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"Goethe meint, dass es mein bestes Werk sei", schreibt Schiller an Körner am 13. Mai 1801. Bezeugt sind zudem die, vor allem von der studentischen Jugend, begeistert und bejubelt aufgenommenen ersten Aufführungen 1801 in Leipzig. Heute dürfte die Jungfrau eher zu den weniger oft aufgeführten Dramen Schillers gehören. Schließlich handelt es sich auf einen ersten unbefragten Blick um sein befremdlichstes, um ein bizarres und mysteriöses Stück. Warum beschäftigt sich der Aufklärer und Klassiker mit einer mythisch-mystischen Hexe und Heiligen (denn sie ist beides in der Geschichte) in einer romantischen Tragödie? Von den Romantikern sind wir allerhand Spuk- und Gespenstergeschichten gewöhnt und Zauberbäume und sprechende Heiligenbilder überraschen uns nicht. Aber Schiller? Schiller ist doch, so verstehe ich ihn jedenfalls, ein politischer Dichter. Und da liegt auch schon die Antwort: eben deshalb.
Der Impurismus ist eine literarische Strömung, die durch Jahrtausende geht, ein geistreiches, planvolles Spiel zur Produktion von hermetischer Literatur über ein tabuisiertes Thema (Sex). Zu dieser "littérature impure" gehört ein Geheimnis aus dem Urwissen der ältesten Kulturen, aus einer Zeit, in der Philosophie, Theologie und Kosmologie noch eins waren. Das alte Wissen wurde in den Bereichen konserviert, die bis heute von der konventionellen Wissenschaft als "esoterisch" ausgegrenzt werden (Astrologie, Kabbala, Tarot). Viele Autoren aber verschlüsseln ihre Texte mit der alten Lehre und verstecken sie hinter einer religiösen, spielerisch-humoristischen oder sozialkritisch engagierten Maske. Deshalb bleiben viele Texte trotz Interpretation hermetisch, besonders solche in der "Weltsprache der modernen Poesie" (Enzensberger). Eine neue Methode der literarischen Analyse (mit 57 Varianten der planvollen Verfremdung von Wörtern) kann die impuristische Literatur dekodieren. Dazu gehört als Raumordnung das alte "Weltbild der Windmühle". Dieses Literaturspiel wird als sublime Kulturtätigkeit aufgedeckt. Die Einzelseiten dieser Homepage können nur einige Einblicke in schwierige Zusammenhänge geben, die im langsamen Vortrag des Buches leichter zu verstehen sind. Auf beiden Wegen muß man sich Zeit nehmen und am besten einen philosophischen Wissenshunger mitbringen.
Background Translocations of the Mixed Lineage Leukemia (MLL) gene occur in a subset (5%) of acute myeloid leukemias (AML), and in mixed phenotype acute leukemias in infancy - a disease with extremely poor prognosis. Animal model systems show that MLL gain of function mutations may contribute to leukemogenesis. Wild-type (wt) MLL possesses histone methyltransferase activity and functions at the level of chromatin organization by affecting the expression of specific target genes. While numerous MLL fusion proteins exert a diverse array of functions, they ultimately serve to induce transcription of specific genes. Hence, acute lymphoblastic leukemias (ALL) with MLL mutations (MLLmu) exhibit characteristic gene expression profiles including high-level expression of HOXA cluster genes. Here, we aimed to relate MLL mutational status and tumor suppressor gene (TSG) methylation/expression in acute leukemia cell lines. Results Using MS-MLPA (methylation-specific multiplex ligation-dependent probe amplification assay), methylation of 24 different TSG was analyzed in 28 MLLmu and MLLwt acute leukemia cell lines. On average, 1.8/24 TSG were methylated in MLLmu AML cells, while 6.2/24 TSG were methylated in MLLwt AML cells. Hypomethylation and expression of the TSG BEX2, IGSF4 and TIMP3 turned out to be characteristic of MLLmu AML cell lines. MLLwt AML cell lines displayed hypermethylated TSG promoters resulting in transcriptional silencing. Demethylating agents and inhibitors of histone deacetylases restored expression of BEX2, IGSF4 and TIMP3, confirming epigenetic silencing of these genes in MLLwt cells. The positive correlation between MLL translocation, TSG hypomethylation and expression suggested that MLL fusion proteins were responsible for dysregulation of TSG expression in MLLmu cells. This concept was supported by our observation that Bex2 mRNA levels in MLL-ENL transgenic mouse cell lines required expression of the MLL fusion gene. Conclusion These results suggest that the conspicuous expression of the TSG BEX2, IGSF4 and TIMP3 in MLLmu AML cell lines is the consequence of altered epigenetic properties of MLL fusion proteins.
