atomistic precision. Unfortunately, the direct experimental investigation of nanotube behaviour in lipid bilayer remains quite a tricky prob-lem opening the door before the molecular simulation techniques. In this regard, more de-tailed multi-scale simulations are needed to clearly understand the stabilization characteristics of CNTs in hydrophobic environment. The phenomenon of an intercalated single-wall carbon nanotube in the center of lipid membrane was extensively studied and analyzed. The root mean square deviation and root mean square fluctuation functions were calculated in order to measure stability of lipid mem-branes. The results indicated that an intercalated carbon nanotube restrains the conformational freedom of adjacent lipids and hence has an impact on the membrane stabilization dynamics (Shityakov and Dandekar, 2011). On the other hand, different lipid membranes may have dissimilarities due to the differing abilities to create a bridge formation between the adherent lipid molecules. The results derived from this thesis will help to develop stable nanobiocom-posites for construction of novel biomaterials and delivery of various biomolecules for medi-cine and biology.
Präeklampsie ist einer der Hauptgründe für maternale und fetale Mortalität und Morbidität. Obwohl die Aetiologie weitgehend unklar ist, wird angenommen, dass eine mangelnde Toleranz von Seiten des mütterlichen Organismus gegenüber dem Fetus und dadurch dessen sukzessive Abstossung ursächlich sein könnte. T regulatorischen Zellen wurde in der Vergangenheit eine mögliche Rolle in der Aufrechterhaltung einer gesunden Schwangerschaft mit erfolgreicher Integration des Fetus, eines durch die paternalen Antigene charakterisierten semi-haploiden Allografts, zugesprochen. In dieser Arbeit wurden T regulatorische Zellen am Ende des dritten Trimesters im peripheren Blut nicht-Schwangerer, gesunder Schwangerer sowie Schwangerer mit Präeklampsie untersucht. Zusätzlich wurden T-regulatorische Zellen in decidualem Gewebe bestimmt. Aufgrund der verschiedenen Ergebnisse vorangegangener Studien und der Uneinigkeit über die Identifizierung T regulatorischer Zellen wurden T regulatorische Zellen in dieser Arbeit mittels der drei gängigsten Markerkombinationen (foxp3+, CD4+CD25hi sowie CD4+CD127loCD25+) charakterisiert. Im peripheren Blut gesunder Schwangerer gab es signifikant mehr T regulatorische Zellen als im peripheren Blut nicht-Schwangerer gemessen mit den Markerkombinationen CD4+CD25hi sowie CD4+CD127loCD25+. In Schwangerschaften mit Präeklampsie zeigten sich eine verminderte Frequenz von T regulatorischer Zellen verglichen mit gesunden Schwangerschaften für die Markerkombinationen foxp3+ und CD4+CD127loCD25+. Auf lokaler Ebene, der Decidua, wurde bei gesunden Schwangerschaften sowie Schwangerschaften mit Präeklampsie eine erhöhte Frequenz gegenüber dem peripheren Blut gemessen. T-regulatorische Zellen scheinen also eine Rolle in der Aufrechterhaltung gesunder Schwangerschaften zu spielen, während sie in Schwangerschaften mit Präeklampsie vermindert sind.
Das humanes WU Polyomavirus wurde im Jahr 2007 als ein neues Virus in Proben des Respirationstraktes beschrieben und gehört zur Familie der Polpymaviridae. Das Ziel der Arbeit war es, eine WUPyV-rea-time-PCR zu etablieren und zu evaluieren und mit dieser neuen Methode WUPyV-DNA in Nasenrachenskreten (NRS) zu detektieren und zu quantifizieren. Insgesamt wurden 1232 NRS von Patientin mit akuten respiratoischen Erkrankungen, die an der Universitätskinderklinik Würzburg im Zeitraum von Januar 2002 bis September 2005 und Januar 2007 bis July 2007 stationär behandelt worden waren, auf WUPyV-DNA getestet. Zusätzlich wurden 14 Serum- und 14 Stuhlproben von Kindern mit WUPyV-DNA-pos. NRS getestet. Mit der real-time PCR wurde WUPyV-DNA in 5,2 % der 1232 NRS detektiert. Der Viruslastmedian aller WUPyV-positiven NRS betrug 950 Kopien/m. Neben einigen sehr hohen Viruslasten (4,7 % > E9 Kopien/ml) wurden vor allem niedirge Viruslaten (51,6 % < 1000 Kopien/ml) mit der WUPyV-real-time PCR nachgewiesen. Es ergaben sich keine statistisch signifikanten Zusammenhänge zwischen der Viruslast und der Koinfektionen mit anderen respiratorischen Viren, mit klinischer Diagnose, mit dem Alter der infizierten Kinder und mit dem jahreszeitlichen Auftreten. In 3 der 14 Serum und 2 der 14 Stuhlproben konnte WUPyV-DNA detektiert werden. Virämische Kinder hatten tendenzen zu höhrer Viruslast im NRS.Weitere Studien sind notwendig um die pathogenetische Relevanz des WUPyV für den Menschen zu untersuchen. Die in dieser Arbeit etablierte real-time PCR zur WUPyV-Quantifizierung kann dabei zur Anwendung kommen.
