TY - JOUR A1 - Sun, Ping A1 - Ortega, Gabriela A1 - Tan, Yan A1 - Hua, Qian A1 - Riederer, Peter F. A1 - Deckert, Jürgen A1 - Schmitt-Böhrer, Angelika G. T1 - Streptozotocin impairs proliferation and differentiation of adult hippocampal neural stem cells in vitro-correlation with alterations in the expression of proteins associated with the insulin system JF - Frontiers in Aging Neuroscience N2 - Rats intracerebroventricularily (icv) treated with streptozotocin (STZ), shown to generate an insulin resistant brain state, were used as an animal model for the sporadic form of Alzheimer's disease (sAD). Previously, we showed in an in vivo study that 3 months after STZ icv treatment hippocampal adult neurogenesis (AN) is impaired. In the present study, we examined the effects of STZ on isolated adult hippocampal neural stem cells (NSCs) using an in vitro approach. We revealed that 2.5 mM STZ inhibits the proliferation of NSCs as indicated by reduced number and size of neurospheres as well as by less BrdU-immunoreactive NSCs. Double immunofluorescence stainings of NSCs already being triggered to start with their differentiation showed that STZ primarily impairs the generation of new neurons, but not of astrocytes. For revealing mechanisms possibly involved in mediating STZ effects we analyzed expression levels of insulin/glucose system-related molecules such as the glucose transporter (GLUT) 1 and 3, the insulin receptor (IR) and the insulin-like growth factor (IGF) 1 receptor. Applying quantitative Real time-PCR (qRT-PCR) and immunofluorescence stainings we showed that STZ exerts its strongest effects on GLUT3 expression, as GLUT3 mRNA levels were found to be reduced in NSCs, and less GLUT3-immunoreactive NSCs as well as differentiating cells were detected after STZ treatment. These findings suggest that cultured NSCs are a good model for developing new strategies to treat nerve cell loss in AD and other degenerative disorders. KW - Alzheimer’s disease KW - streptozotocin KW - proliferation KW - neural stem cells KW - insulin-like growth factor 1 receptor KW - insulin receptor KW - glucose transporter KW - differentiation Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-176741 VL - 10 IS - 145 ER - TY - THES A1 - Bartossek, Thomas T1 - Structural and functional analysis of the trypanosomal variant surface glycoprotein using x-ray scattering techniques and fluorescence microscopy T1 - Strukturelle und funktionale Analyse des variablen Oberflächenproteins von Trypanosoma brucei mithilfe vön Röntgenstreutechniken und Fluoreszenzmikroskopie N2 - Trypanosoma brucei is an obligate parasite and causative agent of severe diseases affecting humans and livestock. The protist lives extracellularly in the bloodstream of the mammalian host, where it is prone to attacks by the host immune system. As a sophisticated means of defence against the immune response, the parasite’s surface is coated in a dense layer of the variant surface glycoprotein (VSG), that reduces identification of invariant epitopes on the cell surface by the immune system to levels that prevent host immunity. The VSG has to form a coat that is both dense and mobile, to shield invariant surface proteins from detection and to allow quick recycling of the protective coat during immune evasion. This coat effectively protects the parasite from the harsh environment that is the mammalian bloodstream and leads to a persistent parasitemia if the infection remains untreated. The available treatment against African Trypanosomiasis involves the use of drugs that are themselves severely toxic and that can lead to the death of the patient. Most of the drugs used as treatment were developed in the early-to-mid 20th century, and while developments continue, they still represent the best medical means to fight the parasite. The discovery of a fluorescent VSG gave rise to speculations about a potential interaction between the VSG coat and components of the surrounding medium, that could also lead to a new approach in the treatment of African Trypanosomiasis that involves the VSG coat. The initially observed fluorescence signal was specific for a combination of a VSG called VSG’Y’ and the triphenylmethane (TPM) dye phenol red. Exchanging this TPM to a bromo-derivative led to the observation of another fluorescence effect termed trypanicidal effect which killed the parasite independent of the expressed VSG and suggests a structurally conserved feature between VSGs that could function as a specific drug target against T. b. brucei. The work of this thesis aims to identify the mechanisms that govern the unique VSG’Y’ fluorescence and the trypanocidal effect. Fluorescence experiments and protein mutagenesis of VSG’Y’ as well as crystallographic trials with a range of different VSGs were utilized in the endeavour to identify the binding mechanisms between TPM compounds and VSGs, to find potentially conserved structural features between VSGs and to identify the working mechanisms of VSG fluorescence and the trypanocidal effect. These trials have the potential to lead to the formulation of highly specific drugs that target the parasites VSG coat. During the crystallographic trials of this thesis, the complete structure of a VSG was solved experimentally for the first time. This complete structure is a key component in furthering the understanding of the mechanisms governing VSG coat formation. X-ray scattering techniques, involving x-ray crystallography and small angle x-ray scattering were applied to elucidate the first complete VSG structures, which reveal high flexibility of the protein and supplies insight into the importance of this flexibility in the formation of a densely packed but highly mobile surface coat. N2 - Trypanosoma brucei ist ein eukaryotischer Parasit welcher bei Menschen und Nutztieren schwere Krankheiten auslöst. Der Protist lebt extrazellulär im Blutstrom seines Säugetier-Wirtes, in welchem er unter konstantem Angriff durch das Wirts-Immunsystem steht. Als ausgeklügelte Methode zur Umgehung der Immunantwort besitzt der Parasit einen dichten Oberflächenmantel des variablen Oberflächen-Glycoproteins (VSG), welcher die Identifikation invariabler Oberflächenproteine durch das Immunsystem erschwert und Wirts-Immunität gegen den Parasiten verhindert. Der gebildete VSG-Mantel muss gleichzeitig eine hohe Dichte besitzt, um invariable Oberflächenproteine vor Immundetektion zu beschützen, und eine hohe Mobilität aufweisen, um ein schnelles Recycling des Schutzmantels während Immunantworten zu gewährleisten. Dieser Mantel schützt den Parasiten effektiv vor dem Wirts-Immunsystem und führt bei fehlender Behandlung des Patienten zur persistenten Parasitemie durch Trypanosoma brucei. Die verfügbaren Behandlung gegen die Afrikanische Trypanosomiasis beinhaltet die Benutzung von Medikamenten welche ihrerseits z.T. stark toxisch sind und den Tod des Patienten verursachen können. Ein Großteil der verfügbaren Medikamente wurden zu Beginn des letzten Jahrhunderts entwickelt und stellen trotz anhaltenden Entwicklungen noch immer die beste Lösung im Kampf gegen den Parasiten dar. Die Entdeckung eines fluoreszierenden VSGs deutete auf eine Interaktionen zwischen dem VSG Mantel und Bestandteilen des umgebenden Medium hin, welche die Entwicklung von Medikamenten mit dem VSG Mantel als Drug Target ermöglichen könnte. Das ursprünglich beobachtete Fluoreszenz-Signal war spezifisch für eine Kombination eines VSG namens VSG’Y’ und dem Triphenylmethan (TPM) Phenolrot. Der Austausch von Phenolrot gegen ein Brom-Derivat führte zur Beobachtung eines weiteren Fluoreszenz-Effekts, welcher unabhängig vom exprimierten VSG auftritt und letal für den Parasiten ist. Dieser so genannten Trypanozide Effekt lässt auf konservierte Strukturen schließen, welche von allen VSGs geteilt werden und als hochspezifisches Drug Target gegen T. b. brucei fungieren könnten. Das Ziel der vorliegenden Arbeit war es, die Mechanismen zu identifizieren, welche die einzigartige VSG’Y’-Fluoreszenz und den Trypanoziden Effekt auslösen. Fluoreszenz-Experimente und Protein-Mutagenese von VSG’Y’, sowie röntgenkristallographische Analysen mit mehreren unterschiedlichen VSGs wurden in dem Bestreben durchgeführt, die Bindung zwischen VSGs und TPMs zu charakterisieren, potentiell konservierte Strukturen von VSGs zu finden und die Mechanismen der einzigartigen VSG’Y’-Fluoreszenz und des