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Background Evidence-based guidelines potentially improve healthcare. However, their de-novo-development requires substantial resources - especially for complex conditions, and adaptation may be biased by contextually influenced recommendations in source guidelines. In this paper we describe a new approach to guideline development - the systematic guideline review method (SGR), and its application in the development of an evidence-based guideline for family physicians on chronic heart failure (CHF). Methods A systematic search for guidelines was carried out. Evidence-based guidelines on CHF management in adults in ambulatory care published in English or German between the years 2000 and 2004 were included. Guidelines on acute or right heart failure were excluded. Eligibility was assessed by two reviewers, methodological quality of selected guidelines was appraised using the AGREE-instrument, and a framework of relevant clinical questions for diagnostics and treatment was derived. Data were extracted into evidence tables, systematically compared by means of a consistency analysis and synthesized in a preliminary draft. Most relevant primary sources were re-assessed to verify the cited evidence. Evidence and recommendations were summarized in a draft guideline. Results Of 16 included guidelines five were of good quality. A total of 35 recommendations were systematically compared: 25/35 were consistent, 9/35 inconsistent, and 1/35 unratable (derived from a single guideline). Of the 25 consistencies, 14 based on consensus, seven on evidence and four differed in grading. Major inconsistencies were found in 3/9 of the inconsistent recommendations. We re-evaluated the evidence for 17 recommendations (evidence-based, differing evidence levels and minor inconsistencies) the majority was congruent. Incongruencies were found, where the stated evidence could not be verified in the cited primary sources, or where the evaluation in the source guidelines focused on treatment benefits and underestimated the risks. The draft guideline was completed in 8.5 man-months. The main limitation to this study was the lack of a second reviewer. Conclusions The systematic guideline review including framework development, consistency analysis and validation is an effective, valid, and resource saving-approach to the development of evidence-based guidelines.
Nicht zu vergessende Moleküle ... : flexibles "Networking" von Nervenzellen formt das Gedächtnis
(2009)
Ein funktionierendes Gedächtnis beruht darauf, dass die Kontakte zwischen den Milliarden Nervenzellen in unserem Gehirn sich ständig verändern und anpassen. Häufig verwendete Signalwege werden verstärkt und ausgebaut, wie eine Landstraße zu einer Schnellstraße. Weniger häufig benutze Signalwege können dagegen abgebaut werden. Die Signalübertragung verlangsamt sich wie der Verkehr auf einer lange nicht mehr instand gehaltenen Straße. Will man diese Prozesse auf molekularer Ebene verstehen, muss man die Synapsen näher betrachten. Das sind spezialisierte Kontaktstellen, die es den Nervenzellen ermöglichen, hochkomplexe Netzwerke, sogenannte Schaltkreise, zu knüpfen. Die Flexibilität dieser Schaltkreise ermöglicht es uns, Informationen zu verarbeiten und entsprechend zu reagieren. Inzwischen kennt man eine Fülle von Boten-Molekülen, Rezeptoren und Liganden, die diese Prozesse auf molekularer Ebene steuern.
Antibiotika-Resistenz: Die Tricks der Bakterien : Pumpsysteme werfen die Arzneistoffe aus der Zelle
(2009)
Immer häufiger sind Bakterien resistent gegen ein bestimmtes Antibiotikum, oft auch gleich gegen mehrere. Eine Infektion, die von solchen multiresistenten Bakterien verursacht wird, kann nicht mehr mit Antibiotika bekämpft werden. Im schlimmsten Fall führt sie bei immungeschwächten Patienten zum Tod. Um zielgerichtet neue und wirkungsvolle Medikamente entwickeln zu können, ist es wichtig zu wissen, wie die Bakterienzelle sich gegen die Zerstörung durch Antibiotika wehrt. Ein inzwischen genau entschlüsselter Mechanismus ist die Efflux-Pumpe, die für die Zelle schädliche Substanzen wieder hinausbefördert.
