TY - JOUR A1 - Fluri, Felix A1 - Schuhmann, Michael K A1 - Kleinschnitz, Christoph T1 - Animal models of ischemic stroke and their application in clinical research JF - Drug Design, Development and Therapy N2 - This review outlines the most frequently used rodent stroke models and discusses their strengths and shortcomings. Mimicking all aspects of human stroke in one animal model is not feasible because ischemic stroke in humans is a heterogeneous disorder with a complex pathophysiology. The transient or permanent middle cerebral artery occlusion (MCAo) model is one of the models that most closely simulate human ischemic stroke. Furthermore, this model is characterized by reliable and well-reproducible infarcts. Therefore, the MCAo model has been involved in the majority of studies that address pathophysiological processes or neuroprotective agents. Another model uses thromboembolic clots and thus is more convenient for investigating thrombolytic agents and pathophysiological processes after thrombolysis. However, for many reasons, preclinical stroke research has a low translational success rate. One factor might be the choice of stroke model. Whereas the therapeutic responsiveness of permanent focal stroke in humans declines significantly within 3 hours after stroke onset, the therapeutic window in animal models with prompt reperfusion is up to 12 hours, resulting in a much longer action time of the investigated agent. Another major problem of animal stroke models is that studies are mostly conducted in young animals without any comorbidity. These models differ from human stroke, which particularly affects elderly people who have various cerebrovascular risk factors. Choosing the most appropriate stroke model and optimizing the study design of preclinical trials might increase the translational potential of animal stroke models. KW - permanent and transient middle cerebral artery occlusion KW - thromboembolic clot model KW - mouse KW - rat KW - microsphere/macrosphere KW - endothelin-1 KW - photothrombosis KW - thromboembolic stroke Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149157 VL - 9 ER - TY - JOUR A1 - Neuhaus, Winfried A1 - Schlundt, Marian A1 - Fehrholz, Markus A1 - Ehrke, Alexander A1 - Kunzmann, Steffen A1 - Liebner, Stefan A1 - Speer, Christian P. A1 - Förster, Carola Y. T1 - Multiple antenatal dexamethasone treatment alters brain vessel differentiation in newborn mouse pups JF - PLoS ONE N2 - Antenatal steroid treatment decreases morbidity and mortality in premature infants through the maturation of lung tissue, which enables sufficient breathing performance. However, clinical and animal studies have shown that repeated doses of glucocorticoids such as dexamethasone and betamethasone lead to long-term adverse effects on brain development. Therefore, we established a mouse model for antenatal dexamethasone treatment to investigate the effects of dexamethasone on brain vessel differentiation towards the blood-brain barrier (BBB) phenotype, focusing on molecular marker analysis. The major findings were that in total brains on postnatal day (PN) 4 triple antenatal dexamethasone treatment significantly downregulated the tight junction protein claudin-5, the endothelial marker Pecam-1/CD31, the glucocorticoid receptor, the NR1 subunit of the N-methyl-D-aspartate receptor, and Abc transporters (Abcb1a, Abcg2 Abcc4). Less pronounced effects were found after single antenatal dexamethasone treatment and in PN10 samples. Comparisons of total brain samples with isolated brain endothelial cells together with the stainings for Pecam-1/CD31 and claudin-5 led to the assumption that the morphology of brain vessels is affected by antenatal dexamethasone treatment at PN4. On the mRNA level markers for angiogenesis, the sonic hedgehog and the Wnt pathway were downregulated in PN4 samples, suggesting fundamental changes in brain vascularization and/or differentiation. In conclusion, we provided a first comprehensive molecular basis for the adverse effects of multiple antenatal dexamethasone treatment on brain vessel differentiation. KW - preterm birth