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Chemical neurotransmission is a complex process of central importance for nervous system function. It is thought to be mediated by the orchestration of hundreds of proteins for its successful execution. Several synaptic proteins have been shown to be relevant for neurotransmission and many of them are highly conserved during evolution- suggesting a universal mechanism for neurotransmission. This process has checkpoints at various places like, neurotransmitter uptake into the vesicles, relocation of the vesicles to the vicinity of calcium channels in order to facilitate Ca2+ induced release thereby modulating the fusion probability, formation of a fusion pore to release the neurotransmitter and finally reuptake of the vesicles by endocytosis. Each of these checkpoints has now become a special area of study and maintains its own importance for the understanding of the overall process. Ca2+ induced release occurs at specialized membrane structures at the synapse known as the active zones. These are highly ordered electron dense grids and are composed of several proteins which assist the synaptic vesicles in relocating in the vicinity of Ca2+ channels thereby increasing their fusion probability and then bringing about the vesicular fusion itself. All the protein modules needed for these processes are thought to be held in tight arrays at the active zones, and the functions of a few have been characterized so far at the vertebrate active zones. Our group is primarily interested in characterizing the molecular architecture of the Drosophila synapse. Due to its powerful genetics and well-established behavioural assays Drosophila is an excellent system to investigate neuronal functioning. Monoclonal antibodies (MABs) from a hybridoma library against Drosophila brain are routinely used to detect novel proteins in the brain in a reverse genetic approach. Upon identification of the protein its encoding genetic locus is characterized and a detailed investigation of its function is initiated. This approach has been particularly useful to detect synaptic proteins, which may go undetected in a forward genetic approach due to lack of an observable phenotype. Proteins like CSP, Synapsin and Sap47 have been identified and characterized using this approach so far. MAB nc82 has been one of the shortlisted antibodies from the same library and is widely used as a general neuropil marker due to the relative transparency of immunohistochemical whole mount staining obtained with this antibody. A careful observation of double stainings at the larval neuromuscular junctions with MAB nc82 and other pre and post-synaptic markers strongly suggested an active zone localization of the nc82 antigen. Synaptic architecture is well characterized in Drosophila at the ultrastructural level. However, molecular details for many synaptic components and especially for the active zone are almost entirely unknown. A possible localization at the active zone for the nc82 antigen served as the motivation to initiate its biochemical characterization and the identification of the encoding gene. In the present thesis it is shown by 2-D gel analysis and mass spectrometry that the nc82 antigen is a novel active zone protein encoded by a complex genetic locus on chromosome 2R. By RT-PCR exons from three open reading frames previously annotated as separate genes are demonstrated to give rise to a transcript of at least 5.5 kb. Northern blots produce a prominent signal of 11 kb and a weak signal of 2 kb. The protein encoded by the 5.5 kb transcript is highly conserved amongst insects and has at its N-terminus significant homology to the previously described vertebrate active zone protein ELKS/ERC/CAST. Bioinformatic analysis predicts coiled-coil domains spread all over the sequence and strongly suggest a function involved in organizing or maintaining the structure of the active zone. The large C-terminal region is highly conserved amongst the insects but has no clear homologues in veretebrates. For a functional analysis of this protein transgenic flies expressing RNAi constructs under the control of the Gal4 regulated enhancer UAS were kindly provided by the collaborating group of S.Sigrist (Gِttingen). A strong pan-neuronal knockdown of the nc82 antigen by transgenic RNAi expression leads to embryonic lethality. A relatively weaker RNAi expression results in behavioural deficits in adult flies including unstable flight and impaired walking behavior. Due to this peculiar phenotype as observed in the first knockdown studies the gene was named “bruchpilot” (brp) encoding the protein “Bruchpilot (BRP)” (German for crash pilot). A pan-neuronal as well as retina specific downregulation of this protein results in loss of ON and OFF transients in ERG recordings indicating dysfunctional synapses. Retina specific downregulation also shows severely impaired optomotor behaviour. Finally, at an ultrastructural level BRP downregulation seems to impair the formation of the characteristic T-shaped synaptic ribbons at the active zones without significantly altering the overall synaptic architecture (in collaboration with E.Asan). Vertebrate active zone protein Bassoon is known to be involved in attaching the synaptic ribbons to the active zones as an adapter between active zone proteins RIBEYE and ERC/CAST. A mutation in Bassoon results in a floating synaptic ribbon phenotype. No protein homologous to Bassoon has been observed in Drosophila. BRP downregulation also results in absence of attached synaptic ribbons at the active zones. This invites the speculation of an adapter like function for BRP in Drosophila. However, while Bassoon mutant mice are viable, BRP deficit in addition to the structural phenotype also results in severe behavioural and physiological anomalies and even stronger downregulation causes embryonic lethality. This therefore suggests an additional and even more important role for BRP in development and normal functioning of synapses in Drosophila and also in other insects. However, how BRP regulates synaptic transmission and which other proteins are involved in this BRP dependant pathway remains to be investigated. Such studies certainly will attract prominent attention in the future.
