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Institute
- Theodor-Boveri-Institut für Biowissenschaften (86)
- Medizinische Klinik und Poliklinik I (46)
- Physikalisches Institut (44)
- Universität Würzburg (41)
- Graduate School of Life Sciences (39)
- Institut für Psychologie (35)
- Klinik und Poliklinik für Psychiatrie, Psychosomatik und Psychotherapie (34)
- Julius-von-Sachs-Institut für Biowissenschaften (32)
- Institut für Pharmazie und Lebensmittelchemie (24)
- Institut für Molekulare Infektionsbiologie (22)
Schriftenreihe
Sonstige beteiligte Institutionen
- Center for Interdisciplinary Clinical Research, Würzburg University, Würzburg, Germany (2)
- Orthopädische Klinik und Poliklinik der Universität Würzburg (2)
- Bavarian Center for Applied Energy Research (ZAE Bayern), 97074 Würzburg, Germany (1)
- Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut fuer biophysikalische Chemie (1)
- Blindeninstitut, Ohmstr. 7, 97076, Wuerzburg, Germany (1)
- Comprehensive Cancer Center Mainfranken, University Hospital Würzburg, Würzburg, Germany (1)
- DNA Analytics Core Facility, Biocenter, University of Wuerzburg, Wuerzburg, Germany (1)
- Deakin University, Australia (1)
- Department of Pediatrics, Pediatrics I, Innsbruck Medical University, Anichstr. 35, 6020, Innsbruck, Austria (1)
- EMBL, Structural and Computational Biology Unit, Heidelberg, Germany (1)
ResearcherID
- D-1250-2010 (1)
- N-7500-2014 (1)
Ziel der vorliegenden Arbeit war es, die Interaktion von ANP und Ang II im Bereich der blutdruckbestimmenden Widerstandsgefäße zu untersuchen. Ein besonderer Augenmerk wurde hierbei auch auf die Bedeutung von RGS2 gerichtet. Durch das Zusammenspiel der beiden funktionellen Antagonisten ANP und Ang II wird der Blutdruck reguliert. ANP und Ang II üben hierbei jeweils gegenteilige Effekte aus. Ang II hat vasokonstriktorische Effekte auf die Blutgefäße, vermindert die Natriurese und Diurese und erhöht den Sympathikustonus. ANP hingegen besitzt blutdruckmindernde Effekte, hervorgerufen durch Vasodilatation, gesteigerte Diurese, die Erhöhung der endothelialen Durchlässigkeit und der Hemmung des Sympathikustonus. Da nichts über die Interaktion dieser beiden Hormone in der Mikrozirkulation bekannt ist, wurden im Rahmen der Dissertation intravitalmikroskopische Studien der Mikrozirkulation des Musculus cremaster der Maus, in Anlehnung an der von Baez (1973) publizierten Methode, durchgeführt. Darüber hinaus wurden auch die Effekte von Ang II und ANP auf den Blutdruck durch invasive Blutdruckmessung untersucht. Der Durchmesser von präkapillären Arteriolen des M. cremaster wurde vor und während lokaler Superfusion von Ang II oder ANP gemessen. Ang II löste eine konzentrationsabhängige stabile Konstriktion aus. Bei der ausschließlichen Superfusion von ANP in verschiedenen Konzentrationen hingegen, zeigte sich kein Effekt auf den basalen Vasotonus. ANP war jedoch in der Lage, an Ang II vorkontrahierten Arteriolen, den konstriktorischen Effekt von Ang II aufzuheben und sogar darüber hinaus eine ausgeprägte Vasodilatation zu bewirken. Dieser Effekt konnte auch bei der invasiven Messung des mittleren arteriellen Blutdrucks nachgewiesen werden. Der durch Ang II ausgelöste Blutdruckanstieg wurde durch die zusätzliche Infusion von ANP gemindert. Ang II aktiviert die Kontraktion von glatten Gefäßmuskelzellen durch den Gαq-gekoppelten AT1-Rezeptor. RGS2 hingegen ist ein negativer Regulator von Gαq. Da von RGS2 bekannt ist, dass er von cGKI phosphoryliert und stimuliert wird (Osei-Owusu et al., 2007), stellte sich die Frage, ob ANP über RGS2 dem vasokonstriktiven Effekt von Ang II entgegenwirkt. Bei den Versuchen an RGS2-KO Mäusen zeigt sich hierbei, dass ANP nicht mehr in der Lage ist, den vasokonstriktiven Effekt von Ang II aufzuheben. Daraus ist nun der Schluss zu ziehen, dass RGS2 eine bedeutende Rolle für die Wechselwirkung zwischen ANP und Ang II in der Mikrozirkulation spielt und somit eine wichtige Aufgabe bei der Regulation des peripheren Widerstands und des Blutdrucks hat.