This study addresses the situation of the Sorbs, an indigenous minority living in Lusatia, Germany. Under the overarching rubric of ethnic and nationalist projects, women are usually symbolized as the guardians of culture and language. Women’s experiences as subjects in everyday life and in multi-facetted social practices therefore become veiled. The main concern in this book is to discuss how the women who identify themselves as/with Sorbs studied here construct their identities in the modern world, how they approach a sense of self and how they position themselves in their everyday lives, what kind of processes they undergo in their identity construction, and which factors are implicated in the formation of these identities. Investigating the Sorbian minority as the research subject and focusing on the female gender primarily involves intersections of ethnicity and gender, which are the points of departure for this study. As the research progresses, women’s gradual active construction of gender and ethnicity while living their everyday lives reveals a construction of multifarious and complex identifications across differences of gender, ethnicity, culture, religion and class. The results of research create Sorbian culture anew, craft Sorbian identity afresh and render the notion of Sorbian women in new terms. New meanings encased in these conceptions actually contain an active and transformative impetus. This thrust forces these ideas to undergo a process of redefinition. It is the life experiences people have in everyday practices that impel us to envisage identity construction as a dynamic, never-ending and open-ended articulation of one’s positionings.
The utilization of Ginkgo biloba in medicinal practice dates back to 1505 A.D. Ironically, the mechanisms of action of Ginkgo are not fully clarified till now. Nowadays, Ginkgo biloba leaf extracts are mainly indicated for mild to moderate cerebrovascular insufficiency and different forms of dementia. The fact that it is an herbal extract composed of several different components indeed adds to the intricacy of finding its mechanisms of actions. Indisputably, many scientists tried to elucidate the mechanisms of actions of Ginkgo. The first step to achieve this goal was to standardize the leaf extract. The standardized Ginkgo leaf extract contains 22-27 % flavonol glycosides, 2.8-3.4 % of ginkgolide A, B and C, as well as approximately 2.6-3.2 % bilobalide and below 5 ppm ginkgolic acids. A widespread standardized Ginkgo extract is the EGb 761, which was utilized in the current work. One of the earliest proposed mechanisms is the ability of the Ginkgo extract to act as an anti-oxidant, which could be explained by its high flavonoid contents. However, without doubt EGb 761 encompasses other characteristics which distinguish it from other herbal extracts that are also rich in flavonoids. Since free radicals and reactive oxygen species are highly associated with the mitochondrial functions, examination of the effect of EGb 761 on mitochondrial functions was lately addressed. Moreover, this was encouraged as the link between Alzheimer’s disease [AD] and the mitochondria started to emerge. Previously, our group observed mitochondrial protective actions of EGb 761 on cell culture in vitro. Furthermore, anti-apoptotic effects were previously described for EGb 761. However, only very few studies addressed the single constituents and their effect on mitochondrial functions. Flavonoids were studied in several other plant extracts and their radical scavenging activity is unquestionable, but EGb 761 has anti-apoptotic actions which may be attributed to its terpenoid fraction. Exclusively found in the Ginkgo plant, are the ginkgolides and therefore their actions are not yet fully elucidated. Moreover, those who attempted to address these constituents concentrated on one or two candidates, for example bilobalide or ginkgolide B and ignored the rest. Unfortunately, this led to incomplete results, and one couldn’t compare the relative activities of all EGb 761 components in order to state whether all the components are effective or not. ...