In der vorliegenden Arbeit wird über die Synthese, Struktur und katalytische Aktivität von borverbrückten Gruppe 4 Metallocenophanen berichtet, die als Katalysatoren in der Ziegler-Natta-artigen Olefinpolymerisation eingesetzt werden können. Neben den bereits bekannten [1]Borametallocenophanen wurden weitere Komplexe mit unterschiedlichen Substituenten, als auch die bislang unbekannten [2]Borametallocenophane synthetisiert und charakterisiert. Vergleichende Polymerisationsstudien einer Reihe von unterschiedlich substituierten [n]Borametallocenophanen (n = 1,2) wurden unter definierten Standardbedingungen durchgeführt, um einen möglichen Einfluss der am Boratom gebundenen Substituenten zu beobachten. Weitergehende Untersuchungen bezogen sich auf den Einfluss dieser Substituenten auf sterische und elektronische Einflüsse, die mit den Polymerisationsergebnissen korreliert wurden. Hierbei wurden die sterischen Einflüsse der verschiedenen Substituenten anhand der Kristallstrukturen festgemacht; elektronische Einflüsse sollten anhand von CO Schwingungen, die mittels Infrarotspektroskopie beobachtet werden können, von korrespondierenden Carbonylkomplexen und alternativ mittels 91Zr-NMR Spektroskopie untersucht werden.
Somites are repeated epithelial segments that are generated in a rhythmic manner from the presomitic mesoderm (PSM) in the embryonic tailbud. Later, they differentiate into skeletal muscle, cartilage and dermis. Somitogenesis is regulated by a complex interplay of different pathways. Notch/Delta signaling is one of the pathways well characterized in zebrafish through mutants affected in its different components. Previous work in mouse, chicken and zebrafish has shown that also additional components are required during somitogenesis, most importantly through an FGF and Retinoic acid (RA) gradient, as well as Wnt signaling. However, no zebrafish mutants with defects in these pathways showing specific somite malformations are described. This was explained by functional redundancies among related genes that have resulted from a whole genome duplication which occurred in a teleost fish ancestor 350 million years ago. As distinct duplicates exist in different teleost species, a large scale mutagenesis screen in the medaka (Oryzias latipes) has been performed successfully in Kyoto, Japan. I analyzed nine of the isolated medaka mutants that show variable aspects of somitic phenotypes. This includes a complete or partial loss of somite boundaries (e.g. bms and sne), somites with irregular sizes and shapes (e.g. krz and fsl) or partially fused and enlarged somites (e.g. dpk). Although some of these medaka mutants share characteristics with previously described zebrafish somite mutants, most of the mutants represent unique phenotypes, not obtained in the zebrafish screens. In-situ hybridization analyses with marker genes implicated in the segmentation clock (e.g. her7), establishment of anterior-posterior (A-P) polarity (e.g. mesp) and differentiation of somites (e.g. myf5, lfng) revealed that the medaka mutants can be separated into two classes. Class I shows defects in tailbud formation and PSM prepatterning, and lateron somite boundary formation was impaired in these mutants. A unique member of this class with a novel phenotype is the doppelkorn (dpk) mutant that has single fused or enlarged somites. This phenotype has not been reported till now in zebrafish somite mutants. In-situ analyses on dpk showed that stabilization of the cyclically expressed somitogenesis clock genes must be affected in this mutant. This is accompanied by a disrupted regulation of A-P polarity genes like mesp. This suggests that dpk is a mutant deficient in the wave front, which is necessary for the down-regulation of oscillating genes in the anterior PSM. Furthermore, as