Die Progression der HIV Infektion ist vermutlich bedingt von einer unspezifischen generalisierten Immunaktivierung des Patienten (Sousa, Carneiro et al. 2002; Hazenberg, Otto et al. 2003). Somit könnte ein immunsuppressives Medikament wie das Kortisonpräparat Prednisolon die Progression der Erkrankung verlangsamen. Im Rahmen nicht-kontrollierter Studien konnte die Stabilisierung der CD4+ T-Lymphozyten in HIV-Patienten durch den Einsatz von Kortison beobachtet werden (Andrieu, Lu et al. 1995; Lu, Salerno-Goncalves et al. 1995). Dieser Effekt konnte auch mit niedrig dosiertem Prednisolon (5 mg/Tag) nachgewiesen werden (Ulmer, Muller et al. 2005). Jedoch zeigen neuere Ergebnisse, dass der CD4+ T-Lymphozytenwert bei Studien zu Immunmodulatoren kein verlässlicher Surrogatmarker für die Progression ist (Abrams, Levy et al. 2009). In der vorliegenden Arbeit sollte untersucht werden, ob sich zum Einen der stabilisierende Effekt von niedrig dosiertem Prednisolon (5 mg pro Tag) auf CD4+ T-Lymphozyten in einer kontrollierten Studie bestätigt, ob zum Zweiten die CD4+ T-Lymphozytenstabilisierung auf eine Senkung der Immunaktivierung zurückgeführt werden kann und ob zum Dritten die CD4+ TLymphozytenstabilisierung die klinische Krankheitsprogression verlangsamt. Im Rahmen der ProCort-Studie sollte außerdem eine Bestimmung der Prävalenz medikamentenresistenter HIV-Infektionen bei ART unbehandelten Patienten erfolgen. Hierbei wurden die WHO Kriterien überprüft, die als Einschlusskriterien für Patienten in Resistenz-Überwachungsstudien ein Höchstalter von 25 Jahren festgelegt hat. In unserer Untersuchung wurden demgegenüber Proben von Patienten mit höherem Alter und bereits therapierten Partnern analysiert.Methoden: Im Rahmen einer doppelblinden randomisierten klinischen Studie (ProCort1) im Bugando Medical Center (BMC) in Mwanza, Tansania, wurden 326 HIV-Patienten eingeschlossen, die zuvor noch nie mit ART behandelt wurden und einen CD4+ TLymphozytenwert von mindestens 300/μl aufwiesen. In 14 Visiten wurden, während einer zweijährigen Behandlungsdauer entweder mit 5mg Prednisolon täglich oder mit Placebo, die CD4+ T-Lymphozytenwerte und das Auftreten von Progression der HIV-Infektion bestimmt. Primärer Studienendpunkt war die Krankheitsprogression, definiert als ein Unterschreiten von 200 CD4-Zellen/μl oder dem Auftreten AIDS-definierender Erkrankungen. Um die immunologische Wirkungsweise von Prednisolon in HIV-infizierten Patienten zu untersuchen wurden sowohl in den tansanischen Studienpatienten als auch in einer mit 5 mg Prednisolon behandelten deutschen Kohorte die Lymphozytenaktivierungsmarker CD38/HLADR auf CD3/CD8-Zellen, der Monozytenaktivierungsmarker sCD14 und der Entzündungsmarker suPAR bestimmt. Um die Prävalenz der HIV Medikamentenresistenz (HIVDR) in der ProCort Studienpopulation zu ermitteln wurden 88 Proben der ART unbehandelten Patienten sequenziert. Ergebnisse: Die Ergebnisse der ProCort Studie zeigten eine statistisch signifikante Stabilisierung der CD4+ T-Lymphozytenwerte im Vergleich zum Ausgangswert durch Einsatz einer niedrig dosierten Prednisolonbehandlung (5 mg täglich). In der Intent to treat Analyse wurde ein Zugewinn von +20,1 Zellen/μl pro Jahr für den Prednisolonarm (p < 0.0001) im Vergleich zu -54,2 Zellen/μl pro Jahr für den Placeboarm (p < 0.0001) bestimmt. Die CD4+ T-Lymphozytenwerte zum Zeitpunkt der Startvisite waren im Prednisolonarm statistisch signifikant niedriger (Mean 512.14 Zellen/μl ± S.E.M. 13.39) als im Placeboarm (Mean 554.40 ± S.E.M 15.75; p = 0.042). Dies bedeutet eine schlechtere Ausgangslage für die mit Prednisolon behandelten Patienten. Trotzdem entwickelten nur vier Patienten mit Prednisolonbehandlung im Vergleich zu 11 Patienten mit Placebobehandlung AIDS, was eine statistisch signifikante Verringerung der Progressionsrate bedeutet (p=0.0196). In 16 Patienten versus 18 Patienten fielen die CD4+ T-Lymphozytenwerte unter die Werte von 200 Zellen/μl. Die Behandlung mit Prednisolon war nicht mit einer höheren Rate von unerwünschten Ereignissen oder höherer Viruslast assoziiert.