Algorithms and data structures constitute the theoretical foundations of computer science and are an integral part of any classical computer science curriculum. Due to their high level of abstraction, the understanding of algorithms is of crucial concern to the vast majority of novice students. To facilitate the understanding and teaching of algorithms, a new research field termed "algorithm visualisation" evolved in the early 1980's. This field is concerned with innovating techniques and concepts for the development of effective algorithm visualisations for teaching, study, and research purposes. Due to the large number of requirements that high-quality algorithm visualisations need to meet, developing and deploying effective algorithm visualisations from scratch is often deemed to be an arduous, time-consuming task, which necessitates high-level skills in didactics, design, programming and evaluation. A substantial part of this thesis is devoted to the problems and solutions related to the automation of three-dimensional visual simulation of algorithms. The scientific contribution of the research presented in this work lies in addressing three concerns: - Identifying and investigating the issues related to the full automation of visual simulations. - Developing an automation-based approach to minimising the effort required for creating effective visual simulations. - Designing and implementing a rich environment for the visualisation of arbitrary algorithms and data structures in 3D. The presented research in this thesis is of considerable interest to (1) researchers anxious to facilitate the development process of algorithm visualisations, (2) educators concerned with adopting algorithm visualisations as a teaching aid and (3) students interested in developing their own algorithm animations.
The goal of this research is to develop an understanding of what causes organizations and information systems to be “good” with regard to communication and coordination. This study (1) gives a theoretical explanation of how the processes of organizational adaptation work and (2) what is required for establishing and measuring the goodness of an organization with regard to communication and coordination. By leveraging concepts from cybernetics and philosophy of language, particularly the theoretical conceptualization of information systems as social systems and language communities, this research arrives at new insights. After discussing related work from systems theory, organization theory, cybernetics, and philosophy of language, a theoretical conceptualization of information systems as language communities is adopted. This provides the foundation for two exploratory field studies. Then a formal theory for explaining the adaptation of organizations via language and communication is presented. This includes measures for the goodness of organizations with regard to communication and coordination. Finally, propositions stemming from the theoretical model are tested using multiple case studies in six information system development projects in the financial services industry.
This thesis is devoted to the developement of a classical model for the study of the energetics and stability of carbon nanotubes. The motivation behind such a model stems from the fact that production of nanotubes in a well-controlled manner requires a detailed understanding of their energetics. In order to study this different theoretical approaches are possible, ranging from the computationally expensive quantum mechanical first principle methods to the relatively simple classical models. A wisely developed classical model has the advantage that it could be used for systems of any possible size while still producing reasonable results. The model developed in this thesis is based on the well-known liquid drop model without the volume term and hence we call it liquid surface model. Based on the assumption that the energy of a nanotube can be expressed in terms of its geometrical parameters like surface area, curvature and shape of the edge, liquid surface model is able to predict the binding energy of nanotubes of any chirality once the total energy and the chiral indices of it are known. The model is suggested for open end and capped nanotubes and it is shown that the energy of capped nanotubes is determined by five physical parameters, while for the open end nanotubes three parameters are sufficient. The parameters of the liquid surface model are determined from the calculations performed with the use of empirical Tersoff and Brenner potentials and the accuracy of the model is analysed. It is shown that the liquid surface model can predict the binding energy per atom for capped nanotubes with relative error below 0.3% from that calculated using Brenner potential, corresponding to the absolute energy difference being less than 0.01 eV. The influence of the catalytic nanoparticle on top of which a nanotube grows, on the nanotube energetics is also discussed. It is demonstrated that the presence of catalytic nanoparticle changes the binding energy per atom in such a way that if the interaction of a nanotube with the catalytic nanoparticle is weak then attachment of an additional atom to a nanotube is an energetically favourable process, while if the catalytic nanoparticle nanotube interaction is strong , it becomes energetically more favourable for the nanotube to collapse. The suggested model gives important insights in the energetics and stability of nanotubes of different chiralities and is an important step towards the understanding of nanotube growth process. Young modulus and curvature constant are calculated for single-wall carbon nanotubes from the paremeters of the liquid surface model and demonstrated that the obtained values are in agreement with the values reported earlier both theoretically and experimentally. The calculated Young modulus and the curvature constant were used to conclude about the accuracy of the Tersoff and Brenner potentials. Since the parameters of the liquid surface model are obtained from the Tersoff and Brenner potential calculations, the agreement of elastic properties derived from these parameters corresponds to the fact that both potentials are capable of describing the elastic properties of nanotubes. Finally, the thesis discuss the possible extension of the model to various systems of interest.