Wer hat nicht angesichts rauchender Schlote und verschmutzter Luft von Kraftwerken geträumt, die reinen Sauerstoff produzieren? Die Natur erbaut solche Kraftwerke täglich neu – in Pflanzen. Darin verwandelt der grüne Blattfarbstoff Chlorophyll Sonnenlicht und Kohlendioxid in Sauerstoff und Energie. Die komplexen Reaktionen laufen in mikroskopisch kleinen Maschinen – den Photosystemen – ab. Aber was haben Kraftwerke mit Kamelen zu tun? Wie auch bei den uns bekannten Kraftwerken gibt es in Pflanzen ein »Werksgelände«, die Chloroplasten. Sie besitzen einen Eingang, durch den zuweilen Moleküle passieren müssen, die so groß sind wie das sprichwörtliche Kamel, das durch ein Nadelöhr gehen soll.
Erfolgreiche Unternehmer wie SAP-Mitbegründer Dietmar Hopp oder Microsoft-Gründer Bill Gates sind Pioniere von Corporate Social Responsibility (CSR). Regelmäßig erichten die Medien über ihre vielfältigen sozialen Aktivitäten und animieren damit andere Unternehmen, sich in ähnlicher Weise zu engagieren. Welche Motive stecken dahinter? Wollen diese Firmen etwas Gutes für die Gesellschaft tun oder bestimmen Strategien, die von negativen Folgen kapitalistischen Handelns ablenken sollen, ihr altruistisches Handeln? Fußen betriebliche Maßnahmen zur Vereinbarkeit von Beruf und Familie auf sozialem Engagement, oder macht der demografi sche Wandel die verstärkte Integration von Frauen erst notwendig?
Kein deutscher Gegenwartsphilosoph findet weltweit eine solche Aufmerksamkeit wie Jürgen Habermas, der am 18. Juni 80 Jahre alt wird und bis zu seiner Emeritierung 1994 an der Goethe-Universität lehrte und forschte. In seiner Doppelrolle als Wissenschaftler und Intellektueller, als Gesellschaftstheoretiker und streitbarer Diskutant hat er nicht nur das Modell der diskursiven Vernunft kreiert, er ist zugleich Praktiker dieser Diskursivität und hat damit die intellektuellen Debatten der vergangenen Jahrzehnte maßgeblich beeinflusst – von der Reform der Hochschulen über Embryonenforschung bis zur Zukunft Europas.
Das Werk von Jürgen Habermas ragt einsam aus der Theorielandschaft unserer Tage heraus, denn ihm ist es auf einzigartige Weise gelungen, eine einheitliche Theorie in der Vielzahl der disziplinären Stimmen der Philosophie und der Sozial- und Rechtswissenschaften zu schaffen: die Theorie des Diskurses. Sie hat auf all diesen Gebieten innovativ und paradigmenbildend gewirkt, was sich nicht zuletzt daran zeigt, wie stark seine Erkenntnisse auf neuere Forschungsprogramme wirken. Ein Beispiel hierfür ist der Frankfurter Exzellenzcluster »Herausbildung normativer Ordnungen«, der seit Herbst 2007 von der Deutschen Forschungsgemeinschaft gefördert wird und unter anderem neun neue Professuren an der Goethe-Universität geschaffen und besetzt hat. In mehr als 30 Forschungsprojekten arbeiten Wissenschaftlerinnen und Wissenschaftler zu unterschiedlichen Fragestellungen der Veränderung gesellschaftlicher Ordnungen.
Riboswitches are a novel class of genetic control elements that function through the direct interaction of small metabolite molecules with structured RNA elements. The ligand is bound with high specificity and affinity to its RNA target and induces conformational changes of the RNA's secondary and tertiary structure upon binding. To elucidate the molecular basis of the remarkable ligand selectivity and affinity of one of these riboswitches, extensive all-atom molecular dynamics simulations in explicit solvent ({approx}1 µs total simulation length) of the aptamer domain of the guanine sensing riboswitch are performed. The conformational dynamics is studied when the system is bound to its cognate ligand guanine as well as bound to the non-cognate ligand adenine and in its free form. The simulations indicate that residue U51 in the aptamer domain functions as a general docking platform for purine bases, whereas the interactions between C74 and the ligand are crucial for ligand selectivity. These findings either suggest a two-step ligand recognition process, including a general purine binding step and a subsequent selection of the cognate ligand, or hint at different initial interactions of cognate and noncognate ligands with residues of the ligand binding pocket. To explore possible pathways of complex dissociation, various nonequilibrium simulations are performed which account for the first steps of ligand unbinding. The results delineate the minimal set of conformational changes needed for ligand release, suggest two possible pathways for the dissociation reaction, and underline the importance of long-range tertiary contacts for locking the ligand in the complex.
