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Institute
- Theodor-Boveri-Institut für Biowissenschaften (124)
- Graduate School of Life Sciences (62)
- Universität - Fakultätsübergreifend (50)
- Physikalisches Institut (38)
- Institut für Psychologie (35)
- Medizinische Klinik und Poliklinik I (35)
- Medizinische Klinik und Poliklinik II (34)
- Neurologische Klinik und Poliklinik (27)
- Klinik und Poliklinik für Psychiatrie, Psychosomatik und Psychotherapie (26)
- Institut für Molekulare Infektionsbiologie (25)
Schriftenreihe
Sonstige beteiligte Institutionen
- Clinical Trial Center (CTC) / Zentrale für Klinische Studien Würzburg (ZKSW) (3)
- Röntgen Center for Complex Material Systems (RCCM), Am Hubland, 97074 W¨urzburg, Germany (2)
- Universitätsklinikum Münster (2)
- Wilhelm-Conrad-Röntgen-Forschungszentrum für komplexe Materialsysteme (2)
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- Badisches Landesmuseum Karlsruhe (1)
- CBIO, University of Cape Town, South Africa (1)
- Centre for Political Studies, Jawaharlal Nehru University, New Delhi (1)
- Comprehensive Hearing Center, Department of ORL, Plastic, Aesthetic and Reconstructive Head and Neck Surgery, Würzburg, Germany (1)
- DLR (1)
ResearcherID
- I-5818-2014 (1)
Fabrication and characterization of CPP-GMR and spin-transfer torque induced magnetic switching
(2014)
Even though the unique magnetic behavior for ferromagnets has been known for thousands of years, explaining this interesting phenomenon only occurred in the 20th century. It was in 1920, with the discovery of electron spin, that a clear explanation of how ferromagnets achieve their unique magnetic properties came to light. The electron carries an intrinsic electric charge and intrinsic angular momentum. Use of this property in a device was achieved in 1998 when Fert and Gru¨nberg independently found that the resistance of FM/NM/FM trilayer depended on the angle between the magnetization of the two layers. This phenomena which is called giant magnetoresistance (GMR) brought spin transfer into mainstream. This new discovery created a brand new research fi called “spintronics” or “spin based electronics” which exploits the intrinsic spin of electron.
As expected spintronics delivered a new generation of magnetic devices which are currently used in magnetic disk drives and magnetic random access memories (MRAM). The potential advantages of spintronics devices are non-volatility, higher speed, increased data density and low power consumption. GMR devices are already used in industry as magnetic memories and read heads.
The quality of GMR devices can be increased by developing new magnetic materials and also by going down to nanoscale. The desired characteristic properties of these new materials are higher spin polarization, higher curie temperature and better spin filtering. Half-metals are a good candidate for these devices since they are expected to have high polarization. Some examples of half-metals are Half-Heusler alloy, full Heusler alloy and Perovskite or double Perovskite oxides. The devices discussed in this thesis have NiMnSb half-Heusler alloy and permalloy as the ferromagnetic layers separated by Cu as the nonmagnetic layer.
This dissertation includes mainly two parts, fabrication and characterization of nan- opillars. The layer stack used for the fabrication is Ru/Py/Cu/NiMnSb which is grown on an InP substrate with an (In,Ga)As buff by molecule beam epitaxy (MBE). A new method of fabrication using metal mask which has a higher yield of working samples over the previous method (using the resist mask) used in our group is discussed in detail. Also, the advantages of this new method and draw backs of the old method are explained thoroughly (in chapter 3).
The second part (chapters 4 and 5) is focused on electrical measurements and charac- terization of the nanopillar, specially with regard to GMR and spin-transfer torque (STT)
measurements. In chapter 4, the results of current perpendicular the plane giant mag- netoresistance (CPP-GMR) measurements at various temperatures and in-plane magnetic fi are presented. The dependence of CPP-GMR on bias current and shape anisotropy of the device are investigated. Results of these measurements show that the device has strong shape anisotropy.
The following chapter deals with spin-transfer torque induced magnetic switching measurements done on the device. Critical current densities are on the order of 106 A/cm2, which is one order of magnitude smaller than the current industry standards. Our results show that the two possible magnetic configurations of the nanopillar (parallel and anti-parallel) have a strong dependence on the applied in-plane magnetic fi Fi- nally, four magnetic fi regimes based on the stability of the magnetic configuration (P stable, AP stable, both P and AP stable, both P and AP unstable) are identified.