Combined effects of climate change and extreme events on plants, arthropods and their interactions
(2013)
I. Global climate change directly and indirectly influences biotic and abiotic components of ecosystems. Changes in abiotic ecosystem components caused by climate change comprise temperature increases, precipitation changes and more frequently occurring extreme events. Mediated by these abiotic changes, biotic ecosystem components including all living organisms will also change. Expected changes of plants and animals are advanced phenologies and range shifts towards higher latitudes and altitudes which presumably induce changes in species interactions and composition. Altitudinal gradients provide an optimal opportunity for climate change studies, because they serve as natural experiments due to fast changing climatic conditions within short distances. In this dissertation two different approaches were conducted to reveal species and community responses to climate change. First, species richness and community trait analyses along an altitudinal gradient in the Bavarian Alps (chapters II, III) and second, climate change manipulation experiments under different climatic contexts (chapters IV, V, IV). II. We performed biodiversity surveys of butterfly and diurnal moth species on 34 grassland sites along an altitudinal gradient in the National Park Berchtesgaden. Additionally, we analysed the dominance structure of life-history traits in butterfly assemblages along altitude. Species richness of butterflies and diurnal moths decreased with increasing altitude. The dominance of certain life-history-traits changed along the altitudinal gradient with a higher proportion of larger-winged species and species with higher egg numbers towards higher altitudes. However, the mean egg maturation time, population density and geographic distribution within butterfly assemblages decreased with increasing altitude. Our results indicate that butterfly assemblages were mainly shaped by environmental filtering. We conclude that butterfly assemblages at higher altitudes will presumably lack adaptive capacity to future climatic conditions, because of specific trait combinations. III. In addition to butterfly and diurnal moth species richness we also studied plant species richness in combination with pollination type analyses along the altitudinal gradient. The management type of the alpine grasslands was also integrated in the analyses to detect combined effects of climate and management on plant diversity and pollination type. Plant species richness was highest at intermediate altitudes, whereby the management type influenced the plant diversity with more plant species at grazed compared to mown or non-managed grasslands. The pollination type was affected by both the changing climate along the gradient and the management type. These results suggest that extensive grazing can maintain high plant diversity along the whole altitudinal gradient. With ongoing climate change the diversity peak of plants may shift upwards, which can cause a decrease in biodiversity due to reduced grassland area but also changes in species composition and adaptive potential of pollination types. IV. We set up manipulation experiments on 15 grassland sites along the altitudinal