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Sonstige beteiligte Institutionen
- Clinical Trial Center (CTC) / Zentrale für Klinische Studien Würzburg (ZKSW) (3)
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ResearcherID
- I-5818-2014 (1)
In this paper the relationship between corporate sustainability performance and corporate financial performance is researched. It is hypothesized that a better sustainability performance of firms leads to financial success in terms of increased EBIT and Market Capitalization. Furthermore 17 environmental activities and their assumed impact on financial benefits are analyzed for ten different industry sectors. The data sample for this research paper has been taken from Thomson Reuters Database ASSET4 and includes 3115 firms. The results show that there is a positive and non-linear link between the sustainability performance and the financial performance of firms, intending that financially more successful firms can gain greater benefits from being sustainable than less successful firms do. Furthermore sustainable environmental activities have been identified for different industry sectors, which indicate to lead to an increase of the financial performance.
Synapsins are conserved synapse-associated hosphoproteins involved in the fine regulation of neurotransmitter release. The aim of the present project is to study the phosphorylation of synapsins and the distribution of phospho-synapsin in the brain of Drosophila melanogaster.
Three antibodies served as important tools in this work, a monoclonal antibody (3C11/α-Syn) that recognizes all known synapsin isoforms and two antisera against phosphorylated synapsin peptides (antiserum PSyn(S6) against phospho-serine 6 and antiserum PSyn(S464) against phospho-serine 464). These antisera were recently generated in collaboration with Bertram Gerber and Eurogentec. ...
In this work, high-energy observables arising during different phases of SN explosions are studied with respect to their potential for allowing conclusions on suggested explosion scenarios and physical mechanisms that are thought to influence the evolution of SNe in a major way. The focus on selected observables at keV and MeV energies is motivated by the appearance of large degeneracies that can even be found for disparate scenarios in many wavelength regimes. Since the discussed emission in the high-energy regime is directly linked to nuclear processes being usually very distinct for different suggested physical models, the signatures at keV and MeV energies allow for meaningful comparisons of simulations with observations.
Synthese und Charakterisierung neuartiger Silicium-, Germanium- und zinnorganischer Riechstoffe
(2014)
Aufbauend auf dem Konzept der C/Si-Bioisosterie beschreibt die vorliegende Arbeit die Synthese und Charakterisierung siliciumhaltiger Derivate der Riechstoffe Galaxolide, Lilial, Bourgeonal, 5,7,7-Trimethyl-4-methylenoctanal und α-Galbanone sowie Beiträge zur Synthese eines silicium¬haltigen Derivats von δ-Damascone. Basierend auf der C/Ge- und C/Sn-Bioisosterie wurden zudem die Germa- und Stanna-Analoga von Lilial und Bourgeonal synthetisiert. Die entsprechenden Zielverbindungen sowie alle isolierten Zwischenstufen wurden durch NMR-Spektroskopie (1H, 11B, 13C, 15N, 29Si, 119Sn) und Elementaranalyse (C, H, N) charakterisiert. In einigen Fällen erfolgte zusätzlich eine Charakterisierung durch Einkristall-Röntgenstrukturanalyse oder Infrarot-Spektroskopie.
Im Rahmen der Dissertation wurde die Reaktivitat des terminalen Mangan-Borylenkomplexes gegenüber verschiedenen polaren Doppelbindungssystemen, koordinativ ungesattigten Übergangsmetallfragmenten sowie Lewis-Basen untersucht. Mithilfe der spektroskopischen und strukturellen Daten der dabei synthetisierten Verbindungen konnten neue Erkenntnisse uber die Natur der Metall-Bor-Bindung erlangt werden.
Mit diesem Beitrag ("Syrien und Jordanien") liegt Teil 1 der dreiteiligen Online-Publikation "Historische Aufnahmen aus dem Vorderen Orient" vor, die als Zeitdokumente Bilder und begleitende Texte von Reisen aus den Jahren 1968 bis 1979 in einige Länder des Nahen Ostens vorstellt. Die Bildauswahl zeigt v. a. Kunstobjekte und Landschafts- bzw. Architekturaufnahmen mit Bezug zur Archäologie und Kunstgeschichte.
Diverse synthetische Zugänge zu einer neuen Verbindungsklasse, nämlich den chiralen 9-
Oxabispidinen wurden realisiert. Als gemeinsame Ausgangsverbindung diente das Aminodiol. Die Route über ein Bispidinlactam stellte sich aufgrund der geringen Ausbeute (~5%) über 8 Stufen als wenig effektiv heraus. Ein Nitril eignete sich wesentlich besser als Zwischenstufe und lieferte die Zielverbindungen in 9-27% Gesamtausbeute über 8-12 Stufen.