Oligonucleotides suppress PKB/Akt and act as superinductors of apoptosis in human keratinocytes
(2009)
DNA oligonucleotides (ODN) applied to an organism are known to modulate the innate and adaptive immune system. Previous studies showed that a CpG-containing ODN (CpG-1-PTO) and interestingly, also a non-CpG-containing ODN (nCpG- 5-PTO) suppress inflammatory markers in skin. In the present study it was investigated whether these molecules also influence cell apoptosis. Here we show that CpG-1-PTO, nCpG-5-PTO, and also natural DNA suppress the phosphorylation of PKB/Akt in a cell-type-specific manner. Interestingly, only epithelial cells of the skin (normal human keratinocytes, HaCaT and A-431) show a suppression of PKB/Akt. This suppressive effect depends from ODN lengths, sequence and backbone. Moreover, it was found that TGFa-induced levels of PKB/Akt and EGFR were suppressed by the ODN tested. We hypothesize that this suppression might facilitate programmed cell death. By testing this hypothesis we found an increase of apoptosis markers (caspase 3/7, 8, 9, cytosolic cytochrome c, histone associated DNA fragments, apoptotic bodies) when cells were treated with ODN in combination with low doses of staurosporin, a wellknown pro-apoptotic stimulus. In summary the present data demonstrate DNA as a modulator of apoptosis which specifically targets skin epithelial cells.
Global warming is expected to be associated with diverse changes in freshwater habitats in north-western Europe. Increasing evaporation, lower oxygen concentration due to increased water temperature and changes in precipitation pattern are likely to affect the survival ratio and reproduction rate of freshwater gastropods (Pulmonata, Basommatophora). This work is a comprehensive analyse of the climatic factors influencing their ranges both in the past and in the near future. A macroecological approach showed that for a great proportion of genera the ranges were projected to contract by 2080, even if unlimited dispersal was assumed. The forecasted warming in the cooler northern ranges predicted the emergence of new suitable areas, but also reduced drastically the available habitat in the southern part of the studied region. In order to better understand the ranges dynamics in the past and the post glacial colonisation patterns, an approach combining ecological niche modelling and phylogeography was used for two model species, Radix balthica and Ancylus fluviatilis. Phylogeographic model selection on a COI mtDNA dataset confirmed that R. balthica most likely spread from two central European disjunct refuges after the last glacial maximum. The phylogeographic analysis of A. fluviatilis, using 16S and COI mtDNA datasets, also inferred central European refugia. The absence of niche conservatism (adaptive potential) inferred for A. fluviatilis puts a cautionary note on the use of climate envelope models to predict the future ranges of this species. However, the other model species exhibited strong niche conservatism, which allow putting confidence into such predictions. A profound faunal shift will take place in Central Europe within the next century, either permitting the establishment of species currently living south of the studied region or the proliferation of organisms relying on the same food resources. This study points out the need for further investigations on the dispersal modes of freshwaters snails, since the future range size of the species depend on their ability to establish in newly available habitats. Likewise, the mixed mating system of these organisms gives them the possibility to fund a new population from a single individual. It will probably affect the colonisation success and needs further investigation.