The discovery of the Giant Magneto Resistance (GMR) effect in 1988 by Albert Fert [Baib 88] and Peter Grünberg [Bina 89] led to a rapid development of the field of spintronics and progress in the information technology. Semiconductor based spintronics, which appeared later, offered a possibility to combine storage and processing in a single monolithic device. A direct result is reduced heat dissipation. The observation of the spin Seebeck effect by Ushida [Uchi 08] in 2008 launched an increased interest and encouraged research in the field of spin caloritronics. Spintronics is about the coupling of charge and spin transport. Spin caloritronics studies the interaction between heat and spin currents. In contrast to spintronics and its variety of applications, a particular spin-caloritronic device has not yet been demonstrated. However, many of the novel phenomena in spin caloritronics can be detected in most spintronic devices. Moreover, thermoelectric effects might have a significant influence on spintronic device operation. This will be of particular interest for this work. Additional knowledge on the principle of coupling between heat and spin currents uncovers an alternative way to control heat dissipation and promises new device functionalities.
This thesis aims to further extend the knowledge on thermoelectrics in materials with strong spin-orbit coupling, in this case the prototypical ferromagnetic semiconductor (Ga,Mn)As. The study is focused on the thermoelectric / thermomagnetic effects at the interface between a normal metal and the ferromagnetic (Ga,Mn)As. In such systems, the different interfaces provide a condition for minimal phonon drag contribution to the thermal effects. This suggests that only band contributions (a diffusion transport regime) to these effects will be measured.
Chapter 2 begins with an introduction on the properties of the studied material system, and basics on thermoelectrics and spin caloritronics. The characteristic anisotropies of the (Ga,Mn)As density of states (DOS) and the corresponding magnetic properties are described. The DOS and magnetic anisotropies have an impact on the transport prop- erties of the material and that results in effects like tunneling anisotropic magnetores- istance (TAMR) [Goul 04]. Some of these effects will be used later as a reference to the results from thermoelectric / thermomagnetic measurements. The Fingerprint tech- nique [Papp 07a] is also described. The method gives an opportunity to easily study the anisotropies of materials in different device geometries.
Chapter 3 continues with the experimental observation of the diffusion thermopower of (Ga,Mn)As / Si-doped GaAs tunnel junction. A device geometry for measuring the diffusion thermopower is proposed. It consists of a Si - doped GaAs heating channel with a Low Temperature (LT) GaAs / (Ga,Mn)As contact (junction) in the middle of the channel. A single Ti / Au contact is fabricated on the top of the junction. For transport characterization, the device is immersed in liquid He. A heating current technique is used to create a temperature difference by local heating of the electron system on the Si:GaAs side. An AC current at low frequency is sent through the channel and it heats the electron population in it, while the junction remains at liquid He temperature (experimentally con- firmed). A temperature difference arises between the heating channel and the (Ga,Mn)As contact. As a result, a thermal (Seebeck) voltage develops across the junction, which we call tunnelling anisotropic magneto thermopower (TAMT), similar to TAMR. TAMT is detected by means of a standard lock-in technique at double the heating current frequency (at 2f ). The Seebeck voltage is found to be linear with the temperature difference. That dependence suggests a diffusion transport regime. Lattice (phonon drag) contribution to the thermovoltage, which is usually highly nonlinear with temperature, is not observed.
The value of the Seebeck coefficient of the junction at 4.2 K is estimated to be 0.5 µV/K.
It is about three orders of magnitude smaller than the previously reported one [Pu 06]. Subsequently, the thermal voltage is studied in external magnetic fields. It is found that the thermopower is anisotropic with the magnetization direction. The anisotropy is explained with the anisotropies of the (Ga,Mn)As contact. Further, switching events are detected in the thermopower when the magnetic field is swept from negative to positive fields. The switchings remind of a spin valve signal and is similar to the results from previous experiments on spin injection using a (Ga,Mn)As contacts in a non-local detection scheme. That shows the importance of the thermoelectric effects and their possible contribution to the spin injection measurements. A polar plot of the collected switching fields for different magnetization angles reveals a biaxial anisotropy and resembles earlier TAMR measurements of (Ga,Mn)As tunnel junction. A simple cartoon model is introduced to describe and estimate the expected thermopower of the studied junction. The model yields a Fermi level inside of the (Ga,Mn)As valence band. Moreover, the model is found to be in good agreement with the experimental results.