Auch ein Syntheseweg zur Darstellung von Bispidinen konnte ausgehend vom Naturstoff (–)-Cytisin, der aus den Samen des Gemeinen Goldregens isoliert wurde, etabliert werden. Hierzu wurde in Analogie zu O’Briens Arbeiten zunächst die freie Aminofunktion als Carbamat geschützt und der aromatische Ring zum Lactam reduziert, um dann in 5-Position derivatisieren zu können. Verschiedene Substituenten (Me, iPr, F, cPr) konnten sowohl in axialer als auch in äquatorialer Position eingeführt werden. Ein weiterer Reduktionschritt
am Ende der Sequenz lieferte die trizyklischen Diamine in 15-38% Ausbeute über nur 4-6
Stufen ausgehend von (–)-Cytisin. Eine Cyclopropylgruppe wurde durch Einführung einer
Methoxymethylgruppe, Eliminierung und eine Cyclopropanierung mit Diiodmethan/ Diethylzink generiert.
Alle synthetisierten Verbindungen wurden als chirale Liganden in verschiedenen enantioselektiven Reaktionen evaluiert. Im Fokus standen hierbei zunächst die 9-Oxabispidine, die sich–im Gegensatz zu den bekannten Bispidinen–leider nicht als chirale Liganden in enantioselektiven Deprotonierungen einsetzen lassen, da sie selbst deprotoniert werden. In enantioselektiven Henry-Reaktionen stellte sich das trizyklische 9-Oxabispidin als hervorragender Ligand heraus, der als Kupferkomplex mit einer Vielzahl an Aldehyden (aliphatisch, aromatisch) und Nitromethan umgesetzt wurde. Sowohl die Ausbeuten (44-95%) als auch die Enantiomerenüberschüsse (91-98%) waren exzellent und können mit den Ergebnissen der besten Literatur-bekannten Katalysatoren mithalten. Auch in einer diastereoselektiven Umsetzung mit Nitroethan konnte ein dr von 80:20 mit sehr guten 94% ee für das Hauptdiastereomer erzielt werden. Die bizyklischen 9-Oxabispidine eignen sich weniger für Henry-Reaktionen, da die Verbindungen mit sterisch weniger anspruchsvollen Reste nur mittelmäßige Resultate (33-46% ee) ergeben. Mit zunehmender Sterik ist auch eine steigende Tendenz zu einem höheren Enantiomerenüberschuss [z.B. R = Ph, 56/57% ee] zu erkennen. Interessant ist die Stereoselektivität der bizyklischen Oxabispidine: Während das trizyklische Bispidin zu einer S-Konfiguration im Produkt führt–wie es von einem (+)-Spartein-Ersatzstoff zu erwarten ist–liefern R = Et, iPr. cHex und Ph das R-Produkt - genau wie (–)-Spartein. Der Grund hierfür ist wahrscheinlich die exponierte Stellung der äußeren Methylgruppe im annelierten Piperidinring. Ein ähnlicher Effekt trat mit dem 9-Oxabispidin R = tBuPh, das ebenfalls einen weit ausladenden aromatischen Ring besitzt, ein. Auch hier wurden unter Induktionsumkehr im Vergleich zu R = Et, iPr, cHex, Ph das S-konfigurierte Produkt in 38-39 % ee erhalten.
Im Gegensatz zu den 9-Oxabispidinen können die Bispidine in enantioselektiven Deprotonierungsreaktionen eingesetzt werden. Die bei der Umsetzung erzielten Ergebnisse mit den Monomethyl-Verbindungen (92% ee, äquatoriale Me-Gruppe und 79% ee, axiale Me-Gruppe) zeigen, dass eine axiale Methylgruppe den Chiralitätstransfer eher negativ beeinflusst, wohingegen eine äquatoriale Methylgruppe keinen Einfluss ausübt auf den ee (gleicher ee mit 92% wie das trizyklische Bispidin). Bei größeren äquatorialen Substituenten wie iPr (51%) sinkt ebenfalls der Enantiomerenüberschuss. Zwei gleichartige Substituenten (≠ H) in 5-Position stören die Reaktion so sehr, dass der ee-Wert stark abfällt (34% ee bei zwei 5-Methylgruppen). Bei Einführung von kleinen Substituenten in äquatorialer und axialer Position, wie F (65% ee) oder -CH2-CH2- (40% ee) liegen die erzielten ee-Werte auch viel niedriger.