This thesis investigates the jet-medium interactions in a Quark-Gluon Plasma using a hydrodynamical model. Such a Quark-Gluon Plasma represents a very early stage of our universe and is assumed to be created in heavy-ion collisions. Its properties are subject of current research. Since the comparison of measured data to model calculations suggests that the Quark-Gluon Plasma behaves like a nearly perfect liquid, the medium created in a heavy-ion collision can be described applying hydrodynamical simulations. One of the crucial questions in this context is if highly energetic particles (so-called jets), which are produced at the beginning of the collision and traverse the formed medium, may lead to the creation of a Mach cone. Such a Mach cone is always expected to develop if a jet moves with a velocity larger than the speed of sound relative to the medium. In that case, the measured angular particle distributions are supposed to exhibit a characteristic structure allowing for direct conclusions about the Equation of State and in particular about the speed of sound of the medium. Several different scenarios of jet energy loss are examined (the exact form of which is not known from first principles) and different mechanisms of energy and momentum loss are analyzed, ranging from weak interactions (based on calculations from perturbative Quantum Chromodynamics, pQCD) to strong interactions (formulated using the Anti-de-Sitter/Conformal Field Theory Correspondence, AdS/CFT). Though they result in different angular particle correlations which could in principle allow to distinguish the underlying processes (if it becomes possible to analyze single-jet events), it is shown that the characteristic structure observed in experimental data can be obtained due to the different contributions of several possible jet trajectories through an expanding medium. Such a structure cannot directly be connected to the Equation of State. In this context, the impact of a strong flow created behind the jet is examined which is common to almost all jet deposition scenarios. Besides that, the transport equations for dissipative hydrodynamics are discussed which are fundamental for any numerical computation of viscous effects in a Quark-Gluon Plasma.
Das NANOG2-Gen ist ein Genduplikat des nur in embryonalen Stammzellen exprimierten Stammzellfaktors NANOG1, der eine Schlüsselrolle bei der Pluripotenz und der Selbsterneuerung der Stammzellen und möglicherweise der Krebsstammzellen hat. Zur Analyse, ob NANOG2 die beschriebenen Funktionen von NANOG1 in Gewebestammzellen und Krebsstammzellen übernimmt und ursächlich für die Leukämieentstehung verantwortlich ist, wurden embryonale Zellen und primäre Leukämiezellen auf NANOG2-Expression durch RT-PCR-Experimente, Western Blot Analysen und ChIP Assays untersucht. Dabei konnte eine Methode zur Unterscheidung der NANOG1 und NANOG2-Transkripte etabliert, neue Genstrukturen dieser Gene charakterisiert und NANOG2-Transkripte in hämatopoetischen Stammzellen und in allen primären Leukämiezellen detektiert werden. Außerdem konnte mit Hilfe von Genexpressionsanalysen eine äquivalente Funktion von NANOG2 zu NANOG1 festgestellt werden.
Asthma bronchiale ist eine obstruktive Lungenerkrankung, die mit einer Hyperreagibilität der Atemwege verbunden ist, ausgelöst durch eine Vielzahl von Stimuli. Es stellt die häufigste chronische Erkrankung im Kindesalter dar, ist jedoch bei Säuglingen und Kleinkindern nur schwer zu diagnostizieren. In diesem Alter stellen sehr häufig rezidivierende, teilweise durch (Virus-) Infekte ausgelöste obstruktive Bronchitiden die ersten Symptome eines Asthma bronchiale dar. In der vorliegenden Arbeit wurde an einem Patientenkollektiv von 172 Säuglingen und Kleinkindern (m:w = 115:57; Alter in Monaten = 13,1+/-11) mittels Bodyplethysmographie und Metacholin-Provokation untersucht, wie häufig einer rezidivierend obstruktiven Symptomatik eine bronchiale Hyperreagibilität (BHR) zugrunde liegt, und ob Kinder mit Risikofaktoren für ein Asthma bronchiale Unterschiede in der Lungenfunktion oder in der Reaktion auf eine Metacholin-Provokation zeigen im Vergleich zu Kindern ohne vorbestehende Risikofaktoren. Als Risikofaktoren galten