The Nernst effect of a (Ga,Mn)As / GaAs tunnel junction is studied in Chapter 4. A modified device geometry is introduced for this purpose. Instead of a single contact on the top of the square junction, four small contacts are fabricated to detect the Nernst signal. A temperature difference is maintained by means of a heating current technique described in Chapter 3. A magnetic field is applied parallel to the device plane. A voltage drop across two opposite contacts is detected at 2f. It appears that a simple cosine function with a parameter the angle between the magnetization and the [100] crystal direction in the (Ga,Mn)As layer manages to describe this signal which is attributed to the anomalous Nernst effect (ANE) of the ferromagnetic contact. Its symmetry is different than the Seebeck effect of the junction. For the temperature range of the thermopower measurements the ANE coefficient has a linear dependence on the temperature difference (∆T). For higher ∆T, a nonlinear dependence is observed for the coefficient. The ANE coefficient is found to be several orders of magnitude smaller than any Nernst coefficient in the literature. Both the temperature difference and the size of the ANE coefficient require further studies and analysis. Switching events are present in the measured Nernst signal when the magnetic field is swept from positive to negative values. These switchings are related to the switching fields in the ferromagnetic (Ga,Mn)As. Usually, there are two states which are present in TAMR or AMR measurements - low and high resistance. Instead of that, the Nernst signal appears to have three states - high, middle and low thermomagnetic voltage. That behaviour is governed not only by the magnetization, but also by the characteristic of the Nernst geometry.
Chapter 5 summarizes the main observations of this thesis and contains ideas for future work and experiments.
Die in vitro-Generierung naiver T-Zellen wäre ein wichtiger Fortschritt in der Therapie verschiedenster Erkrankungen mit T-Zelldefizienz (HIV, Immundefekte, Stammzell-transplantierte Patienten). Zur Erreichung dieses Ziels wurden in der vorliegenden Arbeit zwei Teilprojekte bearbeitet: a) die Bestimmung der Frequenz CD34+ Stammzellen in Knochenmark, Nabelschnurblut und Leukapheresat, die über ein bevorzugtes lymphoides Differenzierunspotential verfügen. Desweiteren wurde in diesem Zusammenhang nach zwei Phänotypen spezifischer lymphoider Progenitorpopulationen gesucht: CD34+lin-CD45RAhiCD7+ und CD34+lin- CD10+CD24-. b) die Auswertung von in vitro Zellkulturversuchen, bei denen mit Hilfe einer neuartigen Zellkulturmatrix, eine Generierung naiver T-Zellen aus humanen CD34+ Stammzellen möglich sein soll. Unsere Analysen ergaben, dass die CD34+lin-CD45RAhiCD7+ Progenitorpopulation im Knochenmark und im Leukapheresat zu identifizieren war, im Nabelschnurblut jedoch unter der Nachweisgrenze lag. Ebenso konnte die CD34+lin-CD10+CD24- Progenitorpopulation im Knochenmark, Leukapheresat und Nabelschnurblut gefunden werden, allerdings in deutlich niedrigeren Frequenzen als bislang berichtet. Interessanterweise lag der Anteil Linienmarker-negativer Zellen, d.h. der unreifen Vorläuferzellen, im Knochenmark signifikant höher als im Leukapheresat und Nabelschnurblut. Eine mögliche Erklärung dafür könnte sein, daß ins periphere Blut nur reifere Subpopulationen von Progenitorzellen mobilisiert werden.
In den Zellkulturversuchen zeigte sich, daß auch mit Hilfe einer neuartigen 3D- Zellkulturmatrix weder mit humanen Hautfibroblasten noch mit humanen Thymusfragmenten als Stromazellquelle aus CD34+ peripheren Blutstammzellen T-Zellen in vitro generiert werden konnten. Es entstanden vielmehr überwiegend Zellen mit monozytärem Phänotyp, und die CD3+ T- Zellen, die in einigen Versuchen gemessen worden waren, erwiesen sich als Residuen aus dem Thymusgewebe. Diese Ergebnisse stehen somit im Widerspruch zu einer publizierten methodischen Arbeit, die mit murinem
Thymusgewebe als Stromazellquelle erfolgreich naive T-Zellen generieren konnte.