In der äußeren plexiformen Schicht (OPL) der Säugetierretina sind die Photorezeptoren mit den Horizontal- und den Bipolarzellen verschaltet. Diese erste neuronale Verschaltungs-ebene des Sehsystems birgt eine hochkomplexe Architektur aus chemischen und elektrischen Synapsen. Sie ermöglicht die Modulation des Lichtsignals sowie die Aufspaltung der Signale in parallele Übertragungswege. In der vorliegenden Doktorarbeit wurden verschiedene Synapsensysteme in der OPL von Maus-, Kaninchen-, und Makakenretinae mittels immunhistochemischer Färbetechniken licht- und elektronen-mikroskopisch untersucht. In der Mausretina wurden die anatomischen Eigenschaften der Endfüßchen blau-empfindlicher (S-) Zapfen untersucht. Die S-Zapfenendfüßchen waren um 15 % kleiner als die der M-Zapfen, die Bereiche der Invaginierungen am S-Zapfenendfüßchen hingegen um 35 %. Eine deutliche Reduktion der Horizontalzellkontakte ging damit einher. Die Zahl der postsynaptisch von OFF-Bipolarzellen exprimierten Glutamatrezeptor- (GluR) Unterein-heiten GluR1 und GluR5 war am S-Zapfenendfüßchen um fast 50 % kleiner als an M-Zapfen. Dieser Befund spiegelte die geringe Anzahl synaptischer Kontakte von OFF-Bipolarzellen am S-Zapfen wider. Die OFF-Bipolarzelltypen 1 und/oder 2 waren für diese Reduktion verantwortlich. Diese Befunde sind ein erster Hinweis für den sogenannten Grün-OFF-Signalweg in der Mausretina. In der Makakenretina wurde die Verteilung von Protocadherin β16 (Pcdh β16) untersucht. Es konnte auf postsynaptischer Seite an den Photorezeptorterminalien gezeigt werden. Pcdh β16 lag auf den invaginierenden Spitzen von Dendriten der H1 Horizontalzellen sowie an ihren desmosome-like junctions unterhalb der Zapfenendfüßchen. An diesen Orten fielen die Pcdh β16-immunreaktiven Punkte mit den dort von H1 Zellen exprimierten GluR-Untereinheiten GluR2 - 4 und GluR6/7 zusammen. Im Zuge dieser Analyse wurde ebenfalls eine Kolokalisation dieser AMPA- (GluR2 - 4) und Kainat- (GluR6/7) Rezeptoren an den desmosome-like junctions festgestellt. Darüber hinaus zeigte eine elektronenmikroskopische Untersuchung, dass Pcdh β16 auch an flachen Synapsen in Triaden-assoziierter Position am Zapfenendfüßchen zu finden ist. Dies kann als Hinweis auf eine Expression durch flat midget Bipolarzellen oder Bipolarzellen des Typs DB3 gewertet werden. Dies lässt vermuten, dass dieses Protein an der Formation zelltypspezifischer Kontakte bzw. Synapsen beteiligt ist. In einer vergleichenden Studie der synaptischen Verteilung des zytoplasmatischen Gerüstproteins Zonula Occludens-1 (ZO-1) in Makaken-, Kaninchen- und Mausretinae zeigte sich ein sehr einheitliches sowie auch zelltypspezifisches Verteilungsmuster. ZO-1 fiel bei allen Spezies mit Connexin 36 (Cx36) an den gap junctions zwischen Photo-rezeptorterminalien und zwischen den Dendriten von OFF-Bipolarzellen zusammen. Außerdem ist ZO-1 mit gap junctions bestimmter Horizontalzellen assoziiert: In der OPL der Kaninchenretina fiel es mit Cx50 zusammen, dem Connexin der axonlosen A-Typ Horizontalzellen. An den großen gap junctions zwischen den Primärdendriten dieser Zellen bildete ZO-1 jedoch eine Zaun-ähnliche Struktur als Abgrenzung um die gap junctions herum, anstatt direkt mit den Connexinen kolokalisiert zu sein. Eine direkte Interaktion mit den Connexinen wird durch die räumliche Anordnung weitgehend ausgeschlossen, was auf eine Funktion von ZO-1 als tight- oder adherens junction Protein hindeutet. In der Mausretina fiel ZO-1 mit Cx57 an dendro-dendritischen gap junctions zwischen den Maus-Horizontalzellen zusammen. In der Makakenretina sind die Connexine der Horizontalzellen noch nicht bekannt. Trotzdem ließ sich ZO-1 den dendro-dendritischen gap junctions zwischen H1 Horizontalzellen zuordnen. Darüber hinaus zeigte sich eine enge Assoziation dieser dendro-dendritischen gap junctions mit den GluRs unterhalb der Zapfenendfüßchen an den desmosome-like junctions. Der von den GluRs ermöglichte Calcium-Einstrom könnte sich durch die räumliche Nähe zu den Connexinen modulierend auf die Leitfähigkeit der elektrischen Synapsen auswirken.