gradient in order to determine the combined effects of extreme climatic events (extreme drought, advanced and delayed snowmelt) and elevation on the nutritional quality and herbivory rates of alpine plants. The leaf CN (carbon to nitrogen) ratio and the plant damage through herbivores were not significantly affected by the simulated extreme events. However, elevation influenced the CN ratios and herbivory rates of alpine plants with contrasting responses between plant guilds. Furthermore, we found differences in nitrogen concentrations and herbivory rates between grasses, legumes and forbs, whereas legumes had the highest nitrogen concentrations and were damaged most. Additionally, CN ratios and herbivory rates increased during the growing season, indicating a decrease of food plant quality during the growing season. Contrasting altitudinal responses of grasses, legumes and forbs presumably can change the dominance structure among these plant guilds with ongoing climate change. V. In this study we analysed the phenological responses of grassland species to an extreme drought event, advanced and delayed snowmelt along the altitudinal gradient. Advanced snowmelt caused an advanced beginning of flowering, whereas this effect was more pronounced at higher than at lower altitudes. Extreme drought and delayed snowmelt had rather low effects on the flower phenology and the responses did not differ between higher and lower sites. The strongest effect influencing flower phenology was altitude, with a declining effect through the season. The length of flowering duration was not significantly influenced by treatments. Our data suggest that plant species at higher altitudes may be more affected by changes in snowmelt timing in contrast to lowland species, as at higher altitudes more severe changes are expected. However, the risk of extreme drought events on flowering phenology seems to be low. VI. We established soil-emergence traps on the advanced snowmelt and control treatment plots in order to detect possible changes in abundances and emergence phenologies of five arthropod orders due to elevation and treatment. Additionally, we analysed the responses of Coleoptera species richness to elevation and treatment. We found that the abundance and species richness of Coleoptera increased with elevation as well as the abundance of Diptera. However, the abundance of Hemiptera decreased with elevation and the abundances of Araneae and Hymenoptera showed no elevational patterns. The advanced snowmelt treatment increased the abundances of Araneae and Hymenoptera. The emergence of soil-hibernating arthropods was delayed up to seven weeks at higher elevations, whereas advanced snowmelt did not influence the emergence phenology of arthropods immediately after snowmelt. With climate change earlier snowmelt will occur more often, which especially will affect soil-hibernating arthropods in alpine regions and may cause desynchronisations between species interactions. VII. In conclusion, we showed that alpine ecosystems are sensitive towards changing climate conditions and extreme events and that many alpine species in the Bavarian Alps are endangered. Many alpine species could exist under warmer climatic conditions, however they are expected to be outcompeted by more competitive lowland species. Furthermore, host-parasite or predator-prey interactions can be disrupted due to different responses of certain guilds to climate change. Understanding and predicting the complex dynamics and potential risks of future climate change remains a great challenge and therefore further studies analysing species and community responses to climate change are needed.