KW - fetal lung KW - corticosteroids KW - glucocorticoids KW - exposure KW - endothelial cells KW - in vitro KW - barrier KW - expression KW - rat Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148268 VL - 10 IS - 8 ER - TY - JOUR A1 - Wille, Michael A1 - Schümann, Antje A1 - Kreutzer, Michael A1 - Glocker, Michael O A1 - Wree, Andreas A1 - Mutzbauer, Grit A1 - Schmitt, Oliver T1 - The proteome profiles of the olfactory bulb of juvenile, adult and aged rats - an ontogenetic study JF - Proteome Science N2 - Background: In this study, we searched for proteins that change their expression in the olfactory bulb (oB) of rats during ontogenesis. Up to now, protein expression differences in the developing animal are not fully understood. Our investigation focused on the question whether specific proteins exist which are only expressed during different development stages. This might lead to a better characterization of the microenvironment and to a better determination of factors and candidates that influence the differentiation of neuronal progenitor cells. Results: After analyzing the samples by two-dimensional polyacrylamide gel electrophoresis (2DE) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS), it could be shown that the number of expressed proteins differs depending on the developmental stages. Especially members of the functional classes, like proteins of biosynthesis, regulatory proteins and structural proteins, show the highest differential expression in the stages of development analyzed. Conclusion: In this study, quantitative changes in the expression of proteins in the oB at different developmental stages (postnatal days (P) 7, 90 and 637) could be observed. Furthermore, the expression of many proteins was found at specific developmental stages. It was possible to identify these proteins which are involved in processes like support of cell migration and differentiation. KW - axonally transported proteins KW - hippocampal stem cells KW - cerebral cortex KW - regional development KW - development KW - brain KW - olfactory bulb KW - proteomics KW - rat KW - growth-associated protein KW - messenger-RNA transport KW - goldfish optic nerve KW - postnatal development KW - subventricular zone KW - neuronal differentiation Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144073 VL - 13 IS - 8 ER - TY - JOUR A1 - Reinhold, A. K. A1 - Batti, L. A1 - Bilbao, D. A1 - Buness, A. A1 - Rittner, H. L. A1 - Heppenstall, P. A. T1 - Differential Transcriptional Profiling of Damaged and Intact Adjacent Dorsal Root Ganglia Neurons in Neuropathic Pain JF - PLoS ONE N2 - Neuropathic pain, caused by a lesion in the somatosensory system, is a severely impairing mostly chronic disease. While its underlying molecular mechanisms are not thoroughly understood, neuroimmune interactions as well as changes in the pain pathway such as sensitization of nociceptors have been implicated. It has been shown that not only are different cell types involved in generation and maintenance of neuropathic pain, like neurons, immune and glial cells, but, also, intact adjacent neurons are relevant to the process. Here, we describe an experimental approach to discriminate damaged from intact adjacent neurons in the same dorsal root ganglion (DRG) using differential fluorescent neuronal labelling and fluorescence-activated cell sorting (FACS). Two fluorescent tracers, Fluoroemerald (FE) and 1-dioctadecyl-3,3,3,3-tetramethylindocarbocyanine perchlorate (DiI), were used, whose properties allow us to distinguish between damaged and intact neurons. Subsequent sorting permitted transcriptional analysis of both groups. Results and qPCR validation show a strong regulation in damaged neurons versus contralateral controls as well as a moderate regulation in adjacent neurons. Data for damaged neurons reveal an mRNA expression pattern consistent with established upregulated genes like galanin, which supports our approach. Moreover, novel genes were found strongly regulated such as corticotropinreleasing hormone (CRH), providing novel targets for further research. Differential fluorescent neuronal