the initiation of oscillation of all three cyclic her genes was unaffected in dpk embryos, I could exclude that this mutant in affected in the Notch/Delta pathway. Another mutant that belongs to this class is the samidare (sam) mutant. Morphologically, sam mutants are similar to zebrafish after eight (aei). In both cases, the first 7-9 somites are formed properly, but after this somite formation ceases. Different to the situation in aei, sam mutant embryos presented an additional defect in the mid-hindbrain boundary (MHB) region. Similar MHB defects were described in the zebrafish fgf8 mutant acerebellar (ace). In ace zebrafish mutant, somites were only slightly defective, although FGF signaling has been shown to be important for somite formation in chicken, mouse and zebrafish. This was explained by functional redundancy between fgf8 and fgf24 ligands in the tailbud of zebrafish. Thus, it is interesting to suggest that the sam mutant, based on the parallel defects in somites and MHB, is a potential member of the FGF signaling pathway muatnts. It was shown that FGF plays a crucial role during MHB formation in medaka. In addition, I showed that fgf8 acts non-redundantly during tailbud formation and somitogenesis in medaka. Furthermore, I showed that FGF signaling regulates somite size also in medaka and that fgfr1 is the only FGF receptor expressed in the tailbud and somites. In class II medaka somite mutants, PSM prepatterning appears normal, whereas A-P polarity, boundary formation, epithelialization or the later differentiation of somites appears to be affected. Such mutants have not been isolated so far in zebrafish, mice or chicken. Therefore, medaka class II somite mutants seem to be a novel group of mutants that opens new perspectives to analyze A-P polarity regulation, determination and boundary formation in the presence of a normally functioning clock in the PSM. Identifying the encoding genes for all analyzed medaka somite mutants will contribute to the understanding of the molecular interactions of different signaling pathways involved during somitogenesis, and is expected to result in the identification of new components.
Obwohl Simulatoruntersuchungen geringere Abriebwerte für Keramik-Köpfe gezeigt haben, konnten klinische Studien diese Erkenntnisse bisher nicht bestätigen. Bisher existiert keine Studie mit einer angemessenen Teststärke, die das Abriebverhalten von 28 mm CoCr- und Biolox-Köpfen vergleicht. Ziel dieser Studie war es, das in-vivo-Abriebverhalten von Keramik- und Metall-Köpfen in Verbindung mit der Harris-Galante-Pfanne zu untersuchen. Bei allen Patienten wurde ein zementfreies Pfannenimplantat nach Harris-Galante (Zimmer) implantiert. Die Inlays bestanden aus konventionell gefertigtem UHMWPE. 108 Patienten erhielten CoCr-Köpfe, 99 weitere Patienten wurden mit Keramik-Köpfen (Biolox) versorgt. Die 2D-Abriebrate wurde mit der Hip-analysis-suite von Martell über einen Zeitraum von 5,2 Jahren bei den Biolox- beziehungsweise 8 Jahren bei den CoCr-Köpfen untersucht. Die Metall-Köpfe zeigten einen linearen Abrieb von 0,14  0,11 mm pro Jahr, verglichen mit 0,13  0,08 mm pro Jahr bei den Keramik-Köpfen. Dieser Unterschied war, insbesondere nach Anpassung an die klinischen Einflussfaktoren, nicht signifikant (p = 0,46). Die Power-Analyse zeigte eine Teststärke von 80%, einen Unterschied von 28% (0,038 mm pro Jahr) zu detektieren. Die vorliegende Studie ist die erste, die das Abriebverhalten von 28 mm Metall- und Keramik-Köpfen im gleichen Pfannenimplantat mit ausreichender Teststärke vergleicht. Mit einer Teststärke von 80%, eine Abriebreduktion um 28% zu erkennen, zeigt diese Studie keinen Unterschied zwischen Biolox- und Metall-Köpfen in Verbindung mit konventionellen UHMWPE-Inlays in einer modularen Pfanne.