Die Wandmaterialien innerhalb des Plasmagefäßes zukünftiger Fusionsreaktoren sind teilweise extremen thermischen und mechanischen Belastungen ausgesetzt. Der thermisch höchstbelastete Bereich der Wand des Torusgefäßes ist der Divertor. Hier werden die anfallende Fusionsasche (Helium) und erodierte Wandpartikel aus dem Plasma entfernt, wodurch aufgrund erhöhter Teilchen-Wand-Interaktion Wärmeflüsse von bis zu 15 MW/m² erreicht werden. Wolfram gilt momentan als ideales Wandmaterial mit direktem Plasmakontakt (Plasma-Facing-Material, PFM) für diese Beanspruchungen. Unterhalb des PFM muss die Wärme möglichst effizient in das Kühlmedium übertragen werden. Im zukünftigen Experimentalreaktor ITER wird dafür eine Kupferlegierung (CuCrZr) verwendet, welche eine hohe Wärmeleitfähigkeit besitzt und für Temperaturen von bis zu 350°C unter fusionsrelevanten Bedingungen einsetzbar ist. In dieser Konfiguration kann ITER mit einer Kühlmitteltemperatur von 150°C betrieben werden. Zur kommerziellen Energiegewinnung ist dies unzureichend, da die thermische Effizienz durch eine deutliche Anhebung der Kühlmitteltemperatur verbessert werden muss. Wird der konventionelle Ansatz einer Wasserkühlung zu Grunde gelegt, ist das Ziel die Kühlmitteltemperatur auf mindestens 300°C anzuheben. In der Folge ist CuCrZr als Wärmesenkenmaterial nicht mehr einsetzbar, da verstärkte Alterung und Festigkeitsverlust im Material auftritt. Zusätzlich vergrößern sich die thermisch induzierten Spannungen in der Komponente mit höheren Temperaturen, durch unterschiedlich große thermische Ausdehnungskoeffizienten der beteiligten Materialien. Für höhere Temperaturen stellt faserverstärktes Kupfer eine mögliche Alternative dar. Die Kombination der hohen Wärmeleitfähigkeit der Kupfermatrix mit der hohen Steifigkeit und Festigkeit von Siliziumcarbidfasern soll die nötigen thermischen und mechanischen Eigenschaften des Wärmesenkenmaterials auch für Temperaturen über 350°C gewährleisten. Im Rahmen dieser Arbeit wurden zwei unterschiedlich hergestellte SiC-Verstärkungsfasertypen hinsichtlich ihrer Eignung für die Herstellung eines Kupfer-Matrix-Komposits (CuMMC) untersucht. Die Zielstellung für das CuMMC beinhaltet eine Festigkeit von 300 MPa bei 300°C sowie eine möglichst hohe Wärmeleitfähigkeit von über 200 W m-1 K-1. Beide Parameter werden stark von der Faserfestigkeit und der Anbindung zwischen Faser und Matrix beeinflusst. Die Wärmeleitfähigkeit durch das CuMMC wird von der Kupfermatrix dominiert, wodurch geringere Faservolumenanteile von Vorteil sind. Höhere Faserfestigkeit erfordert geringere Faseranteile zum Erreichen mechanischer Vorgaben, womit die erzielbare Wärmeleitfähigkeit des CuMMCs steigt. Die Faserfestigkeit wird durch Einzel-Faser- Zugversuche validiert. Darüber hinaus ist die Anbindung zwischen Faser und Matrix essentiell, um die optimale Verstärkungswirkung durch die Fasern im CuMMC zu erzielen. Zur Faser-Matrix-Anbindung werden für jeden Fasertyp unterschiedliche Zwischenschichtsysteme verwendet, die anschließend durch Einzelfaser-Push-Out-Versuche validiert werden. Sind die Voraussetzungen von Faserfestigkeit und Anbindung für einen Fasertyp erfüllt, wird dieser für die Herstellung eines unidirektional verstärkten CuMMCs verwendet, welches bezüglich seiner mechanischen und thermischen Eigenschaften charakterisiert wird. Die mechanische Charakterisierung des CuMMCs erfolgt durch Zugversuche und dehnungsgeregelte, zyklische Versuche, wobei der Fokus neben der Festigkeit auf der Plastifizierung, Verfestigung und Schädigung innerhalb des CuMMCs liegt. Die thermische Charakterisierung erfolgt anhand der Wärmeleitfähigkeitsbestimmung sowohl parallel, als auch transversal zur Faserrichtung. Die mechanischen und thermischen Eigenschaften werden in Abhängigkeit von Faservolumenanteil und Temperatur untersucht. Um den Einfluss von längeren Betriebsphasen unter hoher thermischer Belastung analysieren zu können, wird das CuMMC bei 550°C für 400 h ausgelagert und anschließend wiederum mittels Vergleich seiner mechanischen und thermischen Eigenschaften auf mögliche Schädigungen untersucht. Zur Begutachtung von Schliff- und Bruchflächen zur Schadensanalyse stehen als bildgebende Untersuchungsmethoden neben Lichtmikroskopen ebenso Rasterelektronenmikroskope (REM) zur Verfügung.