labelling and sorting allows for a clear distinction between primarily damaged neuropathic neurons and "bystanders," thereby facilitating a more detailed understanding of their respective roles in neuropathic processes in the DRG. KW - peripheral nerve injury KW - sensory neurons KW - rat KW - involvement KW - mechanisms KW - receptors KW - inhibition KW - expression KW - sciatic nerve KW - inflammatory pain Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143290 VL - 10 IS - 4 ER - TY - JOUR A1 - Wille, Michael A1 - Schümann, Antje A1 - Wree, Andreas A1 - Kreutzer, Michael A1 - Glocker, Michael O. A1 - Mutzbauer, Grit A1 - Schmitt, Oliver T1 - The Proteome Profiles of the Cerebellum of Juvenile, Adult and Aged Rats-An Ontogenetic Study JF - International Journal of Molecular Sciences N2 - In this study, we searched for proteins that change their expression in the cerebellum (Ce) of rats during ontogenesis. This study focuses on the question of whether specific proteins exist which are differentially expressed with regard to postnatal stages of development. A better characterization of the microenvironment and its development may result from these study findings. A differential two-dimensional polyacrylamide gel electrophoresis (2DE) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) analysis of the samples revealed that the number of proteins of the functional classes differed depending on the developmental stages. Especially members of the functional classes of biosynthesis, regulatory proteins, chaperones and structural proteins show the highest differential expression within the analyzed stages of development. Therefore, members of these functional protein groups seem to be involved in the development and differentiation of the Ce within the analyzed development stages. In this study, changes in the expression of proteins in the Ce at different postnatal developmental stages (postnatal days (P) 7, 90, and 637) could be observed. At the same time, an identification of proteins which are involved in cell migration and differentiation was possible. Especially proteins involved in processes of the biosynthesis and regulation, the dynamic organization of the cytoskeleton as well as chaperones showed a high amount of differentially expressed proteins between the analyzed dates. KW - messenger RNA KW - brain KW - cerebellum KW - development KW - proteomics KW - rat KW - proteins KW - adenosine kinase KW - coated vesicles KW - phosphatase 2A KW - expression KW - neuronal differentiation KW - human brain KW - hnRNP K KW - postnatal development KW - binding Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151347 VL - 16 SP - 21454 EP - 21485 ER - TY - JOUR A1 - Isaias, Ioannis U. A1 - Marzegan, Alberto A1 - Pezzoli, Gianni A1 - Marotta, Giorgio A1 - Canesi, Margherita A1 - Biella, Gabriele E. M. A1 - Volkmann, Jens A1 - Cavallari, Paolo T1 - A role for locus coeruleus in Parkinson tremor JF - Frontiers in Human Neuroscience N2 - We analyzed rest tremor, one of the etiologically most elusive hallmarks of Parkinson disease(PD), in 12 consecutive PD patients during a specific task activating the locus coeruleus (LC) to investigate a putative role of noradrenaline (NA) in tremor generation and suppression. Clinical diagnosis was confirmed in all subjects by reduced dopamine reuptake transporter (DAT) binding values investigated by single photon computed tomography imaging (SPECT) with [\(^{123}\)I] N-\(\omega\)-fluoropropyl-2 \(\beta\)-carbomethoxy-3 \(\beta\)-(4-iodophenyl) tropane (FP-CIT). The intensity of tremor (i.e., the power of Electromyography [EMG] signals), but not its frequency, significantly increased during the task. In six subjects, tremor appeared selectively during the task. In a second part of the study, we retrospectively reviewed SPECT with FP-CIT data and confirmed the lack of correlation between dopaminergic loss and tremor by comparing DAT binding values of 82 PD subjects with bilateral tremor (n = 27), unilateral tremor (n = 22), and no tremor (n = 33). This study suggests a role of the LC in Parkinson tremor. KW - locus coeruleus