Trypanoziden Effekts zu identifizieren. Diese Arbeiten haben das Potenzial die Formulierung hochspezifischer Medikamente mit VSGs als Drug Target anzutreiben. Im Rahmen der kristallographischen Analysen wurden die ersten vollständigen VSG Strukturen ermittelt, welche eine hohe Bedeutung für das Verständnis über die Bildung des VSG-Mantels haben. Die VSG Strukturen wurden u.a. per Röntgenkristallographie und Kleinwinkel-Röntgenstreuung aufgeschlüsselt und zeigten dass VSGs ein hohes Maß an Flexibilität besitzen. Diese Flexibilität ist wichtig für die Bildung eines dichten und hochmobilen VSG-Mantels. KW - Trypanosoma brucei brucei KW - Röntgenstrukturanalyse KW - Röntgen-Kleinwinkelstreuung KW - Mutagenese KW - Fluoreszenzmikroskopie KW - Variables Oberflächen Glycoprotein KW - VSG Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144775 ER - TY - JOUR A1 - Dunce, James M. A1 - Milburn, Amy E. A1 - Gurusaran, Manickam A1 - da Cruz, Irene A1 - Sen, Lee T. A1 - Benavente, Ricardo A1 - Davies, Owen R. T1 - Structural basis of meiotic telomere attachment to the nuclear envelope by MAJIN-TERB2-TERB1 JF - Nature Communications N2 - Meiotic chromosomes undergo rapid prophase movements, which are thought to facilitate the formation of inter-homologue recombination intermediates that underlie synapsis, crossing over and segregation. The meiotic telomere complex (MAJIN, TERB1, TERB2) tethers telomere ends to the nuclear envelope and transmits cytoskeletal forces via the LINC complex to drive these rapid movements. Here, we report the molecular architecture of the meiotic telomere complex through the crystal structure of MAJIN-TERB2, together with light and X-ray scattering studies of wider complexes. The MAJIN-TERB2 2:2 hetero-tetramer binds strongly to DNA and is tethered through long flexible linkers to the inner nuclear membrane and two TRF1-binding 1:1 TERB2-TERB1 complexes. Our complementary structured illumination microscopy studies and biochemical findings reveal a telomere attachment mechanism in which MAJIN-TERB2-TERB1 recruits telomere-bound TRF1, which is then displaced during pachytene, allowing MAJIN-TERB2-TERB1 to bind telomeric DNA and form a mature attachment plate. KW - DNA KW - meiosis KW - proteins KW - super-resolution microscopy KW - X-ray crystallography Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226416 VL - 9 ER - TY - JOUR A1 - Hobbs, Christopher A1 - Jaskaniec, Sonia A1 - McCarthy, Eoin K. A1 - Downing, Clive A1 - Opelt, Konrad A1 - Güth, Konrad A1 - Shmeliov, Aleksey A1 - Mourad, Maurice C. D. A1 - Mandel, Karl A1 - Nicolosi, Valeria T1 - Structural transformation of layered double hydroxides: an in situ TEM analysis JF - npj 2D Materials and Applications N2 - A comprehensive nanoscale understanding of layered double hydroxide (LDH) thermal evolution is critical for their current and future applications as catalysts, flame retardants and oxygen evolution performers. In this report, we applied in situ transmission electron microscopy (TEM) to extensively characterise the thermal progressions of nickel-iron containing (Ni-Fe) LDH nanomaterials. The combinative approach of TEM and selected area electron diffraction (SAED) yielded both a morphological and crystallographic understanding of such processes. As the Ni-Fe LDH nanomaterials are heated in situ, an amorphization occurred at 250 °C, followed by a transition to a heterogeneous structure of NiO particles embedded throughout a NiFe2O4 matrix at 850 °C, confirmed by high-resolution TEM and scanning TEM. Further electron microscopy characterisation methodologies of energy-filtered TEM were utilised to directly observe these mechanistic behaviours in real time, showing an evolution and nucleation to an array of spherical NiO nanoparticles on the platelet surfaces. The versatility of this characterisation approach was verified by the analogous behaviours of Ni-Fe LDH materials heated ex situ as well as parallel in situ TEM and SAED comparisons to that of an akin magnesium-aluminium containing (Mg-Al) LDH structure. The in situ TEM work hereby discussed allows for a state-of-the-art understanding of the Ni-Fe material thermal evolution. This is an important first, which