Um den Silicium-α-Effekt "als vergrößerte Reaktivität der Si–OC-Bindung" von α-Silanen der allgemeinen Formel ROSiMe2CH2X verglichen mit den entsprechenden γ-Silanen des Typs ROSiMe2(CH2)3X (R = Me, Et; X = funktionelle Gruppe) besser zu verstehen, wurde im Rahmen dieser Arbeit eine systematische experimentelle Untersuchung der Hydrolyse der genannten Alkoxy¬silane durchgeführt. Um die Abhängigkeit der Hydrolyse von der funktionellen Gruppe X, dem Abstand zwischen dem Silicium-Atom und der funktionellen Gruppe X (CH2 oder (CH2)3, α- oder γ-Silan) und dem pD-Wert zu untersuchen, wurde eine Vielzahl an kinetischer Hydrolyse-Studien in CD3CN/D2O unter selbsteinstellendem pD-Wert, unter Verwendung von Pufferlösungen und unter definierten basischen und sauren Bedingungen durchgeführt. Die Kinetik der Hydrolyse der untersuchten Silane wurde dabei mittels 1H-NMR Spektroskopie verfolgt. Die Ergebnisse dieser Untersuchungen zeigen eindeutig, dass der Silicium-α-Effekt nicht als ein einziger Effekt der funktionellen Gruppen verstanden werden kann. Im Gegenteil, die verschiedenen beobachteten Reaktivitäten sind das Resultat mehrerer verschiedener Teileffekte. Die jeweils beobachtete Reaktivität entspricht der Summe der möglichen Teileffekte und kann nicht durch einen bestimmten Silicium-α-Effekt erklärt werden.
A proangiogenic micromilieu is associated with a worse prognosis in systemic lymphoma. Hence, targeting the tumour microenvironment and its vasculature has evolved as a promising novel treatment strategy. The role of tumour neoangiogenesis in cutaneous B-cell lymphoma, however, has not yet been elucidated. Therefore, we examined the expression of vascular endothelial growth factor (VEGF) and its receptors VEGFR-1 and VEGFR-2, as well as microvessel density by immunohistochemistry in paraffin-embedded specimens of different subtypes of primary cutaneous B-cell lymphomas, systemic diffuse large B-cell lymphoma, and cutaneous B-cell pseudolymphoma. Primary cutaneous large B-cell lymphoma (PCLBCL) were characterized by significantly higher intratumoral expression levels of VEGF and its receptors in comparison with the indolent lymphoma subtypes. Moreover, PCLBCL exhibited significantly higher intratumoral microvessel counts. Our study provides evidence that the most aggressive subtype of cutaneous B-cell lymphoma, PCLBCL, is characterized by a proangiogenic micromilieu.