KW - disease KW - basal ganglia KW - resting tremor KW - functional neuroanatomy KW - dopamine KW - norepinephrine KW - progression KW - binding KW - rat KW - noradrenalin KW - parkinson disease KW - tremor Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-133955 VL - 5 IS - 179 ER - TY - JOUR A1 - Schaeffer, Evelin L. A1 - Kühn, Franziska A1 - Schmitt, Angelika A1 - Gattaz, Wagner F. A1 - Gruber, Oliver A1 - Schneider-Axmann, Thomas A1 - Falkai, Peter A1 - Schmitt, Andrea T1 - Increased cell proliferation in the rat anterior cingulate cortex following neonatal hypoxia: relevance to schizophrenia JF - Journal of Neural Transmission N2 - As a consequence of obstetric complications, neonatal hypoxia has been discussed as an environmental factor in the pathophysiology of schizophrenia. However, the biological consequences of hypoxia are unclear. The neurodevelopmental hypothesis of schizophrenia suggests that the onset of abnormal brain development and neuropathology occurs perinatally, whereas symptoms of the disease appear in early adulthood. In our animal model of chronic neonatal hypoxia, we have detected behavioral alterations resembling those known from schizophrenia. Disturbances in cell proliferation possibly contribute to the pathophysiology of this disease. In the present study, we used postnatal rats to investigate cell proliferation in several brain areas following neonatal hypoxia. Rats were repeatedly exposed to hypoxia (89 % N2, 11 % O2) from postnatal day (PD) 4–8. We then evaluated cell proliferation on PD 13 and 39, respectively. These investigations were performed in the anterior cingulate cortex (ACC), caudate-putamen (CPU), dentate gyrus, and subventricular zone. Rats exposed to hypoxia exhibited increased cell proliferation in the ACC at PD 13, normalizing at PD 39. In other brain regions, no alterations have been detected. Additionally, hypoxia-treated rats showed decreased CPU volume at PD 13. The results of the present study on the one hand support the assumption of chronic hypoxia influencing transient cell proliferation in the ACC, and on the other hand reveal normalization during ageing. KW - schizophrenia KW - cell proliferation KW - rat KW - anterior cingulate cortex KW - neonatal hypoxia Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125890 VL - 120 IS - 1 ER - TY - JOUR A1 - Hetz, Susan A1 - Acikgoez, Ali A1 - Voss, Ulrike A1 - Nieber, Karen A1 - Holland, Heidrun A1 - Hegewald, Cindy A1 - Till, Holger A1 - Metzger, Roman A1 - Metzger, Marco T1 - In Vivo Transplantation of Neurosphere-Like Bodies Derived from the Human Postnatal and Adult Enteric Nervous System: A Pilot Study JF - PLOS ONE N2 - Recent advances in the in vitro characterization of human adult enteric neural progenitor cells have opened new possibilities for cell-based therapies in gastrointestinal motility disorders. However, whether these cells are able to integrate within an in vivo gut environment is still unclear. In this study, we transplanted neural progenitor-containing neurosphere-like bodies (NLBs) in a mouse model of hypoganglionosis and analyzed cellular integration of NLB-derived cell types and functional improvement. NLBs were propagated from postnatal and adult human gut tissues. Cells were characterized by immunohistochemistry, quantitative PCR and subtelomere fluorescence in situ hybridization (FISH). For in vivo evaluation, the plexus of murine colon was damaged by the application of cationic surfactant benzalkonium chloride which was followed by the transplantation of NLBs in a fibrin matrix. After 4 weeks, grafted human cells were visualized by combined in situ hybridization (Alu) and immunohistochemistry (PGP9.5, GFAP, SMA). In addition, we determined nitric oxide synthase (NOS)-positive neurons and measured hypertrophic effects in the ENS and musculature. Contractility of treated guts was assessed in organ bath after electrical field stimulation. NLBs could be reproducibly generated without any signs of chromosomal alterations using subtelomere FISH. NLB-derived cells integrated within the host tissue and showed expected differentiated