Zusammenfassend lässt sich feststellen, dass lymphoide Progenitoren in klinischen Routinepräparaten wie Knochenmark oder Leukapheresat in niedriger Frequenz natürlicherweise enthalten sind. Da mit derzeit verfügbaren Kultursystemen die in vitro Generierung reifer T- Zellen schwierig bzw. noch nicht möglich ist, stellt sich die Frage, ob nicht zumindest lymphoide Progenitoren in einem noch weiter zu optimierenden in vitro Zellkultursystem differenziert werden können. Durch Kotransplantation dieser Zellen könnte man die Frequenz der lymphoiden Progenitoren im Blut erhöhen und dadurch die T- Zellregeneration beschleunigen. Dieser Ansatz wird in Nachfolgeexperimenten unserer Arbeitsgruppe weiter verfolgt.
Die vorliegende Arbeit wurde im Rahmen eines interdisziplinären Forschungsprojektes der Universitätsklinik Würzburg verfasst (IZKF-Studiennr. F-164, CFCW-Projekt).
Ziel dieser Arbeit war es, explorativ zu untersuchen, inwieweit ein Lagerungsplagiozephalus (LP) die sprachlich-kognitive und motorische Entwicklung eines Säuglings/ Kindes beeinflusst und ob es Hinweise auf eine Auswirkung der Dauer der Therapie mittels Kopforthese auf die frühkindliche Entwicklung gibt. Sie liefert erstmalig Untersuchungsdaten zur vorsprachlichen und frühen sprachlichen Entwicklung von Säuglingen mit LP.
Das Probandenkollektiv bestand aus 71 Probanden (Plagiozephalus mit Helmtherapie (PMH)-Gruppe: N=36, Kontrollgruppe (KG): N=35). Im Alter von zwölf Monaten wurde die Sprachleistung aller Probanden mithilfe des ELFRA-1 eingeschätzt. Zudem wurden die Ergebnisse der deutschen Fassung der BSID II vom sechsten und zwölften Lebensmonat herangezogen. Um den Effekt der Helmtherapie auf die Entwicklung der Kinder mit LP zu berücksichtigen, fand eine Korrelation zwischen der Tragedauer und sprachproduktiven, sprachperzeptiven, gestischen, (fein-)motorischen und kognitiven Leistungen der Probanden statt. Ein maskierender Einfluss des Co-Faktors SLI-Risiko auf die Befunde konnte ausgeschlossen werden.
Zusammengefasst zeigen die hier untersuchten Säuglinge mit LP im Alter von sechs Monaten statistisch gerade signifikant schlechtere motorische Fähigkeiten als Säuglinge mit normaler Kopfform. Im Alter von zwölf Monaten holen sie diese Defizite jedoch auf und sind teilweise sogar motorisch geschickter als die Vergleichsgruppe. Die kognitive Entwicklung von Kindern mit LP scheint nicht verzögert zu sein, wie in der Fachliteratur postuliert.
In den Analysen zeigte sich kein signifikanter Zusammenhang zwischen der Helmtragedauer und den sprachlichen (ELFRA-1) und kognitiven (BSID: MDI 12 Monate) Fähigkeiten der Probanden mit LP. Die motorischen Fähigkeiten (BSID: PDI 12 Monate) zeigten einen statistisch signifikanten Zusammenhang zur Tragedauer der Kopforthese. Je länger der Helm getragen wurde, desto besser fielen die motorischen Leistungen der Probanden im Alter von zwölf Monaten aus.
Zusätzlich wurden Vokalisationen einer Untergruppe (High-Contrast-Gruppe (HC), N=20) im Hinblick auf melodische Variationsfähigkeiten im sechsten Lebensmonat untersucht. Dazu wurden die digitalen Lautaufnahmen im Säuglingslabor des ZVES an der Poliklinik für Kieferorthopädie editiert und mithilfe spezifischer Analyseprogramme quantitativ analysiert. Die Säuglinge mit LP wiesen genauso variantenreiche Melodien in ihren Vokalisationen auf wie die Säuglinge der Kontrollgruppe. Spätere Sprachauffälligkeiten würden sich bereits in diesen vorsprachlichen Fähigkeiten manifestieren.