Lentiviral vectors mediate gene transfer into dividing and most non-dividing cells. Thereby, they stably integrate the transgene into the host cell genome. For this reason, lentiviral vectors are a promising tool for gene therapy. However, safety and efficiency of lentiviral mediated gene transfer still needs to be optimised. Ideally, cell entry should be restricted to the cell population relevant for a particular therapeutic application. Furthermore, lentiviral vectors able to transduce quiescent lymphocytes are desirable. Although many approaches were followed to engineer retroviral envelope proteins, an effective and universally applicable system for retargeting of lentiviral cell entry is still not available. Just before the experimental work of this thesis was started, retargeting of measles virus (MV) cell entry was achieved. This virus has two types of envelope glycoproteins, the hemagglutinin (H) protein responsible for receptor recognition and the fusion (F) protein mediating membrane fusion. For retargeting, the H protein was mutated in its interaction sites for the native MV receptors and a ligand or a single-chain antibody (scAb) was fused to its ectodomain. It was hypothesised that the retargeting system of MV can be transferred to lentiviral vectors by pseudotyping human immunodeficiency virus-1 (HIV-1) derived vector particles with the MV glycoproteins. As the unmodified MV glycoproteins did not pseudotype HIV vectors, two F and 15 H protein variants carrying stepwise truncations or amino acid (aa) exchanges in their cytoplasmic tails were screened for their ability to form MV-HIV pseudotypes. The combinations Hcd18/Fcd30, Hcd19/Fcd30 and Hcd24+4A/Fcd30 led to most efficient pseudotype formation with titers above 10exp6 transducing units /ml, using concentrated particles. The F cytoplasmic tail was truncated by 30 aa and the H cytoplasmic tail was truncated by 18, 19 or 24 residues with four added alanines after the start methionine in the latter case. Western blot analysis indicated that particle incorporation of the MV glycoproteins was enhanced upon truncation of their cytoplasmic tails. With the MV-HIV vectors high titers on different cell lines expressing one or both MV receptors were obtained, whereas MV receptor-negative cells remained untransduced. Titers were enhanced using an optimal H to F plasmid ratio (1:7) during vector particle production. Based on the described pseudotyping with the MV glycoprotein variants, HIV vectors retargeted to the epidermal growth factor receptor (EGFR) or the B cell surface marker CD20 were generated. For the production of the retargeted vectors MVaEGFR-HIV and MVaCD20-HIV, Fcd30 together with a native receptor blind Hcd18 protein, displaying at its ectodomain either the ligand EGF or a scAb directed against CD20 were used. With these vectors, gene transfer into target receptor-positive cells was several orders of magnitude more efficient than into control cells. The almost complete absence of background transduction of non-target cells was e.g. demonstrated in mixed cell populations, where the CD20-targeting vector selectively eliminated CD20-positive cells upon suicide gene transfer. Remarkably, transduction of activated primary human CD20-positive B cells was much more efficient with the MVaCD20-HIV vector than with the standard pseudotype vector VSV-G-HIV. Even more surprisingly, MVaCD20-HIV vectors were able to transduce quiescent primary human B cells, which until then had been resistant towards lentiviral gene transfer. The most critical step during the production of MV-HIV pseudotypes was the identification of H cytoplasmic tail mutants that allowed pseudotyping while retaining the fusion helper function. In contrast to previously inefficient targeting strategies, the reason for the success of this novel targeting system must be based on the separation of the receptor recognition and fusion functions onto two different proteins. Furthermore, with the CD20-targeting vector transduction of quiescent B cells was demonstrated for the first time. Own data and literature data suggest that CD20 binding and hyper-cross-linking by the vector particles results in calcium influx and thus activation of quiescent B cells. Alternatively this feature may be based on a residual binding activity of the MV glycoproteins to the native MV receptors that is insufficient for entry but induces cytoskeleton rearrangements dissolving the post-entry block of HIV vectors. Hence, in this thesis efficient retargeting of lentiviral vectors and transduction of quiescent cells was combined. This novel targeting strategy should be easily adaptable to many other target molecules by extending the modified MV H protein with appropriate specific domains or scAbs. It should now be possible to tailor lentiviral vectors for highly selective gene transfer into any desired target cell population with an unprecedented degree of efficiency.