Atopie, Allergie (erhöhte eosinophile Leukozyten, erhöhte IgE-Werte, positiver RAST) sowie eine Passivrauch-Exposition durch Tabakrauch der Eltern, die anhand eines Fragebogens ermittelt wurden. Insgesamt reagierten 26 der 108 Kinder mit RAST (24,1%) leicht- bis hochgradig, aber nur 14 der 108 Kinder (13,0%) mittel- bis hochgradig hyperreagibel, wobei ein Anstieg des Atemwegswiderstandes von mindestens 80% des Ausgangswertes, ein Abfall der Sauerstoffsättigung unter 95% sO2 oder eine klinische Symptomatik in Form von Husten und / oder Giemen, bzw. die Erfüllung mehrerer Kriterien als positive Reaktion gewertet wurde, gemäß den PD20-Leitlinien abhängig von der verabreichten Metacholin-Dosis. Hierbei zeigten Kinder mit atopischer Dermatitis tendenziell häufiger eine mittel- bis hochgradige BHR als das Vergleichskollektiv (mittel- bis hochgradige BHR: Kinder ohne Risikofaktoren= 14,1%; Kinder mit Atopie= 20,8%). Weitere Zusammenhänge zwischen Risikofaktoren für ein Asthma bronchiale und eine BHR konnten nicht festgestellt werden. Auch fand sich zwischen Tabakrauch-Exposition (exponierte Kinder: n=36; nicht exponierte Kinder: n=102) und der BHR keine Beziehung. Unsere Untersuchungen belegen, dass eine mittel- bis hochgradige Hyperreagibilität im Sinne eines Asthmasyndroms nur bei einem geringen Anteil (13,0%) der Kinder mit obstruktiven Bronchitiden nachweisbar ist. Entsprechend kritisch sollte der Einsatz von inhalativen Steroiden bei Kindern mit obstruktiven Zeichen gestellt werden.
In jüngster Zeit werden vom humanen Immundefizienzvirus-1-abgeleitete lentivirale Vektoren auch in der Gentherapie eingesetzt. Obwohl diese Vektoren nicht-mitotische Zellen transduzieren können, sind sie für einen Gentransfer in primäre ruhende Zellen oft nicht geeignet. In der Abteilung „Medizinische Biotechnologie“ des Paul-Ehrlich-Insituts wurde ein vom simianen Immundefizienzvirus SIVsmmPBj-abgeleiteter lentiviraler Vektor entwickelt, welcher im Gegensatz zu HIV-1-abgeleiteten Vektoren effizient in der G0-Phase des Zellzyklus arretierte humane Fibroblasten und humane primäre Monozyten transduzieren kann (Mühlebach et al., 2005). Im dieser Arbeit wurde das Potenzial dieses neuen Vektors für mögliche Anwendungen in der Gentherapie untersucht, indem seine Transduktionsfähigkeit für weitere primäre Zellen bestimmt wurde. Dabei waren humane hämatopoetische Stammzellen von besonderem Interesse, da sie die Vorläuferzellen aller Zellen des Blutes sind und die Eigenschaft zur Selbsterneuerung besitzen. Die Effizienz des Gentransfers in unstimulierten Stammzellen mit dem SIVsmmPBj-Vektor war jedoch nicht höher als mit anderen lentiviralen Vektoren. Interessanterweise konnte aber ein Einfluss der lentiviralen Vektoren auf das in vitro-Differenzierungspotenzial der transduzierten Stammzellen in die verschiedenen Vorläuferzellen beobachtet werden: Nach Transduktion mit dem SIVsmmPBj- und einem HIV-2-abgeleiteten Vektor differenzierten die Stammzellen bevorzugt in granulozytäre Vorläuferzellen, während die Transduktion mit einem HIV-1-abgeleiteten Vektor die Anzahl aller Vorläuferzellen deutlich reduzierte und insbesonders die Differenzierung in Makrophagenvorläuferzellen verminderte. Zur Untersuchung ihres Differenzierungs-potenzials in vivo wurden transduzierte hämatopoetische Stammzellen zur Repopulierung des Knochenmarks von NOD/SCID-Mäusen eingesetzt. Hierbei wurde jedoch kein Einfluss der verschiedenen lentiviralen Vektoren auf die Differenzierung der Stammzellen beobachtet. Allerdings konnte nur in einem sehr geringen Anteil der transplantierten Zellen eine Expression des übertragenen Gens nachgewiesen werden, so dass nicht ausgeschlossen werden kann, dass die transduzierten Zellen die Fähigkeit zur Repopulierung verloren hatten. Insgesamt ist jedoch zu sagen, dass entgegen der Erwartungen der neue Vektor keinen Vorteil gegenüber HIV-1-Vektoren zur Transduktion von hämatopoetischen Stammzellen aufweist. Weiter wurde die Transduktionsfähigkeit des SIVsmmPBj-Vekors für humanen B-Lymphozyten, Makrophagen und dendritische Zellen untersucht. Auf ruhenden B-Lymphozyten besaß der SIVsmmPBj-Vektor keinen Transduktionsvorteil gegenüber einem HIV-1-abgeleiteten Vektor, während Makrophagen