@phdthesis{Untucht2012, author = {Untucht, Robert}, title = {Design und Klonierung eines Targeting Vektors zur Generierung von Plasmakallikrein-defizienten M{\"a}usen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-78124}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Gegenstand dieser Arbeit ist die Erstellung eines sogenannten "Targeting Vektors" zur gezielten Ausschaltung des Gens f{\"u}r Plasmakallikrein in der Maus, als Vorbereitung zur Schaffung einer Plasmakallikrein-defizienten Mauslinie. Plasmakallikrein ist eine im Blut zirkulierende Serinprotease, die Funktionen in H{\"a}mostase, Thrombusbildung und Fibrinolyse hat sowie sowohl direkt als auch indirekt mittels Bradykinin an Entz{\"u}ndungsvorg{\"a}ngen beteiligt ist. Zwei 5836 und 3834 bp lange Abschnitte aus dem murinen Plasmakallikrein-Gen wurden durch PCR isoliert und in ein Plasmid kloniert, das neben Resistenzgenen gegen Ampicillin und Neomycin auch das β-Galaktosidase-Gen zum Nachweis einer erfolgreichen Transfektion enth{\"a}lt. Der so entstandene "Targeting Vektor" hat eine Gesamtgr{\"o}ße von 18072 bp, die Basensequenz wurde durch Sequenzierung verifiziert. Der Vektor soll im Plasmakallikrein-Gen einen Teil der Exons 2 und 3 und damit einen Großteil des Signalpeptids und der ersten Proteindom{\"a}ne funktionsunf{\"a}hig machen. An den mit dieser Methode erstellten Knockout-M{\"a}usen k{\"o}nnen die Funktionen von Plasmakallikrein genauer untersucht werden.}, subject = {Kallikreine}, language = {de} } @phdthesis{Reuter2012, author = {Reuter, Dajana}, title = {Einfluss der Immunkompetenz auf die Etablierung und den Verlauf persistierender viraler Infektionen des zentralen Nervensystems (im Tiermodell Maus/Masernvirus)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-71437}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Zu den gef{\"a}hrlichen Komplikationen der Masern geh{\"o}rt die selten vorkommende ZNS-Erkrankung subakute sklerosierende Panenzephalitis (SSPE), die erst mehrere Jahre nach einer akuten Masernvirusinfektion auftritt. Die SSPE verl{\"a}uft immer t{\"o}dlich und bis heute gibt es keine spezifische Therapie gegen diese Erkrankung. Unsere Arbeitsgruppe hat ein Modell f{\"u}r eine persistierende, virale ZNS-Infektion entwickelt, in dem 2-Wochen-alte, immunologisch normale C57BL/6-M{\"a}use mit einem rekombinanten, neurotropen Masernvirus (MV), das das H{\"a}magglutinin eines an Nagern angepassten MV-Stammes enth{\"a}lt, intrazerebral (i.c.) infiziert werden. Im Rahmen dieser Doktorarbeit wurde die Rolle regulatorischer CD4+ CD25+ Foxp3+ T-Zellen (Treg) in diesem Mausmodell analysiert und untersucht, ob die persistierende ZNS-Infektion durch Manipulation peripherer Treg beeinflusst werden kann. Außerdem wurde ein IFN-y-ELISPOT-Assay etabliert, der CD8+ zytotoxische T-Zellen (CTL) identifiziert, die spezifisch f{\"u}r die MV-H{\"a}magglutinin-Epitope MV-H22-30 (RIVINREHL) bzw. MVH446-454 (SNHNNVYWL) sind. In Bezug auf das erstgenannte Epitop wurde desweiteren eine Pentamer-F{\"a}rbung etabliert, um CTLs mit Hilfe der Durchflusszytometrie zu identifizieren, die H-2Db-gekoppelte MV-H22-30-Epitope erkennen. Die Ergebnisse dieser Doktorarbeit zeigen, dass sich trotz eines hohen Anteils Masern-spezifischer CTLs und nur sehr wenigen Treg im Gehirn eine persistierende ZNSInfektion ausbildet. Periphere Treg wurden w{\"a}hrend der persistierenden Phase der ZNS-Infektion expandiert bzw. depletiert und die Konsequenzen f{\"u}r die Virus-spezifische Immunantwort sowie das Ausmaß der persistierenden Infektion wurden analysiert. Die Expansion von Treg mit Hilfe des superagonistischen anti-Maus CD28 Antik{\"o}rpers D665 verursachte eine transiente Immunsuppression, die die Virus-Replikation sowie -Ausbreitung im Gehirn verst{\"a}rkte. Im Gegensatz dazu f{\"u}hrte die Depletion von Treg in DEREG-M{\"a}usen mittels Diphtherietoxin zu einem erh{\"o}hten Anteil Virus-spezifischer CTLs im Gehirn sowie zu einer Reduktion der persistierenden ZNS-Infektion. Diese Daten zeigen, dass Treg die F{\"a}higkeit besitzen, die Persistenz von MV im Gehirn zu kontrollieren und somit m{\"o}glicherweise Teil eines Therapiekonzeptes gegen ZNS-Infektionen mit dem Masernvirus sein k{\"o}nnen. Fr{\"u}here Studien unserer Arbeitsgruppe haben außerdem gezeigt, dass das durch IFN-y induzierbare Enzym Indolamin-2,3-Dioxygenase (IDO) antivirale Aktivit{\"a}ten gegen MV aufweist. Dies wurde in dieser Doktorarbeit in vivo in unserem Mausmodell anhand von IDOk.o.