Auch wenn zukünftige Studien bestätigen, dass ein LP – entgegen den Erkenntnissen anderer Autoren (Korpilahti et al. 2012, Speltz et al. 2010 u.a.) – keine kognitiven Beeinträchtigungen zur Folge hat, ist die Therapie dieser Schädelasymmetrie auf psychosozialer Ebene und wegen möglicher Auswirkungen auf das maxillomandibuläre System zu befürworten (Meyer-Marcotty et al. 2012).
Diverse synthetische Zugänge zu einer neuen Verbindungsklasse, nämlich den chiralen 9-
Oxabispidinen wurden realisiert. Als gemeinsame Ausgangsverbindung diente das Aminodiol. Die Route über ein Bispidinlactam stellte sich aufgrund der geringen Ausbeute (~5%) über 8 Stufen als wenig effektiv heraus. Ein Nitril eignete sich wesentlich besser als Zwischenstufe und lieferte die Zielverbindungen in 9-27% Gesamtausbeute über 8-12 Stufen.
Auch ein Syntheseweg zur Darstellung von Bispidinen konnte ausgehend vom Naturstoff (–)-Cytisin, der aus den Samen des Gemeinen Goldregens isoliert wurde, etabliert werden. Hierzu wurde in Analogie zu O’Briens Arbeiten zunächst die freie Aminofunktion als Carbamat geschützt und der aromatische Ring zum Lactam reduziert, um dann in 5-Position derivatisieren zu können. Verschiedene Substituenten (Me, iPr, F, cPr) konnten sowohl in axialer als auch in äquatorialer Position eingeführt werden. Ein weiterer Reduktionschritt
am Ende der Sequenz lieferte die trizyklischen Diamine in 15-38% Ausbeute über nur 4-6
Stufen ausgehend von (–)-Cytisin. Eine Cyclopropylgruppe wurde durch Einführung einer
Methoxymethylgruppe, Eliminierung und eine Cyclopropanierung mit Diiodmethan/ Diethylzink generiert.
Alle synthetisierten Verbindungen wurden als chirale Liganden in verschiedenen enantioselektiven Reaktionen evaluiert. Im Fokus standen hierbei zunächst die 9-Oxabispidine, die sich–im Gegensatz zu den bekannten Bispidinen–leider nicht als chirale Liganden in enantioselektiven Deprotonierungen einsetzen lassen, da sie selbst deprotoniert werden. In enantioselektiven Henry-Reaktionen stellte sich das trizyklische 9-Oxabispidin als hervorragender Ligand heraus, der als Kupferkomplex mit einer Vielzahl an Aldehyden (aliphatisch, aromatisch) und Nitromethan umgesetzt wurde. Sowohl die Ausbeuten (44-95%) als auch die Enantiomerenüberschüsse (91-98%) waren exzellent und können mit den Ergebnissen der besten Literatur-bekannten Katalysatoren mithalten. Auch in einer diastereoselektiven Umsetzung mit Nitroethan konnte ein dr von 80:20 mit sehr guten 94% ee für das Hauptdiastereomer erzielt werden. Die bizyklischen 9-Oxabispidine eignen sich weniger für Henry-Reaktionen, da die Verbindungen mit sterisch weniger anspruchsvollen Reste nur mittelmäßige Resultate (33-46% ee) ergeben. Mit zunehmender Sterik ist auch eine steigende Tendenz zu einem höheren Enantiomerenüberschuss [z.B. R = Ph, 56/57% ee] zu erkennen. Interessant ist die Stereoselektivität der bizyklischen Oxabispidine: Während das trizyklische Bispidin zu einer S-Konfiguration im Produkt führt–wie es von einem (+)-Spartein-Ersatzstoff zu erwarten ist–liefern R = Et, iPr. cHex und Ph das R-Produkt - genau wie (–)-Spartein. Der Grund hierfür ist wahrscheinlich die exponierte Stellung der äußeren Methylgruppe im annelierten Piperidinring. Ein ähnlicher Effekt trat mit dem 9-Oxabispidin R = tBuPh, das ebenfalls einen weit ausladenden aromatischen Ring besitzt, ein. Auch hier wurden unter Induktionsumkehr im Vergleich zu R = Et, iPr, cHex, Ph das S-konfigurierte Produkt in 38-39 % ee erhalten.