Tumor angiogenesis is essential for the growth of solid tumors as their proliferation and survival is dependent on consistent oxygen and nutrient supply. Anti-angiogenic treatments represent a therapeutic strategy to inhibit tumor growth by preventing the formation of new blood vessels leading to starvation of the tumor. One of the best characterized anti angiogenic therapeutics is the monoclonal antibody bevacizumab (Avastin), which targets and neutralizes VEGF leading to disruption of the VEGF signaling pathway. Until today, bevacizumab has found its way into clinical practice and has gained approval for treatment of different types of cancer including colorectal cancer, non-small cell lung cancer, breast cancer and renal cell carcinoma. Signaling of VEGF is mediated through VEGF receptors, mainly VEGFR2, which are primarily located on the cell surface of endothelial cells. However, there has been evidence that expression of VEGF receptors can also be found on tumor cells themselves raising the possibility of autocrine and/or paracrine signaling loops. Thus, tumor cells could also benefit from VEGF signaling, which would promote tumor growth. The aim of this study was to investigate if bevacizumab has a direct effect on tumor cells in vitro. To this end, tumor cell lines from the NCI-60 panel derived from four different tumor types were treated with bevacizumab and angiogenic gene and protein expression as well as biological outputs including proliferation, migration and apoptosis were investigated. Most of the experiments were performed under hypoxia to mimic the in vivo state of tumors. Overall, there was a limited measurable effect of bevacizumab on treated tumor cell lines according to gene and protein expression changes as well as biological functions when compared to endothelial controls. Minor changes in terms of proliferation or gene regulation were evident in a single tumor cell line after VEGF-A blockade by bevacizumab, which partially demonstrated a direct effect on tumor cells. However, the overall analysis revealed that tumor cell lines are not intrinsically affected in an adverse manner by bevacizumab treatment.
Besides the functional analysis of tumor cells, embryonic stem cell derived endothelial cells were characterized to delineate vascular Hey gene functions. Hey and Hes proteins are the best characterized downstream effectors of the evolutionary conserved Notch signaling pathway, which mainly act as transcriptional repressors regulating downstream target genes. Hey proteins play a crucial role in embryonic development as loss of Hey1 and Hey2 in mice in vivo leads to a severe vascular phenotype resulting in early embryonic lethality. The major aim of this part of the thesis was to identify vascular Hey target genes using embryonic stem cell derived endothelial cells utilizing a directed endothelial differentiation approach, as ES cells and their differentiation ability provide a powerful in vitro system to study developmental processes. To this end, Hey deficient and Hey wildtype embryonic stem cells were stably transfected with an antibiotic selection marker driven by an endothelial specific promoter, which allows selection for endothelial cells. ESC-derived endothelial cells exhibited typical endothelial characteristics as shown by marker gene expression, immunofluorescent staining and tube formation ability. In a second step, Hey deficient ES cells were stably transfected with doxycycline inducible Flag-tagged Hey1 and Hey2 transgenes to re-express Hey proteins in the respective cell line. RNA-Sequencing of Hey deficient and Hey overexpressing ES cells as well as ESC-derived endothelial cells revealed many Hey downstream target genes in ES cells and fewer target genes in endothelial cells. Hey1 and Hey2 more or less redundantly regulate target genes in ES cells, but some genes were regulated by Hey2 alone. According to Gene Ontology term analysis, Hey target genes are mainly involved in embryonic development and transcriptional regulation. However, the response of ESC-derived endothelial cells in regulating Hey downstream target genes was rather limited when compared to ES cells, which could be due to lower transgene expression in endothelial cells. The limited response also raises the possibility that target gene regulation in endothelial cells is not only dependent on Hey gene functions alone and thus loss or overexpression of Hey genes in this in vitro setting does not influence target gene regulation.
Today’s Internet architecture was not designed from scratch but was driven by new services that emerged during its development. Hence, it is often described as patchwork where additional patches are applied in case new services require modifications to the existing architecture. This process however is rather slow and hinders the development of innovative network services with certain architecture or network requirements. Currently discussed technologies like Software-Defined Networking (SDN) or Network Virtualization (NV) are seen as key enabling technologies to overcome this rigid best effort legacy of the Internet. Both technologies offer the possibility to create virtual networks that accommodate the specific needs of certain services. These logical networks are operated on top of a physical substrate and facilitate flexible network resource allocation as physical resources can be added and removed depending on the current network and load situation. In addition, the clear separation and isolation of networks foster the development of application-aware networks that fulfill the special requirements of emerging applications. A prominent use case that benefits from these extended capabilities of the network is denoted with service component mobility. Services hosted on Virtual Machines (VMs) follow their consuming mobile endpoints, so that access latency as well as consumed network resources are reduced. Especially for applications like video streaming, which consume a large fraction of the available resources, is this an important means to relieve the resource constraints and eventually provide better service quality. Service and endpoint mobility both allow an adaptation of the used paths between an offered service, i.e., video streaming and the consuming users in case the service quality drops due to network problems. To make evidence-based adaptations in case of quality drops, a scalable monitoring component is required that is able to monitor the service quality for video streaming applications with reliable accuracy. This monograph details challenges that arise when deploying a certain service, i.e., video streaming, in a future virtualized network architecture and discusses possible solutions. In particular, this work evaluates the performance of mechanisms enabling service mobility and presents an optimized architecture for service mobility. Concerning endpoint mobility, improvements are developed that reduce the latency between endpoints and consumed services and ensure connectivity regardless of the used mobile access network. In the last part, a network-based video quality monitoring solution is developed and its accuracy is evaluated.