-Tieren best{\"a}tigt, die nach i.c. Infektion nicht nur eine erh{\"o}hte Mortalit{\"a}tsrate aufwiesen sondern auch in den {\"u}berlebenden Tieren eine verst{\"a}rkte persistierende ZNS-Infektion zeigten.}, subject = {Masernvirus}, language = {de} } @phdthesis{Vetter2012, author = {Vetter, Sebastian}, title = {Elektrophysiologische Charakterisierung von STIM2-Knock-Out-M{\"a}usen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-77005}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Um eine m{\"o}gliche elektrophysiologische, kardiale Ursache f{\"u}r den pl{\"o}tzlichen Tod von STIM2 Knock-Out M{\"a}usen zu pr{\"u}fen, wurde eine elektrophysiologische Charakterisierung mittels Ruhe- und Stress-EKG, telemetrischem Langzeit-EKG sowie Elektrophysiologischer Untersuchung durchgef{\"u}hrt. Hierbei konnte keine kardial-elektrophysiologische Grundlage f{\"u}r den pl{\"o}tzlichen Tod dieser Tiere gefunden werden.}, subject = {Knock-Out }, language = {de} } @phdthesis{Englberger2012, author = {Englberger, Eva}, title = {Gene regulation in hearts of Hey-mutant mouse embryos and monitoring of sub-cellular Hey1 distribution}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-73395}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Hey-mutant mouse hearts at embryonic day E14.5 were shown to react to the knock out of Hey2 with several up-regualted genes. This up-regulation is due to the lack of Hey2 and cannot be explained by the structural changes in heart morphology as shown using control animals. Part of the gene regulation was further validated using in situ hybridization. Hey1 was located to the nucleus in immunofluorescence experiments. However, experiments on protein level showed also amount of Hey1 within the cytoplasm. The nuclear localization of Hey1 was unchanged during all cell cycle phases as well as when CaMKII was co-expressed or other cellular pathways were inhibited or stimulated. Hey1 does not seem to interact with the nuclear transport proteins importin-alpha and -beta, therefore it still needs to be elucidated how Hey1 is transported into the nucleus.}, subject = {Maus}, language = {en} } @phdthesis{Baeuerlein2012, author = {B{\"a}uerlein, Carina}, title = {Identification of new predictive markers for an early diagnosis of an imminent acute Graft-versus-Host Disease}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-78489}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Acute graft-versus-host disease (aGvHD) is an immune syndrome associated with allogeneic hematopoietic cell transplantation (allo-HCT) that is mediated by alloreactive donor T cells attacking the gastrointestinal tract, liver, and skin of the host. Early diagnosis remains problematic and to date mainly relies on clinical symptoms and histopathology. Previously, different groups demonstrated that in order to cause aGvHD, alloreactive T cells require the expression of appropriate homing receptors to efficiently migrate from their priming sites to their target tissues. Therefore, the development of a predictive test based on the homing receptor expression profile of peripheral blood T cells seems attractive to identify patients at risk before the onset of aGvHD. The aim of this study was to analyze migrating alloreactive donor T cell kinetics in the peripheral blood early after allo-HCT in a murine model across minor histocompatibility antigens (miHAg) followed by a precise characterization of the homing receptor expression profile of migrating donor lymphocytes in order to identify suitable predictive markers. Combining daily bioluminescence imaging (BLI) and flow cytometry (FC) allowed defining two weeks of massive alloreactive donor T cell migration before clinical aGvHD symptoms became apparent. Peripheral blood donor T lymphocytes highly up-regulated the homing markers α4β7 integrin, and P- and E-selectin-ligand at peak time points of cell migration. The combination with the activation markers CD25 and CD69 and low expression levels of L-selectin allowed alloreactive donor T cell definition. Based on this migration phase we postulated a potential diagnostic window to precisely identify alloreactive donor T cells upon their homing receptor expression profile. Consequently, targeted pre-emptive treatment with rapamycin starting at the earliest detection time point of alloreactive donor T cells in the peripheral blood (day+6) significantly prolonged survival of treated mice. Based on this data, we propose a potential diagnostic window for alloreactive cell detection based on their homing receptor expression profile for a timely and effective therapeutic intervention before the clinical manifestation of aGvHD.