The subject of this work has been the investigation of dynamical processes that occur during and after the interaction of matter with pulses of femtosecond laser radiation. The experiments presented here were performed in the gas phase and involve one atomic and several model molecular systems. Absorption of femtosecond laser radiation by these systems induces an electronic excitation, and subsequently their ionization, photofragmentation or isomerization. The specific adjustment of the excitation laser field properties offers the possibility to manipulate the induced electronic excitation and to influence the formation of the associated photoproducts. From the perspective of the employed spectroscopic methods, the development of photoelectron spectroscopy and its implementation in laser control experiments has been of particular interest in this thesis. This technique allows for a most direct and intuitive observation of electronic excitation dynamics in atomic as well as in complex polyatomic molecular systems. The propagation of an intermediate electronic transient state, associated to the formation of a particular photoproduct, can be interrogated by means of its correlation to a specific state of the atomic or molecular continuum. Such correlations involve the autoionization of the transient state, or by means of a second probe laser field, a structural correlation, as summarized by the Koopman's theorem (section 2.4.1). The technique of adaptive femtosecond quantum control has been the subject of development in our group for many years. The basic method, by which the temporal profile of near-infrared laser pulses at a central wavelength of 800 nm, can be adjusted, is a programmable femtosecond pulse-shaper that comprises of a zero dispersion compressor and a commercial liquid crystal modulator (LCD). This experimental arrangement was realized prior to this thesis and served as a starting point to extend the pulse-shaping technique to the ultraviolet spectral region. This technological development was realized for the purposes of the experiments presented in Chapter 5. It involves a combination of the LCD-pulse-shaper with frequency up-conversion techniques on the basis of producing specifically modulated laser pulses of central wavelength 266 nm. Furthermore, the optical method X-FROG had to be developed in order to characterize the often complex structure of generated ultraviolet pulses. In the adaptive control experiments presented in this work, the generated femtosecond laser pulses could be automatically adjusted by means of specifically addressing the 128 independent voltage parameters of the programmable liquid-crystal modulator. Additionally a machine learning algorithm was employed for the cause of defining laser pulse-shapes that delivered the desired (optimal) outcome in the investigated laser interaction processes. In Chapter 4, the technique of feedback-controlled femtosecond pulse shaping was combined with time-of-flight mass spectroscopy as well as photoelectron spectroscopy in order to investigate the multiphoton double ionization of atomic calcium. A pronounced absolute enhancement of the double ionization yield was obtained with optimized femtosecond laser pulses. On the basis of the measured photoelectron spectra and of the electron optimization experiments, a non-sequential process was found, which plays an important role in the formation of doubly charged Calcium ions. Then in Chapter 5, the dynamics following the pp* excitation of ethylene-like molecules were investigated. In this context, the model molecule stilbene was studied by means of femtosecond photoelectron spectroscopy. Due to the simplicity of its chemical structure, stilebene is one of the most famous models used in experimental as well as theoretical studies of isomerization dynamics. From the time-resolved experiments described in that chapter, new spectroscopic data involving the second excited electronic state S2 of the molecule were acquired. The second ethylenic product was the molecule tetrakis (dimethylamino) ethylene (TDMAE). Due to the presence of numerous lone pair electrons on the four dimethylamino groups, TDMAE exhibits a much more complex structure than stilbene. Nevertheless, previously reported studies on the dynamics of TDMAE provided vital information for planning and conducting a successful optimisation control experiment of the wavepacket propagation upon the (pp*) S1 excited potential surface of the molecule. Finally, in Chapter 6 the possibility of employing femtosecond laser pulses as an alternative method for activating a metallocene molecular catalyst was addressed. By means of an adaptive laser control scheme, an optimization experiment was realized. There, the target was the selective cleavage of one methyl-ligand of the model catalyst (Cp)^2Zr(CH3)^2, which induces a catalytic coordination position on the molecule. The spectroscopic studies presented in that chapter were performed in collaboration to the company BASF A.G. and constitute a proof-of principle attempt for a commercial application of the adaptive femtosecond quantum control technique.