Die erfolgreiche therapeutische Beeinflussung pathophysiologischer Prozesse im Herzen nach myokardialem Infarkt stellt nicht zuletzt durch die steigenden Fallzahlen in der westlichen Welt und die vergleichsweise hohe Mortalität eine Herausforderung an Forschung und Entwicklung dar. In der vorliegenden Arbeit werden verschiedene therapeutische Strategien in klinisch relevanten Mausmodellen des Myokardinfarkts und des Ischämie-Reperfusions-Schadens getestet.
Zunächst wird untersucht, ob sich der Einsatz des NFκB-aktivierenden Zytokins TWEAK, welches weitreichende Funktionen in physiologischen Prozessen wie Wundheilung und Entzündung besitzt, als eine mögliche Therapiestrategie eignet. Die Expression von TWEAK wird nach myokardialem Infarkt stark im Herzgewebe induziert. Das gleiche gilt für den Rezeptor von TWEAK, Fn14, der vor allem auf kardialen Fibroblasten exprimiert wird. Daher wird angenommen, dass das TWEAK-Fn14-System am kardialen Remodelling und der Wundheilung im infarzierten Herzen beteiligt sein kann.
Eine rekombinante Variante von TWEAK - HSA-Flag-TWEAK - wird im Mausmodell des Myokardinfarkts getestet. Überraschenderweise zeigt sich hierbei, dass die therapeutische Behandlung von infarzierten Versuchstieren mit diesem Protein die Mortalität im Vergleich zu Placebo-behandelten Mäusen signifikant erhöht. Dies geht mit einem vermehrten Auftreten an linksventrikulären Rupturen einher, ohne dass Defekte im kardialen Remodelling oder eine erhöhte Apoptoserate im Herzen festgestellt werden können. HSA-Flag-TWEAK bewirkt eine Erhöhung der Gewebekonzentrationen an verschiedenen pro-inflammatorischen Zytokinen (IFN-γ, IL-5, IL-12, GITR, MCP-1/-5 und RANTES) und das vermehrte Einwandern von Immunzellen in das Myokard. Hierbei ist insbesondere die stark erhöhte Infiltration an neutrophilen Granulozyten auffällig. Ein kausaler Zusammenhang zwischen diesen Immunzellen und den auftretenden kardialen Rupturen kann durch die Depletion der Neutrophilen gezeigt werden: Nach der systemischen Applikation eines Ly6G-depletierenden Antikörpers ist das Auftreten von kardialen Rupturen nach TWEAK-Gabe vergleichbar mit der Placebo-behandelten Infarktgruppe. Die Tatsache, dass die Mortalität dennoch erhöht ist, deutet auf weitere negative Effekte durch TWEAK hin. Diese Ergebnisse legen die Vermutung nahe, dass eine Hemmung der TWEAK-Fn14-Achse positive Effekte auf die Wundheilung nach Herzinfarkt bewirken könnte.
Als zweite Therapiestrategie wird die pharmakologische Beeinflussung verschiedener Blutplättchen-spezifischer Zielstrukturen untersucht, um das Auftreten von Mikrothromben nach Myokardinfarkt zu reduzieren. Eine Hemmung über das Blutplättchen-Glykoprotein GPVI bewirkt in dem hier eingesetzten Mausmodell der kardialen Ischämie-Reperfusion eine signifikant verbesserte Mikrozirkulation sowie verringerte Infarktgrößen. GPVI stellt somit ein vielversprechendes Ziel für eine blutplättchenhemmende Therapie nach Myokardinfarkt dar.
Zusammengefasst werden in der vorliegenden Arbeit verschiedene neuartige Therapieoptionen untersucht, die die Auswirkungen ischämischer Erkrankungen des Herzens beeinflussen können. Die Ergebnisse besitzen daher das Potenzial, zur Entwicklung neuer Therapien nach Myokardinfarkt beizutragen.