}, subject = {Transplantat-Wirt-Reaktion}, language = {en} } @phdthesis{Thakur2012, author = {Thakur, Chitra}, title = {Lineage tracing of metastasis in a mouse model for Non-small cell lung cancer (NSCLC)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-85420}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Non-small cell lung cancer (NSCLC) is the deadliest form of lung cancer and has a poor prognosis due to its high rate of metastasis. Notably, metastasis is one of the leading causes of death among cancer patients. Despite the clinical importance, the cellular and molecular mechanisms that govern the initiation, establishment and progression of metastasis remain unclear. Moreover, knowledge gained on metastatic process was largely based on cultured or in vitro manipulated cells that were reintroduced into immune-compromised recipient mice. In the present study, a spontaneous metastasis mouse model for NSCLC was generated with a heritable fluorescent tag (DsRed) driven by CAG (combination of cytomegalovirus early enhancing element and chicken beta actin) promoter in alveolar type II cells (SpC-rtTA/TetO-Cre/LSL-DsRed). This approach is essential, keeping in mind the reprogramming nature of Myc oncogene (Rapp et al, 2009). Such genetic lineage tracing approach not only allowed us to monitor molecular and cellular changes during development of primary tumor but also led us to identify the different stages of secondary tumor development in distant organs. Upon combined expression of oncogenic C Raf-BXB and c-Myc (MYC-BXB-DsRed) in lung alveolar type II epithelial cells, macroscopic lung tumors arose comprising of both cuboidal and columnal cellular features. C Raf-BXB induced tumors (CRAF-DsRed) exhibit cuboidal morphology and is non-metastatic whereas Myc-BXB induced lung tumors (Myc-BXB-DsRed) present cuboidal-columnar cellular features and is able to undergo metastasis mainly in liver. Surprisingly, cystic lesions which were negative for SpC (Surfactant protein C) and CCSP (Clara cell secretory protein), strongly expressed DsRed proteins indicating its origin from lung alveolar type II cells. Moreover, early lung progenitor markers such as GATA4 (GATA-binding protein 4) and TTF1 (Thyroid Transcription Factor 1) were still expressed in these early cystic lesions suggesting metastasis as a faulty recapitulation of ontogeny (Rapp et al, 2008). Interestingly, mixed cystic lesions and metastatic tumors contained DsRed and SpC positive cells. These results demonstrate secondary tumor progression from cystic, mixed cystic to malignant transformation. Our results shed tremendous light on reprogramming of metastasizing cells during secondary tumor development. Moreover, such fluorescent tagged metastatic mice model can also be used to track the migration ability of metastatic cancer cell to different organs and its potential to differentiate into other cell types such as blood vessel or stromal cell within the primary tumor.}, subject = {Lungenkrebs}, language = {en} } @phdthesis{Rathod2012, author = {Rathod, Reenaben Jagdishbhai}, title = {Study of local protein synthesis in growth cones of embryonic mouse motor neurons}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-72045}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {In cultured motoneurons of a mouse model for the motoneuron disease spinal muscular atrophy (SMA), reduced levels of the protein SMN (survival of motoneurons) cause defects in axonal growth. This correlates with reduced β-actin mRNA and protein in growth cones, indicating that anterograde transport and local translation of β-actin mRNA are crucial for motoneuron function. However, direct evidence that indeed local translation is a physiological phenomenon in growth cones of motoneurons was missing. Here, a lentiviral GFP-based reporter construct was established to monitor local protein synthesis of β-actin mRNA. Time-lapse imaging of fluorescence