Im Gegensatz zu den 9-Oxabispidinen können die Bispidine in enantioselektiven Deprotonierungsreaktionen eingesetzt werden. Die bei der Umsetzung erzielten Ergebnisse mit den Monomethyl-Verbindungen (92% ee, äquatoriale Me-Gruppe und 79% ee, axiale Me-Gruppe) zeigen, dass eine axiale Methylgruppe den Chiralitätstransfer eher negativ beeinflusst, wohingegen eine äquatoriale Methylgruppe keinen Einfluss ausübt auf den ee (gleicher ee mit 92% wie das trizyklische Bispidin). Bei größeren äquatorialen Substituenten wie iPr (51%) sinkt ebenfalls der Enantiomerenüberschuss. Zwei gleichartige Substituenten (≠ H) in 5-Position stören die Reaktion so sehr, dass der ee-Wert stark abfällt (34% ee bei zwei 5-Methylgruppen). Bei Einführung von kleinen Substituenten in äquatorialer und axialer Position, wie F (65% ee) oder -CH2-CH2- (40% ee) liegen die erzielten ee-Werte auch viel niedriger.
Synapsins are conserved synapse-associated hosphoproteins involved in the fine regulation of neurotransmitter release. The aim of the present project is to study the phosphorylation of synapsins and the distribution of phospho-synapsin in the brain of Drosophila melanogaster.
Three antibodies served as important tools in this work, a monoclonal antibody (3C11/α-Syn) that recognizes all known synapsin isoforms and two antisera against phosphorylated synapsin peptides (antiserum PSyn(S6) against phospho-serine 6 and antiserum PSyn(S464) against phospho-serine 464). These antisera were recently generated in collaboration with Bertram Gerber and Eurogentec. ...
Organisms have evolved endogenous clocks which allow them to organize their behavior, metabolism and physiology according to the periodically changing environmental conditions on earth. Biological rhythms that are synchronized to daily changes in environment are governed by the so-called circadian clock. Since decades, chronobiologists have been investigating circadian clocks in various model organisms including the fruitfly Drosophila melanogaster, which was used in the present thesis.
Anatomically, the circadian clock of the fruitfly consists of about 150 neurons in the lateral and dorsal protocerebrum, which are characterized by their position, morphology and neurochemistry. Some of these neurons had been previously shown to contain either one or several neuropeptides, which are thought to be the main signaling molecules used by the clock. The best investigated of these neuropeptides is the Pigment Dispersing Factor (PDF), which had been shown to constitute a synchronizing signal between clock neurons as well as an output factor of the clock.
In collaboration with various coworkers, I investigated the roles of three other clock expressed neuropeptides for the generation of behavioral rhythms and the partly published, partly unpublished data are presented in this thesis. Thereby, I focused on the Neuropeptide F (NPF), short Neuropeptide F (sNPF) and the Ion Transport Peptide (ITP). We show that part of the neuropeptide composition within the clock network seems to be conserved among different Drosophila species. However, the PDF expression pattern in certain neurons varied in species deriving from lower latitudes compared to higher latitudes. Together with findings on the behavioral level provided by other people, these data suggest that different species may have altered certain properties of their clocks - like the neuropeptide expression in certain neurons - in order to adapt their behavior to different habitats.
We then investigated locomotor rhythms in Drosophila melanogaster flies, in which neuropeptide circuits were genetically manipulated either by cell ablation or RNA interference (RNAi). We found that none of the investigated neuropeptides seems to be of equal importance for circadian locomotor rhythms as PDF. PDF had been previously shown to be necessary for rhythm maintenance in constant darkness (DD) as well as for the generation of morning (M) activity and for the right phasing of the evening (E) activity in entrained conditions. We now demonstrate that NPF and ITP seem to promote E activity in entrained conditions, but are clearly not the only factors doing so. In addition, ITP seems to reduce nighttime activity. Further, ITP and possibly also sNPF constitute weak period shortening components in DD, thereby opposing the effect of PDF. However, neither NPF or ITP, nor sNPF seem to be necessary in the clock neurons for maintaining rhythmicity in DD.
It had been previously suggested that PDF is released rhythmically from the dorsal projection terminals. Now we discovered a rhythm in ITP immunostaining in the dorsal projection terminals of the ITP+ clock neurons in LD, suggesting a rhythm in peptide release also in the case of ITP. Rhythmic release of both ITP and PDF seems to be important to maintain rhythmic behavior in DD, since constantly high levels of PDF and ITP in the dorsal protocerebrum lead to behavioral arrhythmicity.