Die komplexe Pathogenese von Angst und insbesondere der Panikstörung wird sowohl von genetischen Faktoren wie dem Adenosin A2A Rezeptorgen (ADORA2A) 1976T/C Polymorphismus (rs5751876) als auch von neuropsychologischen Faktoren wie einer verzerrten Emotionsverarbeitung und Defiziten in der frühen Informationsverarbeitung beeinflusst. Ziel der vorliegenden doppelblinden, Placebo-kontrollierten Studie war, ein mehrstufiges pathogenetisches Angstmodell zu etablieren, in dem der Einfluss von 300 mg Koffeinzitrat – einem Antagonisten am Adenosin A2A Rezeptor – versus Placebo 1) auf den emotionspotenzierten Startlereflex (negative, neutrale und positive Bilder aus dem International Affective Picture System (IAPS) sowie zusätzlich panikspezifisches Bildmaterial) an 115 gesunden Probanden (m = 57, w = 58) und 2) auf die frühe Informationsverarbeitung (Prepulse-Modifikation (PPM)-Paradigma mit Interstimulus Intervallen (ISI) von 60, 120, 240, 480 und 2000 ms) an vorwiegend derselben Stichprobe von 114 gesunden Probanden (m = 57, w = 57) getestet wurde. Die Probanden wurden dabei für die genetische ADORA2A 1976T/C Variante stratifiziert und mittels des Angstsensitivitäts-Index (ASI) für Angstsensitivität (AS) charakterisiert. Zusätzlich zum erwarteten Haupteffekt der Bildkategorien (höchste Startlemagnituden für negative, niedrigste für positive Bilder) konnte eine Genotyp X Intervention Interaktion auf die Bildkategorien beobachtet werden: Sowohl Trägerschaft des ADORA2A 1976TT Risikogenotyps unter Placebo als auch der Konsum von Koffein bei ADORA2A 1976CC/CT Nicht-Risikogenotypträgerschaft stellten ein Risiko für eine ähnliche, d.h. undifferenzierte physiologische Erregung in Antwort auf negative und neutrale Reize und damit womöglich für eine erhöhte Angstbereitschaft dar. In Übereinstimmung mit dem hypothetisierten multifaktoriellen Risikomodell potenzierte Koffein in Synergie mit dem ADORA2A 1976TT Risikogenotyp die Startlereaktion spezifisch für negative emotionale Reize. Dieser Effekt wurde maßgeblich durch eine hohe Angstsensitivität verursacht. Die höchsten Startlemagnituden nach Koffeineinnahme bei negativen Bildern zeigten sich insbesondere in der weiblichen Stichprobe. Bei panikspezifischen Bildern führte Koffein bei ADORA2A 1976CC/CT Nicht-Risikogenotypträgern dazu, dass im Vergleich zu Placebo weniger zwischen negativen und Panikbildern unterschieden wurde. Bei ADORA2A 1976TT Risikogenotypträgern ergaben sich bzgl. der panikspezifischen Bilder weder unter Koffein- noch unter Placebobedingungen Unterschiede. Bezüglich der frühen Informationsverarbeitung konnte eine Vierfachinteraktion zwischen Genotyp, Intervention, Geschlecht und ISI beobachtet werden. Eine Stratifikation nach ISI ergab, dass die Prepulse Inhibition (PPI) nach Koffeineinnahme für das ISI von 120 ms und von 240 ms bei weiblichen ADORA2A 1976TT Risikogenotypträgern im Vergleich zu männlichen ADORA2A 1976TT Homozygoten eingeschränkt war, während es keine signifikanten Effekte bei ADORA2A 1976CC/CT Nicht-Risikogenotypträgern oder in der Placebogruppe gab. Nur bei hoch ängstlichen Probanden konnte ein signifikanter Interventionseffekt mit verminderter Prepulse Fazilitation (PPF; ISI von 2000 ms) unter Koffein beobachtet werden. Unsere Ergebnisse weisen auf ein komplexes, mehrstufiges und potenziell geschlechtsspezifisches pathogenetisches Angstmodell hin, bei dem genetische und biochemische Faktoren interaktiv das Risiko für defizitäre emotionale Verarbeitungsprozesse und somit möglicherweise auch für Angststörungen erhöhen. Die Ergebnisse zeigen weiterhin, dass weibliche ADORA2A 1976TT Homozygote unter Koffein eine eingeschränkte Fähigkeit haben, irrelevante sensorische Informationen zu filtern, was die Rolle des adenosinergen Systems bei der Pathogenese von Angst zusätzlich stützt. Durch die Definition von multifaktoriellen Risikoprofilen für Angst und insbesondere die Panikstörung, wie in der vorliegenden Arbeit exemplarisch demonstriert, können in Zukunft Fortschritte in der individuellen Primär- und Sekundärprävention erzielt werden.