recovery after photobleaching (FRAP) in living motoneurons revealed that β-actin is locally translated in the growth cones of embryonic motoneurons. Interestingly, local translation of the β-actin reporter construct was differentially regulated by different laminin isoforms, indicating that laminins provide extracellular cues for the regulation of local translation in growth cones. Notably, local translation of β-actin mRNA was deregulated when motoneurons of a mouse model for type I SMA (Smn-/-; SMN2) were analyzed. In situ hybridization revealed reduced levels of β-actin mRNA in the axons of Smn-/-; SMN2 motoneurons. The distribution of the β-actin mRNA was not modified by different laminin isoforms as revealed by in situ hybridization against the mRNA of the eGFP encoding element of the β-actin reporter. In case of the mRNA of α-actin and γ-actin isoforms, the endogenous mRNA did not localize to the axons and the localization pattern was not affected by the SMN levels expressed in the cell. Taken together our findings suggest that regulation of local translation of β-actin in growth cones of motoneurons critically depends on laminin signaling and the amount of SMN protein. Embryonic stem cell (ESC)-derived motoneurons are an excellent in vitro system to sort out biochemical and cellular pathways which are defective in neurodegenerative diseases like SMA. Here, a protocol for the differentiation and antibody-mediated enrichment of ESC-derived motoneurons is presented, which was optimized during the course of this study. Notably, this study contributes the production and purification of highly active recombinant sonic hedgehog (Shh), which was needed for the efficient differentiation of mouse ESCs to motoneurons. ESC-derived motoneurons will now offer high amounts of cellular material to allow the biochemical identification of disease-relevant molecular components involved in regulated local protein synthesis in axons and growth cones of motoneurons.}, subject = {Motoneuron}, language = {en} } @phdthesis{Waider2012, author = {Waider, Jonas}, title = {The effects of serotonin deficiency in mice: Focus on the GABAergic system}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-74565}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Based on genetic association and functional imaging studies, reduced function of tryptophan hydroxylase-2 (TPH2) has been shown to be critically involved in the pathophysiology of anxiety-disorders and depression. In order to elucidate the impact of a complete neuronal 5-HT deficiency, mice with a targeted inactivation of the gene encoding Tph2 were generated. Interestingly, survival of Tph2-/- mice, the formation of serotonergic neurons and the pathfinding of their projections was not impaired. Within this thesis, I investigated the influence of 5-HT deficiency on the γ-amino butyric acid (GABA) system. The GABAergic system is implicated in the pathophysiology of anxiety disorders. Therefore, measurement of GABA concentrations in different limbic brain regions was carried out. These measurements were combined with immunohistochemical estimation of GABAergic cell subpopulations in the dorsal hippocampus and amygdala. In Tph2-/- mice GABA concentrations were increased exclusively in the dorsal hippocampus. In heterozygous Tph2+/- mice concentrations of GABA were increased in the amygdala compared to Tph2-/- and wt control mice, while the reverse was found in the prefrontal cortex. The changes in GABA concentrations were accompanied by altered cell density of GABAergic neurons within the basolateral complex of the amygdala and parvalbumin (PV) neurons of the dorsal hippocampus and by adaptational changes of 5-HT receptors. Thus, adaptive changes during the development on the GABA system may reflect altered anxiety-like and depressive-like behavior in adulthood. Moreover, chronic mild stress (CMS) rescues the depressive-like effects induced by 5-HT deficiency. In contrast, 5-HT is important in mediating an increased innate anxiety-like behavior under CMS conditions. This is in line with a proposed dual role of 5-HT acting through different mechanisms on anxiety and depressive-like behavior, which is influenced by gene-environment interaction effects. Further research is needed to disentangle these complex networks in the future.}, subject = {Knockout }, language = {en} }