Applying live-imaging techniques we further demonstrate that sNPF acts in an inhibitory way on few clock neurons, including some that are also activated by PDF, suggesting that it acts as signaling molecule within the clock network and has opposing effects to PDF. NPF did only evoke very little inhibitory responses in very few clock neurons, suggesting that it might rather be used as a clock output factor. We were not able to apply the same live-imaging approach for the investigation of the clock neuron responsiveness to ITP, but overexpression of ITP with various driver lines showed that the peptide most likely acts mainly in clock output pathways rather than inter-clock neuron communication.
Taking together, I conclude that all investigated peptides contribute to the control of locomotor rhythms in the fruitfly Drosophila melanogaster. However, this control is in most aspects dominated by the actions of PDF and rather only fine-tuned or complemented by the other peptides. I assume that there is a high complexity in spatial and temporal action of the different neuropeptides in order to ensure correct signal processing within the clock network as well as clock output.
Tumor angiogenesis is essential for the growth of solid tumors as their proliferation and survival is dependent on consistent oxygen and nutrient supply. Anti-angiogenic treatments represent a therapeutic strategy to inhibit tumor growth by preventing the formation of new blood vessels leading to starvation of the tumor. One of the best characterized anti angiogenic therapeutics is the monoclonal antibody bevacizumab (Avastin), which targets and neutralizes VEGF leading to disruption of the VEGF signaling pathway. Until today, bevacizumab has found its way into clinical practice and has gained approval for treatment of different types of cancer including colorectal cancer, non-small cell lung cancer, breast cancer and renal cell carcinoma. Signaling of VEGF is mediated through VEGF receptors, mainly VEGFR2, which are primarily located on the cell surface of endothelial cells. However, there has been evidence that expression of VEGF receptors can also be found on tumor cells themselves raising the possibility of autocrine and/or paracrine signaling loops. Thus, tumor cells could also benefit from VEGF signaling, which would promote tumor growth. The aim of this study was to investigate if bevacizumab has a direct effect on tumor cells in vitro. To this end, tumor cell lines from the NCI-60 panel derived from four different tumor types were treated with bevacizumab and angiogenic gene and protein expression as well as biological outputs including proliferation, migration and apoptosis were investigated. Most of the experiments were performed under hypoxia to mimic the in vivo state of tumors. Overall, there was a limited measurable effect of bevacizumab on treated tumor cell lines according to gene and protein expression changes as well as biological functions when compared to endothelial controls. Minor changes in terms of proliferation or gene regulation were evident in a single tumor cell line after VEGF-A blockade by bevacizumab, which partially demonstrated a direct effect on tumor cells. However, the overall analysis revealed that tumor cell lines are not intrinsically affected in an adverse manner by bevacizumab treatment.
Besides the functional analysis of tumor cells, embryonic stem cell derived endothelial cells were characterized to delineate vascular Hey gene functions. Hey and Hes proteins are the best characterized downstream effectors of the evolutionary conserved Notch signaling pathway, which mainly act as transcriptional repressors regulating downstream target genes. Hey proteins play a crucial role in embryonic development as loss of Hey1 and Hey2 in mice in vivo leads to a severe vascular phenotype resulting in early embryonic lethality. The major aim of this part of the thesis was to identify vascular Hey target genes using embryonic stem cell derived endothelial cells utilizing a directed endothelial differentiation approach, as ES cells and their differentiation ability provide a powerful in vitro system to study developmental processes. To this end, Hey deficient and Hey wildtype embryonic stem cells were stably transfected with an antibiotic selection marker driven by an endothelial specific promoter, which allows selection for endothelial cells. ESC-derived endothelial cells exhibited typical endothelial characteristics as shown by marker gene expression, immunofluorescent staining and tube formation ability. In a second step, Hey deficient ES cells were stably transfected with doxycycline inducible Flag-tagged Hey1 and Hey2 transgenes to re-express Hey proteins in the respective cell line. RNA-Sequencing of Hey deficient and Hey overexpressing ES cells as well as ESC-derived endothelial cells revealed many Hey downstream target genes in ES cells and fewer target genes in endothelial cells. Hey1 and Hey2 more or less redundantly regulate target genes in ES cells, but some genes were regulated by Hey2 alone. According to Gene Ontology term analysis, Hey target genes are mainly involved in embryonic development and transcriptional regulation. However, the response of ESC-derived endothelial cells in regulating Hey downstream target genes was rather limited when compared to ES cells, which could be due to lower transgene expression in endothelial cells. The limited response also raises the possibility that target gene regulation in endothelial cells is not only dependent on Hey gene functions alone and thus loss or overexpression of Hey genes in this in vitro setting does not influence target gene regulation.