und dendritische Zellen mit signifikant höherer Effizienz transduziert werden konnten. Die hohe Transduktionseffizienz des SIVsmmPBj-Vektors für Monozyten und dendritische Zellen eröffnet die Möglichkeit einer Anwendung in der Immuntherapie, da dendritische Zellen die professionellsten und effektivsten Antigen-präsentierenden Zellen sind. Daher wurde die generelle Eignung des SIVsmmPBj-Vektors für immuntherapeutische Anwendungen untersucht. Ein Tumor-assoziiertes Antigen (Mart-1) wurde in Monozyten übertragen und die transduzierten Zellen zu reifen dendritischen Zellen maturiert. Diese Zellen besaßen die Fähigkeit, Antigen-spezifische zytotoxische T-Zellen zu generieren, deren Funktion durch Sekretion von Zytokinen, in Einzelfällen auch durch spezifische Lyse von Mart-exprimierenden Tumorzellen nachgewiesen wurde. Weiterhin wurde gezeigt, dass nach Transduktion von Monozyten und deren Differenzierung zu Makrophagen auch diese prinzipiell in der Lage sind, Antigen-spezifische zytotoxische T-Zellen zu generieren. Obwohl hier keine vergleichenden Untersuchungen zur Effizienz des T-Zell-Primings durchgeführt werden konnten, ist die prinzipielle Eignung des SIVsmmPBj-abgeleiteten Vektors für eine Immuntherapie damit nachgewiesen. Schließlich wurde untersucht, ob die Maus oder nicht-menschliche Primaten als Tiermodelle für eine mögliche Weiterentwicklung des Vektors in Frage kommen. Murine Monozyten konnten jedoch nicht effizient transduziert werden. Hingegen erwies sich der SIVsmmPBj-Vektor als gut geeignet zur Transduktion von simianen Monozyten, so dass ein Affenmodell für Anwendungen des SIVsmmPBj-Vektors, wie beispielsweise zur Tumor-Immuntherapie oder für Vakzinierungsstudien, in Frage kommt.
Vasculogenesis as well as angiogenesis are important for postnatal development of blood vessels. Peripheral blood or bone marrow-derived endothelial precursor cells are used in clinical trials for therapeutic enhancement of postnatal neovascularization in patients suffering from coronary artery diseases. The vasculogenic potential of the precursor cell population depends on the appropriate retention of the infused cells to the ischemic tissue. However, cell-autonomous mechanisms regulating the attraction and retention of circulating cells in inflammatory tissue are not well understood. Caspases belong to a family of pro-apoptotic enzymes. Beyond cell death signals, caspase proteases additionally regulate non-apoptotic processes like cell morphology and migration in many cell types. The isoform Caspase-8 is essential for embryonal vasculogenesis in conditional knockout mice. In this study, we identified a novel apoptosis-unrelated role of Caspase-8 in circulating and bone marrow-derived cells for vascular repair. Caspase-8-specific inhibition abrogated the ex vivo formation of EPC from human peripheral blood. Moreover, Caspase-8 inhibition disables EPC migration and adhesion to different matrices and decreases the cell surface expression of the fibronectin receptor subunit integrin alpha 5 and the chemokine receptor CXCR4. In vitro and in vivo studies using bone marrow mononuclear cells derived from inducible Caspase-8- deficient mice revealed an essential role of Caspase-8 for EPC formation and neovascularization enhancing capacities of progenitor cells. Caspase-8 activity appears to be required for maintaining responses to matrix interaction and chemoattractants of EPC. Additional studies showed that the E3 ubiquitin ligase Cbl-b, a negative regulator of cell adhesion molecules including integrin alpha 5, is present in EPC at low protein levels under basal conditions, but markedly increases upon Caspase-8 inhibition. In vitro assays and overexpression studies in intact cells confirmed Caspase-8-dependent degradation of Cbl-b, providing a potential requirement for Caspase-8-regulated adhesion. Indeed, neovascularization of matrigel plugs was enhanced in mice lacking Cbl-b. Moreover, Cbl-b degradation in the presence of active Caspase-8 prevents the down-regulation of integrin alpha 5 and is associated with an enhanced vasculogenic activity of progenitor cells in hind limb ischemia. The identified upstream regulation of caspase-8 by cytokine IL-6 is only one