Neutron stars are very dense objects. One teaspoon of their material would have a mass of five billion tons. Their gravitational force is so strong that if an object were to fall from just one meter high it would hit the surface of the respective neutron star at two thousand kilometers per second. In such dense bodies, different particles from the ones present in atomic nuclei, the nucleons, can exist. These particles can be hyperons, that contain non-zero strangeness, or broader resonances. There can also be different states of matter inside neutron stars, such as meson condensates and if the density is height enough to deconfine the nucleons, quark matter. As new degrees of freedom appear in the system, different aspects of matter have to be taken into account. The most important of them being the restoration of the chiral symmetry. This symmetry is spontaneously broken, which is a fact related to the presence of a condensate of scalar quark-antiquark pairs, that for this reason is called chiral condensate. This condensate is present at low densities and even in vacuum. It is important to remember at this point that the modern concept of vacuum is far away from emptiness. It is full of virtual particles that are constantly created and annihilated, being their existence allowed by the uncertainty principle. At very high temperature/density, when the composite particles are dissolved into constituents, the chiral consensate vanishes and the chiral symmetry is restored. To explain how and when chiral symmetry is restored in neutron stars we use a model called non-linear sigma model. This is an effective quantum relativistic model that was developed in order to describe systems of hadrons interacting via meson exchange. The model was constructed from symmetry relations, which allow it to be chiral invariant. The first consequence of this invariance is that there are no bare mass terms in the lagrangian density, causing all, or most of the particles masses to come from the interactions with the medium. There are still other interesting features in neutron stars that cannot be found anywhere else in nature. One of them is the high isospin asymmetry. In a normal nucleus, the amount of protons and neutrons is more or less the same. In a neutron star the amount of neutrons is much higher than the protons. The resulting extra energy (called Fermi energy) increases the energy of the system, allowing the star to support more mass against gravitational collapse. As a consequence of that in early stages of the neutron star evolution, when there are still many trapped neutrinos, the proton fraction is higher than in later stages and consequently the maximum mass that the star can support against gravity is smaller. This, between many other features, shows how the microscopic phenomena of the star can reflect into the macroscopic properties. Another important property of neutron stars is charge neutrality. It is a required assumption for stability in neutron stars, but there are others. One example is chemical equilibrium. It means that the number of particles from each kind is not conserved, but they are created and annihilated through specific reactions that happen at the same rate in both directions. Although to calculate microscopic physics of neutron stars the space-time of special relativity, the Minkowski space, can be used, this is not true for the global properties of the star. In this case general relativity has to be used. The solution of Einstein's equations simplified to static, spherical and isotropic stars correspond to the configurations in which the star is in hydrostatic equilibrium. That means that the internal pressure, coming mainly from the Fermi energy of the neutrons, balances the gravity avoiding the collapse. When rotation is included the star becomes more stable, and consequently, can be more massive. The movement also makes it non-spherical, what requires the metric of the star to also be a function of the polar coordinate. Another important feature that has to be taken into account is the dragging of the local inertial frame. It generates centrifugal forces that are not originated in interactions with other bodies, but from the non-rotation of the frame of reference within which observations are made. These modifications are introduced through the Hartle's approximation that solves the problem by applying perturbation theory. In the mean field approximation, the couplings as well as the parameters of the non-linear sigma model are calibrated to reproduce massive neutron stars. The introduction of new degrees of freedom decreases the maximum mass allowed for the neutron star, as they soften the equation of state. In practice, the only baryons present in the star besides the nucleons are the Lambda and Sigma-, in the case in which the baryon octet is included, and Lambda and Delta-,0,+,++, in the case in which the baryon decuplet is included. The leptons are included to ensure charge neutrality. We choose to proceed our calculations including the baryon octet but not the decuplet, in order to avoid uncertainties in the couplings. The couplings of the hyperons were fitted