Im Rahmen der Dissertation wurde die Reaktivitat des terminalen Mangan-Borylenkomplexes gegenüber verschiedenen polaren Doppelbindungssystemen, koordinativ ungesattigten Übergangsmetallfragmenten sowie Lewis-Basen untersucht. Mithilfe der spektroskopischen und strukturellen Daten der dabei synthetisierten Verbindungen konnten neue Erkenntnisse uber die Natur der Metall-Bor-Bindung erlangt werden.
Trotz deutlich zunehmender Durchimpfungsraten bei Kindern und Jugendlichen tritt Pertussis in Deutschland weiterhin als Ursache signifikanter Morbidität auf, v. a. bei ungeimpften Kindern und Säuglingen. Die Datenlage zur Pertussis-Epidemiologie ist vor allem in den alten Bundesländern aufgrund der bis 2013 fehlenden Meldepflicht sehr begrenzt. Das Ziel dieser Studie war die Ermittlung der Inzidenz und des Schweregrades von ICD-10-dokumentierten Bordetella pertussis-Hospitalisationen bei Kindern in Bayern.
27 (73%) von insgesamt 37 bayerischen Kinderkliniken beteiligten sich an der Surveillance-Studie. Sie führten eine Datenabfrage für im Jahr 2007 und 2008 stationär aufgenommene Kinder unter 17 Jahren mit einem ICD- 10-Code für Pertussis (A37.0 oder A37.9) als Haupt- oder Nebendiagnose bei Entlassung durch. Zu diesen Kindern wurden demographische Basisdaten sowie Jahr und Monat der Hospitalisation, Haupt- und alle Nebendiagnosen, Aufenthaltsdauer und Behandlung (OPS-Codes) erhoben.
Im 2-Jahres-Zeitraum 2007/2008 wurden insgesamt 171 Fälle identifiziert (2007:109 Fälle; 2008: 62 Fälle), mit 0-17 gemeldeten Fällen pro Klinik. Mädchen waren mit 51% (n=88) etwas häufiger betroffen als Jungen. Der Altersmedian lag bei vier Monaten (IQR: 1-14 Monate); 121 (70.7%) Kinder waren Säuglinge <1 Jahr, 102 (59.6%) <6 Monate und 41 (24.0%) <2 Monate alt. Die jährliche Inzidenz bei Säuglingen <1 Jahr wurde auf 67/100.000 Hospitalisationen geschätzt, bei Säuglingen <2 Monate auf 22/100.000. Respiratorische Komplikationen einschließlich Pneumonien und Apnoen traten bei 31% (n=53) aller Kinder auf; von diesen waren 82% (n=39) <1 Jahr bzw. 44% (n=21) <2 Monate alt. Fünf Kinder (3%) mussten intensivstationär behandelt werden, davon waren 4 jünger als 4 Monate. Bei einem Säugling (0.6%) war ein Krampfanfall dokumentiert, kardio-respiratorische Komplikationen kamen bei 2% und Dehydratation bei 8% aller Kinder vor.
Sowohl die Inzidenz der Hospitalisationen als auch die Komplikationsrate waren am höchsten bei Säuglingen <1 Jahr bzw. <2 Monaten. Die Ergebnisse belegen die Bedeutung der zeitgerechten Umsetzung der Impfempfehlung, d.h. den rechtzeitigen Start der Grundimmunisierung im Alter von 2, 3 und 4 Monaten. Auch die bereits 2004 empfohlene Impfung von Kontaktpersonen ist für die Prävention von Pertussis bei Säuglingen von hoher Wichtigkeit. Die bisher nicht allgemein empfohlene Impfung für Schwangere bzw. für Neugeborene könnte ggf. die Hospitalisationszahlen weiter senken; weitere Studien dazu werden dringend benötigt.