reveals pivotal information, especially when considering LDH applications as catalysts and flame retardants. KW - electrocatalysis KW - two-dimensional materials Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-320752 VL - 2 ER - TY - JOUR A1 - Ribitsch, Iris A1 - Peham, Christian A1 - Ade, Nicole A1 - Duerr, Julia A1 - Handschuh, Stephan A1 - Schramel, Johannes Peter A1 - Vogl, Claus A1 - Walles, Heike A1 - Egerbacher, Monika A1 - Jenner, Florian T1 - Structure-Function relationships of equine menisci JF - PLoS ONE N2 - Meniscal pathologies are among the most common injuries of the femorotibial joint in both human and equine patients. Pathological forces and ensuing injuries of the cranial horn of the equine medial meniscus are considered analogous to those observed in the human posterior medial horn. Biomechanical properties of human menisci are site-and depth-specific. However, the influence of equine meniscus topography and composition on its biomechanical properties is yet unknown. A better understanding of equine meniscus composition and biomechanics could advance not only veterinary therapies for meniscus degeneration or injuries, but also further substantiate the horse as suitable translational animal model for (human) meniscus tissue engineering. Therefore, the aim of this study was to investigate the composition and structure of the equine knee meniscus in a site-and age-specific manner and their relationship with potential site-specific biomechanical properties. The meniscus architecture was investigated histologically. Biomechanical testing included evaluation of the shore hardness (SH), stiffness and energy loss of the menisci. The SH was found to be subjected to both age and site-specific changes, with an overall higher SH of the tibial meniscus surface and increase in SH with age. Stiffness and energy loss showed neither site nor age related significant differences. The macroscopic and histologic similarities between equine and human menisci described in this study, support continued research in this field. KW - Human Medial Meniscus KW - Articular-Cartilage KW - Biomechanical Properties KW - Compressive Properties KW - Human Knee KW - Collagen KW - Injuries KW - Models KW - Repair KW - Osteoarthritis Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-225214 VL - 13 IS - 3 ER - TY - JOUR A1 - Wurmb, T A1 - Schorscher, N A1 - Justice, P A1 - Dietz, S A1 - Schua, R A1 - Jarausch, T A1 - Kinstle, U A1 - Greiner, J A1 - Möldner, G A1 - Müller, J A1 - Kraus, M A1 - Simon, S A1 - Wagenhäuser, U A1 - Hemm, J A1 - Roewer, N A1 - Helm, M T1 - Structured analysis, evaluation and report of the emergency response to a terrorist attack in Wuerzburg, Germany using a new template of standardised quality indicators JF - Scandinavian Journal of Trauma, Resuscitation and Emergency Medicine N2 - Background: Until now there has been a reported lack of systematic reports and scientific evaluations of rescue missions during terror attacks. This however is urgently required in order to improve the performance of emergency medical services and to be able to compare different missions with each other. Aim of the presented work was to report the systematic evaluation and the lessons learned from the response to a terror attack that happened in Wuerzburg, Germany in 2016. Methods: A team of 14 experts developed a template of quality indicators and operational characteristics, which allow for the description, assessment and comparison of civil emergency rescue missions during mass killing incidents. The entire systematic evaluation process consisted of three main steps. The first step was the systematic data collection according to the quality indicators and operational characteristics. Second was the systematic stratification and assessment of the data. The last step was the prioritisation of the identified weaknesses and the definition of the lessons learned. Results: Five important “lessons learned” have been defined. First of all, a comprehensive concept for rescue missions during terror attacks is essential. Furthermore, the establishment of a defined high priority communication infrastructure between the different dispatch centres (“red