possibility for fine-tuning the non-apoptotic enzymatic activity. In summary, this study shows a novel essential role of Caspase-8 for proper EPC adhesion-related signaling. Caspase-8 is involved in the function of adhesion molecules by regulation the E3 ubiquitin ligase Cbl-b. Strategies to improve survival of therapeutic injected progenitor cells by using caspase inhibitors should be addressed with caution. Because of the broad spectrum of activity of caspase-8, downstream targets of this caspase isoform and Cbl-b should be in more focus for therapeutic pretreatment to improve neovascularization of myocardial and ischemic tissue.
Word formation in Distributed Morphology (see Arad 2005, Marantz 2001, Embick 2008): 1. Language has atomic, non-decomposable, elements = roots. 2. Roots combine with the functional vocabulary and build larger elements. 3. Roots are category neutral. They are then categorized by combining with category defining functional heads.
This paper investigates the class of Tree-Tuple MCTAG with Shared Nodes, TT-MCTAG for short, an extension of Tree Adjoining Grammars that has been proposed for natural language processing, in particular for dealing with discontinuities and word order variation in languages such as German. It has been shown that the universal recognition problem for this formalism is NP-hard, but so far it was not known whether the class of languages generated by TT-MCTAG is included in PTIME. We provide a positive answer to this question, using a new characterization of TT-MCTAG.
Various concurrency primitives had been added to functional programming languages in different ways. In Haskell such a primitive is a MVar, joins are described in JoCaml and AliceML uses futures to provide a concurrent behaviour. Despite these concurrency libraries seem to behave well, their equivalence between each other has not been proven yet. An expressive formal system is needed. In their paper "On proving the equivalence of concurrency primitives", Jan Schwinghammer, David Sabel, Joachim Niehren, and Manfred Schmidt-Schauß define a universal calculus for concurrency primitives known as the typed lambda calculus with futures. There, equivalence of processes had been proved. An encoding of simple one-place buffers had been worked out. This bachelor’s thesis is about encoding more complex concurrency abstractions in the lambda calculus with futures and proving correctness of its operational semantics. Given the new abstractions, we will discuss program equivalence between them. Finally, we present a library written in Haskell that exposes futures and our concurrency abstractions as a proof of concept.
We present a CYK and an Earley-style algorithm for parsing Range Concatenation Grammar (RCG), using the deductive parsing framework. The characteristic property of the Earley parser is that we use a technique of range boundary constraint propagation to compute the yields of non-terminals as late as possible. Experiments show that, compared to previous approaches, the constraint propagation helps to considerably decrease the number of items in the chart.
Multicomponent Tree Adjoining Grammars (MCTAGs) are a formalism that has been shown to be useful for many natural language applications. The definition of non-local MCTAG however is problematic since it refers to the process of the derivation itself: a simultaneity constraint must be respected concerning the way the members of the elementary tree sets are added. Looking only at the result of a derivation (i.e., the derived tree and the derivation tree), this simultaneity is no longer visible and therefore cannot be checked. I.e., this way of characterizing MCTAG does not allow to abstract away from the concrete order of derivation. In this paper, we propose an alternative definition of MCTAG that characterizes the trees in the tree language of an MCTAG via the properties of the derivation trees (in the underlying TAG) the MCTAG licences. We provide similar characterizations for various types of MCTAG. These characterizations give a better understanding of the formalisms, they allow a more systematic comparison of different types of MCTAG, and, furthermore, they can be exploited for parsing.