to the depth of their potentials in nuclei. In this case the chiral symmetry restoration can be observed through the behavior of the related order parameter. The symmetry begins to be restored inside neutron stars and the transition is a smooth crossover. Different stages of the neutron star cooling are reproduced taking into account trapped neutrinos, finite temperature and entropy. Finite-temperature calculations include the heat bath of hadronic quasiparticles within the grand canonical potential of the system. Different schemes are considered, with constant temperature, metric dependent temperature and constant entropy. The neutrino chemical potential is introduced by fixing the lepton number in the system, that also controls the amount of electrons and protons (for charge neutrality). The balance between these two features is delicate and influenced mainly by the baryon number conservation. Isolated stars have a fixed number of baryons, which creates a link between different stages of the cooling. The maximum masses allowed in each stage of the cooling process, the one with high entropy and trapped neutrinos, the deleptonized one with high entropy, and the cold one in beta equilibrium. The cooling process is also influenced by constraints related to the rotation of the star. When rotation is included the star becomes more stable, and consequently, can be more massive. The movement also deforms it, requiring the metric of the star to include modifications that are introduced through the use of perturbation theory. The analysis of the first stages of the neutron star, when it is called proto-neutron star, gives certain constraints on the possible rotation frequencies in the colder stages. Instability windows are calculated in which the star can be stable during certain stages but collapses into black holes during the cooling process. In the last part of the work the hadronic SU(3) model is extended to include quark degrees of freedom. A new effective potential to the order parameter for deconfinement, the Polyakov loop, makes the connection between the physics at low chemical potential and hight temperature of the QCD phase diagram with the height chemical potential and low temperature part. This is done through the introduction of a chemical potential dependency on the already temperature dependent potential. Analyzing the effect of both order parameters, the chiral condensate and the Polyakov loop, we can drawn a phase diagram for symmetric as well as for star matter. The diagram contains a crossover region as well as a first order phase transition line. The new couplings and parameters of the model are chosen mainly to fit lattice QCD, including the position of the critical point. Finally, this matter containing different degrees of freedom (depending on which phase of the diagram we are) is used to calculate hybrid star properties.
Shape complementarity is a compulsory condition for molecular recognition. In our 3D ligand-based virtual screening approach called SQUIRREL, we combine shape-based rigid body alignment with fuzzy pharmacophore scoring. Retrospective validation studies demonstrate the superiority of methods which combine both shape and pharmacophore information on the family of peroxisome proliferator-activated receptors (PPARs). We demonstrate the real-life applicability of SQUIRREL by a prospective virtual screening study, where a potent PPARalpha agonist with an EC50 of 44 nM and 100-fold selectivity against PPARgamma has been identified...
Für Bibliotheken gehört der Umgang mit elektronischen Ressourcen zu den größten Herausforderungen des 21. Jahrhunderts. Die Sammlung, Erschließung und dauerhafte Aufbewahrung elektronischer Ressourcen erweitert das Aufgabenfeld von Bibliotheken heutzutage enorm. Auch mit dem Aufbau von Langzeitspeichern müssen Bibliotheken sich auseinandersetzen.
Die Herausforderung der digitalen Langzeitarchivierung betrifft alle Gedächtnisorganisationen - Bibliotheken, Archive, Museen - und kann effektiv und bezahlbar nur kooperativ bewältigt werden. Aus diesem Gedanken heraus wurde 2003 in Deutschland das Kompetenznetzwerk für digitale Langzeitarchivierung „nestor“ mit den Arbeitsschwerpunkten Qualifizierung, Standardisierung, Vernetzung gegründet.
Die Überlieferung des kulturellen Erbes, traditionell eine der Aufgaben von Bibliotheken, Archiven und Museen, ist durch die Einführung digitaler Medien und innovativer Informationstechnologien deutlich anspruchsvoller geworden. In der heutigen Zeit werden zunehmend mehr Informationen (nur) digital erstellt und veröffentlicht. Diese digitalen Informationen, die Güter des Informations- und Wissenszeitalters, sind einerseits wertvolle kulturelle und wissenschaftliche Ressourcen, andererseits sind sie z.B. durch die Kurzlebigkeit vieler Formate sehr vergänglich. Die Datenträger sind ebenso der Alterung unterworfen wie die Datenformate oder die zur Darstellung notwendige Hard- und Software. Um langfristig die Nutzbarkeit der digitalen Güter sicherzustellen, muss schon frühzeitig Vorsorge getroffen werden. Es müssen Strategien zur digitalen Langzeitarchivierung entwickelt und umgesetzt werden. ...