phone”) is vital. The goal is to secure the continuity of information between a few well-defined individuals. Thirdly, the organization of the incident scene needs to be commonly decided and communicated between police, medical services and fire services during the mission. A successful mission tactic requires continuous flux of reports to the on-site command post. Therefore, a predefined and common communication infrastructure for all operational forces is a crucial point. Finally, all strategies need to be extensively trained before the real life scenario hits. Conclusion: According to a systematic evaluation, we defined the lessons learned from a terror attack in 2016. Further systematic reports and academic work surrounding life threatening rescue missions and mass killing incidents are needed in order to ultimately improve such mission outcomes. In the future, a close international collaboration might help to find the best database to report and evaluate major incidents but also mass killing events. KW - terror attack KW - mass casualties KW - evaluation KW - quality indicators KW - rescue mission Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177054 VL - 26 IS - 87 ER - TY - JOUR A1 - Benoit, Sandrine A1 - Scheurlen, Michael A1 - Goebeler, Matthias A1 - Stoevesandt, Johanna T1 - Structured diagnostic approach and risk assessment in mucous membrane pemphigoid with oesophageal involvement JF - Acta Dermato-Venereologica N2 - Oesophageal involvement in mucous membrane pemphigoid is considered rare, but it may be underdiagnosed. To assess the incidence of oesophageal involvement in a group of patients with newly diagnosed mucous membrane pemphigoid we retrospectively analysed the medical records of 30 consecutive patients with mucous membrane pemphigoid diagnosed between 2006 and 2016 at the Department of Dermatology, University Hospital Würzburg. Twenty-one patients (70%) reported symptoms indicative of oesophageal mucous membrane pemphigoid. Twelve patients (40%) underwent oesophagogastroduodenoscopy, and oesophageal pathology compatible with mucous membrane pemphigoid was endoscopically found in 9 cases (30%). In all patients indirect and direct immunofluorescence were performed. Patients with and without oesophageal involvement did not differ with regard to the results of indirect immunofluorescence on salt-split human skin and monkey oesophagus. Study results demonstrate the necessity of a standardized diagnostic work-up, including adequate tissue samples for direct immunofluorescence, to prevent underdiagnosis of oesophageal mucous membrane pemphigoid. KW - cicatricial pemphigoid KW - mucous membrane pemphigoid KW - oesophagogastroduodenoscopy KW - laminin 332 Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-176191 VL - 98 ER - TY - JOUR A1 - Kasaragod, Vikram B. A1 - Schindelin, Hermann T1 - Structure–Function Relationships of Glycine and GABAA Receptors and Their Interplay With the Scaffolding Protein Gephyrin JF - Frontiers in Molecular Neuroscience N2 - Glycine and γ-aminobutyric acid (GABA) are the major determinants of inhibition in the central nervous system (CNS). These neurotransmitters target glycine and GABAA receptors, respectively, which both belong to the Cys-loop superfamily of pentameric ligand-gated ion channels (pLGICs). Interactions of the neurotransmitters with the cognate receptors result in receptor opening and a subsequent influx of chloride ions, which, in turn, leads to hyperpolarization of the membrane potential, thus counteracting excitatory stimuli. The majority of glycine receptors and a significant fraction of GABAA receptors (GABAARs) are recruited and anchored to the post-synaptic membrane by the central scaffolding protein gephyrin. This ∼93 kDa moonlighting protein is structurally organized into an N-terminal G-domain (GephG) connected to a C-terminal E-domain (GephE) via a long unstructured linker. Both inhibitory neurotransmitter receptors interact via a short peptide motif located in the large cytoplasmic loop located in between transmembrane helices 3 and 4 (TM3-TM4) of the receptors with a universal receptor-binding epitope residing in GephE. Gephyrin engages in nearly identical