Effective T cell immunity was believed to occur by mature DC, whereas tolerogenicity was attributed strictly to immature DC phenotypes. However, intermediate DC maturation stages were identified conditioned by inflammatory mediators like TNF. Furthermore, the T cell tolerance mechanisms are dependent on distinct modes and intensities of co-stimulation. Therefore, in this study it was addressed how distinct DC maturation signatures instruct CD4+ T cell tolerance mechanisms. DC acquire antigens from apoptotic cells for self-peptide-MHC presentation and functionally adapt presumed tolerogenic DC phenotypes. Here, immature murine bone-marrow derived DC representing both inflammatory and conventional DC subsets adapted a maturationresistant DC signature upon apoptotic cell recognition but no additional tolerogenic features. Immature DC instruct CD4+ FoxP3+ regulatory T cells in a TGF-β prone micro-environment or generate anergic CD4+ T cells hampered in the TCR-induced proliferation and IL-2 secretion. Secondary stimulation of such anergic CD4+ T cells by immature DC increased primarily IL-10 production and conferred regulatory function. These IL-10+ regulatory T cells expressed high levels of CTLA-4, which is potently induced by immature DC in particular. Data in this work showed that anergic T cells can be re-programmed to become IL-10+ regulatory T cells upon ligation of CTLA-4 and CD28 signalling cascades by B7 costimulatory ligands on immature DC. In contrast, semi-mature DC phenotypes conditioned by the inflammatory mediator TNF prevented autoimmune disorders by induction of IL-10+ Th2 responses as demonstrated previously. Here, it was shown that TNF as an endogenous maturation stimulus and pathogenic Trypanosoma brucei variant-specific surface glycoproteins (VSG) induced highly similar DC gene expression signatures which instructed default effector Th2 responses. Repetitive administration of the differentially conditioned semi-mature DC effectively skewed T cell immunity to IL-10+ Th2 cells, mediating immune deviation and suppression. Collectively, the data presented in this work provide novel insights how immature and partially mature DC phenotypes generate T cell tolerance mechanisms in vitro, which has important implications for the design of effective DC-targeted vaccines. Unravelling the DC maturation signatures is central to the long-standing quest to break tolerance mimicked by malignant tumours or re-establish immune homeostasis in allergic or autoimmune disorders.
Background: Parkinson’s disease (PD) is characterized at the cellular level by a destruction of neuromelanin (NM)-containing dopaminergic cells and a profound reduction in striatal dopamine. It has been shown recently that antimelanin antibodies are increased in sera of Parkinson patients, suggesting that NM may act as an autoantigen. In this study we tested whether NM is being recognized by dendritic cells (DCs), the major cell type for inducing Tand B-cell responses in vivo. This recognition of NM by DCs is a prerequisite to trigger an adaptive autoimmune response directed against NM-associated structures. Results: Murine DCs were treated with NM of substantia nigra (SN) from human subjects or with synthetic dopamine melanin (DAM). DCs effectively phagocytized NM and subsequently developed a mature phenotype (CD86high/MHCIIhigh). NM-activated DCs secreted the proinflammatory cytokines IL-6 and TNF-a. In addition, they potently triggered T cell proliferation in a mixed lymphocyte reaction, showing that DC activation was functional to induce a primary T cell response. In contrast, DAM, which lacks the protein and lipid components of NM but mimics the dopamine-melanin backbone of NM, had only very little effect on DC phenotype and function. Conclusions: NM is recognized by DCs in vitro and triggers their maturation. If operative in vivo, this would allow the DC-mediated transport and presentation of SN antigens to the adaptive immune system, leading to autoimmmunity in susceptible individuals. Our data provide a rationale for an autoimmune-based pathomechanism of PD with NM as the initial trigger.
Spuma- or foamy viruses (FV), endemic in most non-human primates, cats, cattle and horses, comprise a special type of retrovirus that has developed a replication strategy combining features of both retroviruses and hepadnaviruses. Unique features of FVs include an apparent apathogenicity in natural hosts as well as zoonotically infected humans, a reverse transcription of the packaged viral RNA genome late during viral replication resulting in an infectious DNA genome in released FV particles and a special particle release strategy depending capsid and glycoprotein coexpression and specific interaction between both components. In addition, particular features with respect to the integration profile into the host genomic DNA discriminate FV from orthoretroviruses. It appears that some inherent properties of FV vectors set them favorably apart from orthoretroviral vectors and ask for additional basic research on the viruses as well as on the application in Gene Therapy. This review will summarize the current knowledge of FV biology and the development as a gene transfer system.
Background: The World Health Organization (WHO) has recommended guidelines for a HIV drug resistance (HIVDR) survey for resource-limited countries. Eligibility criteria for patients include age below 25 years in order to focus on the prevalence of transmitted HIVDR (tHIVDR) in newly-infected individuals. Most of the participating sites across Africa have so far reported tHIVDR prevalences of below 5%. In this study we investigated whether the rate of HIVDR in patients ,25 years is representative for HIVDR in the rest of the therapy-naive population. Methods and Findings: HIVDR was determined in 88 sequentially enrolled ART-naive patients from Mwanza, Tanzania (mean age 35.4 years). Twenty patients were aged, 25 years and 68 patients were aged 25–63 years. The frequency of HIVDR in the study population was 14.8% (95%; CI 0.072–0.223) and independent of NVP-resistance induced by prevention of mother-to-child transmission programs. Patients .25 years had a significantly higher HIVDR frequency than younger patients (19.1%; 95% CI 0.095–0.28) versus 0%, P = 0.0344). In 2 out of the 16 patients with HIVDR we found traces of antiretrovirals (ARVs) in plasma. Conclusions: ART-naive patients aged over 25 years exhibited significantly higher HIVDR than younger patients. Detection of traces of ARVs in individuals with HIVDR suggests that besides transmission, undisclosed misuse of ARVs may constitute a significant factor in the generation of the observed high HIVDR rate. The current WHO tHIVDR survey that is solely focused on the transmission of HIVDR and that excludes patients over 25 years of age may therefore result in substantial underestimation of the prevalence of HIVDR in the therapy-naive population. Similar studies should be performed also in other areas to test whether the so far reported optimistic picture of low HIVDR prevalence in young individuals is really representative for the rest of the ART-naive HIV-infected population.