Sustained anxiety is considered as a chronic and future-oriented state of apprehension that does not belong to a specific object. It is discussed as an important characteristic of anxiety disorders including panic disorder, generalized anxiety disorder (GAD) and posttraumatic stress disorder (PTSD). Experimentally, sustained anxiety can be induced by contextual fear conditioning in which aversive events are unpredictably presented and therefore the whole context becomes associated with the threat. This thesis aimed at investigating important mechanisms in the development and maintenance of sustained anxiety: (1) facilitated acquisition and resistant extinction of contextual anxiety due to genetic risk factors (Study 1), and (2) the return of contextual anxiety after successful extinction using a new reinstatement paradigm (Study 2). To this end, two contextual fear conditioning studies were conducted in virtual reality (VR). During acquisition one virtual office was paired with unpredictable mildly painful electric stimuli (unconditioned stimulus, US), thus becoming the anxiety context (CXT+). Another virtual office was never paired with any US, thus becoming the safety context (CXT-). Extinction was conducted 24 h later, i.e. no US was presented, and extinction recall was tested another 24 h later on Day 3. In both studies context-evoked anxiety was measured on three different response levels: behavioral (anxiety-potentiated startle reflex), physiological (skin conductance level), and verbal (explicit ratings). In Study 1, participants were stratified for 5-HTTLPR (S+ risk allele vs. LL no risk allele) and NPSR1 rs324981 (T+ risk allele vs. AA no risk allele) polymorphisms, resulting in four combined genotype groups with 20 participants each: S+/T+, S+/LL, LL/T+, and LL/AA. Results showed that acquisition of anxiety-potentiated startle was influenced by a gene × gene interaction: only carriers of both risk alleles (S+ carriers of the 5-HTTLPR and T+ carriers of the NPSR1 polymorphism) exhibited significantly higher startle magnitudes in CXT+ compared to CXT-. However, extinction recall as measured with anxiety-potentiated startle was not affected by any genotype. Interestingly, the explicit anxiety level, i.e. valence and anxiety ratings, was only influenced by the NPSR1 genotype, in a way that no risk allele carriers (AA) reported higher anxiety and more negative valence in response to CXT+ compared to CXT-, whereas risk allele carriers (T+) did not. Study 2 adopted nearly the same paradigm with the modification that one group (reinstatement group) received one unsignaled US at the beginning of the experimental session on Day 3 before seeing CXT+ and CXT-. The second group served as a control group and received no US, but was immediately exposed to CXT+ and CXT-. Results showed a return of anxiety on the implicit and explicit level (higher startle responses and anxiety ratings in response to CXT+ compared to CXT-) in the reinstatement group only. Most important, the return of contextual anxiety in the reinstatement group was associated with a change of state anxiety and mood from extinction to test, that is the more anxiety and negative mood participants experienced before the reinstatement procedure, the higher their return of anxiety was. In sum, results of Study 1 showed that facilitated contextual fear conditioning on an implicit behavioral level (startle response) could be regarded as an endophenotype for anxiety disorders, which can contribute to our understanding of the etiology of anxiety disorders. Results of Study 2 imply that anxiety and negative mood after extinction could be an important facilitator for the return of anxiety. Furthermore, the present VR-based contextual fear conditioning paradigm seems to be an ideal tool to experimentally study mechanisms underlying the acquisition and the return of anxiety. Future studies could investigate clinical samples and extend the VR paradigm to evolutionary-relevant contexts (e.g., heights, darkness, open spaces).