interactions with the receptors at the N-terminal end of the peptide motif, and receptor-specific interaction toward the C-terminal region of the peptide. In addition to its receptor-anchoring function, gephyrin also interacts with a rather large collection of macromolecules including different cytoskeletal elements, thus acting as central scaffold at inhibitory post-synaptic specializations. Dysfunctions in receptor-mediated or gephyrin-mediated neurotransmission have been identified in various severe neurodevelopmental disorders. Although biochemical, cellular and electrophysiological studies have helped to understand the physiological and pharmacological roles of the receptors, recent high resolution structures of the receptors have strengthened our understanding of the receptors and their gating mechanisms. Besides that, multiple crystal structures of GephE in complex with receptor-derived peptides have shed light into receptor clustering by gephyrin at inhibitory post-synapses. This review will highlight recent biochemical and structural insights into gephyrin and the GlyRs as well as GABAA receptors, which provide a deeper understanding of the molecular machinery mediating inhibitory neurotransmission. KW - glycine receptors KW - GABAA receptors KW - gephyrin KW - moonlighting protein KW - inhibitory post-synaptic specialization KW - cytoskeletal proteins Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-325607 VL - 11 ER - TY - THES A1 - Paul, Ursula Sofia Désirée T1 - Studies on the Reactivity of Iridium Bis(phosphinite) Pincer Complexes towards Phosphines, Boranes and their Lewis Adducts and on the Reactivity of Cyclic (Alkyl)(Amino) Carbenes and Nickel Complexes thereof T1 - Studien hinsichtlich der Reaktivität von Iridium bis(phosphinit)-Pincerkomplexen gegenüber Phosphanen, Boranen und deren Lewis Addukten und bezüglich der Reaktivität von zyklischen (Alkyl)(Amino) Carbenen und Nickelkomplexen davon N2 - The first part of the present work provides an insight into the chemistry of iridium complexes bearing the bis(phosphinite) pincer ligand tBuPOCOP (k3-C6H3-1,3-(OPtBu2)2) towards primary boranes and phosphines as well as phosphine-borane Lewis adducts. It furthermore encloses some more detailed studies on their application as catalyst for the dehydrogenative coupling of the latter compounds. The results presented herein can be divided into three sections: I. synthesis and characterization of aryl dihydroborate ligated iridium(III) complexes II. and aryl phosphine coordinated iridium(I) and dihydrido iridium(III) complexes, III. as well as studies on the reactivity of the parent iridium pincer complexes towards BH3 adducts of primary phosphines, which led to first results in the homogeneous catalytic dehydrocoupling of P-aryl substituted phosphine boranes mediated by such iridium pincer complexes. The second part of the present work provides an insight into the chemistry of cyclic (alkyl)(amino) carbene-stabilized nickel complexes as well as it encloses some more detailed studies on the properties and reactivity of the free carbenes itself. The results presented herein can be divided into four sections: I. synthesis and characterization of cyclic (alkyl)(amino) carbene-stabilized nickel carbonyl complexes, II. which allow the evaluation and quantification of the steric and electronic properties of these cyclic (alkyl)(amino) carbenes, III. first studies on the reactivity of these novel nickel complexes, and IV. investigations on C–F and C–H bond activation at the carbene center of cyclic (alkyl)(amino) carbenes. N2 - Der erste Abschnitt der vorliegenden Arbeit gibt einen vertieften Einblick in die Reaktivität von Iridiumkomplexen, die den bis(Phosphinit)-Pincer tBuPOCOP (k3-C6H3-1,3-(OPtBu2)2) als Liganden aufweisen, gegenüber primären Boranen und Phosphanen sowie gegenüber Phosphan-Boran-Lewis-Paaren. Desweiteren sind detailliertere Untersuchungen zu deren Anwendung als Katalysator zur dehydrogenativen Kupplung von Phosphanboranen enthalten. Die erhaltenen Ergebnisse lassen sich in drei Teilbereiche gliedern: I. Synthese und Charakterisierung von Iridium(III)-Komplexen, die Aryldihydroboratliganden tragen, II. Arylphosphan-koordinierte