Die Anzahl an implantierten Gelenkendoprothesen hat in den letzten Jahrzehnten stark zugenommen. Mit ihr auch die Anzahl an Protheseninfektionen. Die Haupterreger sind Staphylokokken (>80%). Diese sind in vivo unempfindlich gegenüber Antibiotika und somit ist die einzige sinnvolle Therapie der Ausbau der infizierten Prothese, welcher lange und kostenspielige Krankenhausaufenthalte für den Patienten mit sich bringt. Der Grund für diese Resistenz der Bakterien liegt darin, dass sie zur Biofilmbildung fähig sind und sehr gut an Fremdkörper-Oberflächen adhärieren können. Welche Methode nun geeignet ist, die Adhärenz von Staphylokokken am besten unter klinisch relevanten Bedingungen zu untersuchen, ist zu prüfen. Das in der Arbeit entwickelte Modell ermöglicht eine semiquantitative Bestimmung der Adhärenz. Für die Versuche wurden Metallprüfkörper aus Titan und Kobalt-Chrom-Legierung verwendet. Zuvor wurden diese Metalle mit bestimmen Reinigungs- und Sterilisationsvorgängen gesäubert. Ein Teil der verwendeten Prüfkörper ist vor Beimpfung mit den Keimen durch Serumproteine bzw. Gewebsflüssigkeiten beschichtet worden, um das Anheftungsverhalten unter verschiedenen Bedingungen beurteilen zu können. Hierfür wurden Albumin, Kollagen Typ I und Typ II, Fibronektin und Fibrinogen verwendet. Sieben Titan-Prüfkörper sind in Schlieren (Schweiz) durch ein spezielles Verfahren mit PLL-g-PEG, einem Makromolekül welches die Adhäsion von Proteinen herabsetzt, beschichtet worden. Eine Auswirkung durch Infektionen sollte hierbei überprüft werden. Die Auswertung wurde unter REM-Betrachtung durchgeführt. Hierbei ist eine semiquantitative Abstufung der Adhärenzkraft von 1-5 getroffen worden. In den Ergebnissen zeigten die beiden verwendeten Metalle Titan und Kobalt-Chrom-Legierung keine wesentlichen Unterschiede in der gezeigten Adhärenz von Staphylokokken. Durch die Serumprotein- und Gewebsflüssigkeitsbeschichtung ließen sich Unterschiede unter verschiedenen Bedingungen feststellen. Fibronektin und Fibrinogen bewirken eine starke Zunahme an adhärenten Bakterienzellen. Kollagen Typ I und II zeigen eine leichte Adhärenzverstärkung und bewirken Biofilmbildung. Albuminbeschichtung reduziert die Anzahl adhärenter Staphylokokken. Die PLL-g-PEG Beschichtung löst starke Adhärenz und Biofilmbildung aus. Die hier angewandte Methode, kontaminierte Metallprüfkörper unter dem Rasterelektronenmikroskop zu betrachten, eignet sich um das Adhärenzverhalten von Bakterien zu beurteilen. Dabei lassen sich die Versuchsbedingungen auf vielfache Weise verändern. Verschiedene Metalle und andere Materialien können miteinander verglichen werden. Des Weiteren ist es möglich, unterschiedliche Proteinbeschichtungen vorzunehmen, um deren Einfluss auf die Adhärenz zu zeigen. Zusätzlich ist eine Durchführung der Versuche unter Bewegung möglich, was eine Annäherung an die Verhältnisse im menschlichen Körper bedeutet. Neben Staphylokokken könnten auch andere Bakterienspezies untersucht werden. In dieser Studie wird erstmals gezeigt, dass Kollagen eine Biofilmbildung bei Staphylokokken induziert. Dies bedarf weiterer Untersuchung, welcher Mechanismus hierfür verantwortlich ist. Die PLL-g-PEG Beschichtung hat auf Infektionen keine erfolgsversprechende Wirkung. Im Gegenteil, es kommt zu einer starken Besiedlung des Fremdmaterials. Albumin dagegen zeichnet sich durch eine Herabsetzung der Adhärenzstärke aus. Daraus könnte man therapeutischen Nutzen ziehen und Implantate vor Einbau mit Albumin beschichten.