Iridium(I)- und Iridium(III)-Komplexe, III. sowie Studien zur Reaktivität der zugrundeliegenden Iridiumpincerkomplexe gegenüber BH3-Addukten von primären Phosphanen. Diese führten zu ersten Ergebnissen in der homogen-katalytischen Dehydrokupplung von Phosphanboranen unter Verwendung der Iridiumpincerkomplexe als Katalysator. Der zweite Abschnitt der vorliegenden Arbeit gibt einen Einblick in die Chemie von Nickelkomplexen, die durch zyklische (Alkyl)(Amino) Carbene (cAACs) stabilisiert werden. Desweiteren sind Untersuchungen zu den Eigenschaften und zur Reaktivität der freien Carbene selbst enthalten. Die erhaltenen Ergebnisse lassen sich in vier Teilbereiche gliedern: I. Synthese und Charakterisierung von Nickelkomplexen, die durch zyklische (Alkyl)(Amino) Carbene stabilisiert werden, II. welche die Bestimmung und Quantifizierung von deren sterischen und elektronischen Eigenschaften zulassen, III. erste Studien zur Reaktivität dieser neuartigen Nickelkomplexe, sowie IV. Untersuchungen zur C–F- und C–H-Bindungsaktivierung am Carbenkohlenstoffatom der entsprechenden zyklische (Alkyl)(Amino) Carbene. KW - Iridiumkomplexe KW - Iridium bis(phosphinite) pincer complexes KW - cyclic (alkyl)(amino) carbenes KW - carbene-stabilized nickel complexes KW - Nickelkomplexe KW - Metallorganische Chemie Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151963 ER - TY - THES A1 - van Eeuwijk, Judith Martina Maria T1 - Studies on thrombopoiesis and spleen tyrosine kinase-mediated signaling in platelets T1 - Untersuchungen der Thrombopoese und der spleen tyrosine kinase-vermittelten Signaltransduktion in Thrombozyten N2 - In mammals, anucleate blood platelets are constantly produced by their giant bone marrow (BM) progenitors, the megakaryocytes (MKs), which originate from hematopoietic stem cells. Megakaryopoiesis and thrombopoiesis have been studied intensively, but the exact mechanisms that control platelet generation from MKs remain poorly understood. Using multiphoton intravital microscopy (MP-IVM), thrombopoiesis and proplatelet formation were analyzed in the murine BM in real-time and in vivo, identifying an important role for several proteins, including Profilin1, TRPM7 and RhoA in thrombopoiesis. Currently, it is thought that blood cell precursors, such as MKs, migrate from the endosteal niche towards the vascular niche during maturation. In contrast to this paradigm, it was shown that MKs are homogeneously distributed within the dense BM blood vessel network, leaving no space for vessel-distant niches. By combining results from in vivo MP-IVM, in situ light-sheet fluorescence microscopy (LSFM) of the intact BM as well as computational simulations, surprisingly slow MK migration, limited intervascular space and a vessel-biased MK pool were revealed, contradicting the current concept of directed MK migration during thrombopoiesis. Platelets play an essential role in hemostasis and thrombosis, but also in the pathogenesis of ischemic stroke. Ischemic stroke, which is mainly caused by thromboembolic occlusion of brain arteries, is among the leading causes of death and disability worldwide with limited treatment options. The platelet collagen receptor glycoprotein (GP) VI is a key player in arterial thrombosis and a critical determinant of stroke outcome, making its signaling pathway an attractive target for pharmacological intervention. The spleen tyrosine kinase (Syk) is an essential signaling mediator downstream of GPVI, but also of other platelet and immune cell receptors. In this thesis, it was demonstrated that mice lacking Syk specifically in platelets are protected from arterial thrombus formation and ischemic stroke, but display unaltered hemostasis. Furthermore, it was shown that mice treated with the novel, selective and orally bioavailable Syk inhibitor BI1002494 were protected in a model of arterial thrombosis and had smaller infarct sizes and a significantly better neurological outcome 24 h after transient middle cerebral artery occlusion (tMCAO), also when BI1002494 was administered therapeutically, i.e. after ischemia. These results provide direct evidence that pharmacological Syk inhibition might become a safe therapeutic strategy. The T cell receptor  chain-associated protein kinase of 70 kDA (Zap-70) is also a spleen tyrosine kinase family member, but has a lower intrinsic activity compared to Syk and is expressed in T cells and natural killer (NK) cells, but not in platelets. Unexpectedly, arterial thrombus formation in vivo can occur independently of Syk kinase function as revealed by studies in Sykki mice, which express Zap-70 under the control of intrinsic Syk promoter elements. N2 - In Säugetieren werden kernlose Thrombozyten durch ihren riesigen Knochenmark- (KM-) Vorläuferzellen, die Megakaryozyten (MK), die von hämatopoetischen Stammzellen stammen, ständig produziert. Megakaryopoese und Thrombopoese wurden schon intensiv untersucht, aber die genauen Mechanismen, die die Thrombozytenproduktion aus MK kontrollieren, bleiben weitgehend unverstanden. Mittels Multiphotonen-Intravitalmikroskopie (MP-IVM) wurden Thrombopoese und Proplättchenbildung im murinen KM in Echtzeit in vivo untersucht. Dadurch wurde eine wichtige Rolle für die Proteine Profilin1, TRPM7 und RhoA in der Thrombopoese identifiziert. Derzeit wird angenommen, dass Blutzellvorläufer, wie MK, während der Reifung von der endostalen Nische in Richtung der Gefäßnische migrieren. Im Gegensatz zu diesem Paradigma wurde hier gezeigt, dass MK homogen innerhalb des dichten KM Blutgefäßnetzes verteilt sind, so dass kein Raum für Gefäß-ferne Nischen besteht. Durch Ergebnisse von in vivo MP-IVM, in situ Licht-Blatt-Fluoreszenzmikroskopie (LSFM) des intakten KM sowie Computersimulationen wurden eine überraschend langsame MK-Migration, ein begrenzter intervaskulärer Raum und eine asymmetrische MK-Verteilung gezeigt, was im Widerspruch zum derzeitig akzeptierten Konzept der gerichteten MK-Migration während der Thrombopoese steht. Die Thrombozyten spielen eine wesentliche Rolle nicht nur bei der Hämostase und Thrombose, sondern auch in der Pathogenese des ischämischen Schlaganfalls. Der ischämische Schlaganfall, der vor allem durch einen thromboembolischen Verschluss von Gehirnarterien verursacht wird, ist eine der häufigsten Ursachen für Tod und Behinderung weltweit und die Behandlungsmöglichkeiten sind sehr eingeschränkt. Der thrombozytäre Kollagenrezeptor Glykoprotein (GP) VI ist ein wichtiger Faktor in der arteriellen Thrombose und trägt entscheidend zur Pathogenese des ischämischen Schlaganfalls bei, sodass dessen Signalweg ein attraktives Ziel für pharmakologische Interventionen darstellen könnte. Die spleen tyrosine kinase (Syk) ist ein wichtiges Molekül im GPVI-Signalweg, aber auch in den Signalkaskaden von anderen Thrombozyten- und Immunzellrezeptoren. Es wurde nachgewiesen, dass Mäuse mit einer thrombozytären Syk-Defizienz, vor arterieller Thrombusbildung und ischämischem Schlaganfall geschützt sind, aber unveränderte Hämostase zeigen. Darüber hinaus wurde gezeigt, dass Mäuse, die mit dem neuartigen, selektiven und oral bioverfügbaren Syk-Inhibitor BI1002494 behandelt wurden, geschützt sind in einem Modell der arteriellen Thrombose. Auch hatten sie kleinere Infarkte und eine deutlich bessere neurologische Funktion 24 Stunden nach der transienten Arteria cerebri media Okklusion (tMCAO), auch wenn BI1002494 therapeutisch, d.h. nach der Ischämie, verabreicht wurde. Diese Ergebnisse deuten darauf hin, dass die pharmakologische Hemmung von Syk eine sichere therapeutische Strategie bei Schlaganfall sein könnte. Der T-Zell Rezeptor -chain-associated protein kinase of 70 kDa (Zap-70) ist auch ein spleen tyrosine kinase-Familienmitglied, hat aber eine geringere intrinsische Aktivität im Vergleich zu Syk und wird in T-Zellen und natural killer (NK) Zellen exprimiert, nicht aber in Thrombozyten. Studien in Sykki Mäusen, die unter der Kontrolle der intrinsischen Syk Promotorelemente Zap-70 exprimieren, ergaben, dass die arterielle Thrombusbildung in vivo unabhängig von der Syk-Kinasefunktion stattfinden kann. KW - Thrombose KW - Megakaryozyt KW - Thrombopoese KW - Mikroskopie KW - Hämostase KW - Thrombosis KW - Megakaryocyte KW - Hemostasis KW - Microscopy KW - Thrombopoiesis KW - Platelet KW - Ischemic stroke KW - Spleen tyrosine kinase Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-142933 ER -