Fragestellung: Welchen Nutzen bringt eine adjuvante Therapie mit intravenösem Immunglobulin bezüglich des Krankheitsverlaufs bei intraabdominellen Infektionen? Material und Methode: 71 Patienten mit intraabdominellen Infektionen wurden mit Immunglobulin oder Placebo behandelt. Verschiedene Score-Systeme wurden für die Auswertung des Schweregrades der Krankheit verwendet. Ergebnisse: Die Gesamtanalyse der Daten zeigt, daß Patienten mit Peritonitis von einer Behandlung mit Immunglobulin profitieren können. Zusammenfassung: Eine zusätzliche Gabe von Immunglobulin kann einen nützlichen Effekt für den Verlauf intraabdomineller Infektionen haben.
In the last years, visual methods have been introduced in industrial software production and teaching of software engineering. In particular, the international standardization of a graphical software engineering language, the Unified Modeling Language (UML) was a reason for this tendency. Unfortunately, various problems exist in concrete realizations of tools, e.g. due to a missing compliance to the standard. One problem is the automatic layout, which is required for a consistent automatic software design. The thesis derives reasons and criteria for an automatic layout method, which produces drawings of UML class diagrams according to the UML specification and issues of human computer interaction, e.g. readability. A unique set of aesthetic criteria is combined from four different disciplines involved in this topic. Based on these aethetic rules, a hierarchical layout algorithm is developed, analyzed, measured by specialized measuring techniques and compared to related work. Then, the realization of the algorithm as a Java framework is given as an architectural description. Finally, adaptions to anticipated future changes of the UML, improvements of the framework and example drawings of the implementation are given.
Der vordere kraniozervikale Übergang wurde an 99 Kopf-Hals-Präparaten aus dem Präpariersaal mittels MRT, CT und Sägeschnitten untersucht. Weiterhin wurden 110 Schädel, 56 Atlas- und 33 Axispräparate vermessen. Es fand sich in 70% der Präparate das Vorliegen einer Osteoarthrose (Ostheoarthritis) der Art. atlanto-axialis mediana; diese Erkrankung war durch die Bildung von maximalen Osteophyten, Vergrößerung der Gelenkflächen, Verlängerung der Gelenkhöhle und Verminderung des Abstandes zum Hinterhauptsbein charakterisiert. In drei Fällen hatten sich sehr große (giant), nach kranial gerichteten Osteophyten mit knöchernen Kontaktzonen zum Basiokziput gebildet. Die Kontaktzonen waren - wie sich feingeweblich zeigte – echte, erworbene, akzessorische, atlanto-okzipitale Gelenke in der Medianebene. In 11 Fällen lagen - wie die MRT- und CT- Schnittbilder zeigten – Reste des Proatlas bzw. der hypochondralen Spange vor: 3 mal als Condylus occipitalis tertius und knöchernen Kontaktzonen zu Atlas bzw. Axis und 7 mal als freie, überknorpelte Ossikel. Auch hier kann - wie die histologische Kontrolle zeigte – bei den Kontaktzonen von echten, allerdings angeborenen akzessorischen (atlantookzipitalen und odonto-okzipitalen) Gelenken in der Medianebene gesprochen werden. Der Casus mit Vorkommen eines Condylus occipitalis tertius und gleichzeitiger Bildung eines Osteophyten der Densspitze, die zusammen eine knöcherne Kontaktzone und akzessorische Gelenkkammern ausgebildet hatten, kann als „gemischter“ Fall bezeichnet werden.
We use algebraic closures and structures which are derived from these in complexity theory. We classify problems with Boolean circuits and Boolean constraints according to their complexity. We transfer algebraic structures to structural complexity. We use the generation problem to classify important complexity classes.