phenotypes i.e. enteric neurons, glia and smooth muscle-like cells following in vivo transplantation. Our data suggest biological effects of the transplanted NLB cells on tissue contractility, although robust statistical results could not be obtained due to the small sample size. Further, it is unclear, which of the NLB cell types including neural progenitors have direct restoring effects or, alternatively may act via 'bystander' mechanisms in vivo. Our findings provide further evidence that NLB transplantation can be considered as feasible tool to improve ENS function in a variety of gastrointestinal disorders. KW - Hirschsprung disease KW - benzalkonium chloride KW - progenitors KW - GUT KW - rat KW - colon KW - biology KW - therapy KW - neural stem-cell KW - motility disorders Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-116793 VL - 9 IS - 4 ER - TY - JOUR A1 - Cox-Limpens, Kimberly E. M. A1 - Vles, Johan S. H. A1 - van den Hove, Daniel L. A. A1 - Zimmermann, Luc Ji A1 - Gavilanes, Antonio W. D. T1 - Fetal asphyctic preconditioning alters the transcriptional response to perinatal asphyxia JF - BMC Neuroscience N2 - Background: Genomic reprogramming is thought to be, at least in part, responsible for the protective effect of brain preconditioning. Unraveling mechanisms of this endogenous neuroprotection, activated by preconditioning, is an important step towards new clinical strategies for treating asphyctic neonates. Therefore, we investigated whole-genome transcriptional changes in the brain of rats which underwent perinatal asphyxia (PA), and rats where PA was preceded by fetal asphyctic preconditioning (FAPA). Offspring were sacrificed 6 h and 96 h after birth, and whole-genome transcription was investigated using the Affymetrix Gene1.0ST chip. Microarray data were analyzed with the Bioconductor Limma package. In addition to univariate analysis, we performed Gene Set Enrichment Analysis (GSEA) in order to derive results with maximum biological relevance. Results: We observed minimal, 25% or less, overlap of differentially regulated transcripts across different experimental groups which leads us to conclude that the transcriptional phenotype of these groups is largely unique. In both the PA and FAPA group we observe an upregulation of transcripts involved in cellular stress. Contrastingly, transcripts with a function in the cell nucleus were mostly downregulated in PA animals, while we see considerable upregulation in the FAPA group. Furthermore, we observed that histone deacetylases (HDACs) are exclusively regulated in FAPA animals. Conclusions: This study is the first to investigate whole-genome transcription in the neonatal brain after PA alone, and after perinatal asphyxia preceded by preconditioning (FAPA). We describe several genes/pathways, such as ubiquitination and proteolysis, which were not previously linked to preconditioning-induced neuroprotection. Furthermore, we observed that the majority of upregulated genes in preconditioned animals have a function in the cell nucleus, including several epigenetic players such as HDACs, which suggests that epigenetic mechanisms are likely to play a role in preconditioning-induced neuroprotection. KW - Perinatal Asphyxia KW - oxidative stress KW - microarray KW - cerebral artery occlusion KW - ischemic brain injury KW - genomic response KW - protein aggregation KW - immediate early genes KW - neuroprotection KW - tolerance KW - rat KW - expression KW - transient global ischemia KW - ubiquitination KW - epigenetics KW - fetal preconditioning KW - neonatal brain Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-116185 VL - 15 ER - TY - JOUR A1 - Markenstein, Lisa A1 - Appelt-Menzel, Antje A1 - Metzger, Marco A1 - Wenz, Gerhard T1 - Conjugates of methylated cyclodextrin derivatives and hydroxyethyl starch (HES): Synthesis, cytotoxicity and inclusion of anaesthetic actives JF - Beilstein Journal of Organic Chemistry N2 - The mono-6-deoxy-6-azides of 2,6-di-O-methyl-beta-cyclodextrin (DIMEB) and randomly methylated-beta-cyclodextrin (RAMEB) were conjugated to propargylated hydroxyethyl starch (HES) by Cu+-catalysed [2 + 3] cycloaddition. The resulting water soluble polymers showed lower critical solution temperatures (LCST) at 52.5 degrees C (DIMEB-HES) and 84.5 degrees C (RAMEB-HES), respectively. LCST phase separations could be completely avoided by the introduction of a small amount of carboxylate groups at the HES backbone. The methylated CDs conjugated to the HES backbone exhibited significantly lower cytotoxicities than the corresponding monomeric CD derivatives. Since the binding potentials of these CD conjugates were very high, they are promising candidates for new oral dosage forms of anaesthetic actives. KW - midazolam KW - supermolecular carrier systems KW - beta-cyclodextrin KW - pharmaceutical applications KW - gamma-cyclodextrin KW - anaesthetics KW - complexation KW - cyclodextrin KW - LCST KW - lower critical solution temperature KW - acid dissociation KW - drug KW - rat KW - cycloaddition KW - occupancy KW - polymer KW - sevoflurane KW - solubility KW - starch Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114280 SN - 1860-5397 VL - 10 ER - TY - THES A1 - Kroker, Katja T1 - Establishment and validation of hippocampal LTP for characterization of memory enhancing drugs as potential treatment of Alzheimer’s disease T1 - Etablierung und Validierung hippocampalen LTPs zur Charakterisierung gedächtnissteigernde Substanzen zur potentiellen Behandlung der Alzheimer’schen Erkrankung N2 - Die Alzheimer’sche Erkrankung ist eine neurodegenerative Erkrankung des Gehirns. Um geeignete Medikamente für die Behandlung der Alzheimer’schen Erkrankung zu finden, werden experimentelle Modellsysteme zur Erforschung von Substanzkandidaten verwendet. Ein solches experimentelles System ist die hippocampale Langzeitpotenzierung (LTP), welche ein anerkanntes in vitro Modell für die Erforschung der zugrundeliegenden zellulären Prozesse der Gedächtnisbildung ist. Die vorliegende Arbeit beschäftigt sich mit der Etablierung und Validierung von LTP in hippocampalen Hirnschnitten der Ratte um gedächtnissteigernde Substanzen zur potentiellen Behandlung der Alzheimer’schen Erkrankung zu charakterisieren. Dazu wurde zunächst ein Messsystem zur parallelen Charakterisierung mehrerer Schnitte aufgebaut, das Messungen bis zu sieben Stunden erlaubt (Kapitel 2). Dann wurden unterschiedliche Protokolle etabliert um Früh- und Spätphasen-LTP zu generieren. Dabei würde Frühphasen-LTP konzeptionell eher mit dem Kurzzeitgedächtnis einhergehen, während Spätphasen-LTP dem Langzeitgedächtnis gleichkommen würde (Kapitel 3). Da in Alzheimer-Patienten hauptsächlich ein Defizit cholinerger und glutamaterger Neurone vorliegt, wurden die validierten LTP Formen benutzt, um solche Substanzen zu analysieren, die potentiell cholinerge und/oder glutamaterge neuronale Funktion erhöhen. Die Effekte zweier ausschließlich cholinerge Funktion erhöhender Substanzen wurden analysiert: Der α4β2 nicotinische Acetylcholin-Rezeptor Agonist TC-1827 (Kapitel 4) und der Acetylcholinesterase-Inhibitor Donepezil (Kapitel 5). Beide Substanzen erhöhten Frühphasen-LTP, aber hatten keinen Effekt auf Spätphasen-LTP. Desweiteren wurden zwei Substanzen getestet, die ausschließlich mit glutamaterger Funktion interferieren: Der metabotrope Glutamatrezeptor 5 positiv allosterische Modulator ADX-47273 (Kapitel 3) und der Phosphodiesterase (PDE) 9A-Inhibitor BAY 73-6691 (Kapitel 5). ADX-47273 erhöhte Spätphasen-LTP, aber hatte keinen Effekt auf Frühphasen-LTP, wohingegen BAY 73-6691 eine erhöhende Wirkung auf beide LTP Formen aufwies und sogar Früh- in Spätphasen-LTP umwandelte. Die gleichen Effekte, wie bei dem PDE9A-Inhibitor, konnten auch mit dem partiellen α7 nicotinische Acetylcholin-Rezeptor Agonisten SSR180711 (Kapitel 4) demonstriert werden. SSR180711 wirkt sowohl auf cholinerge, als auch auf glutamaterge neuronale Funktion. Dann wurde die Fähigkeit der Substanzen überprüft, durch lösliche Aβ Oligomere verschlechtertes LTP zu verbessern (Kapitel 6). Lösliche Aβ Oligomere, auch als amyloid-β derived diffusible ligands (ADDLs) bezeichnet, werden zurzeit als eine mutmaßliche Ursache der Alzheimer’schen Erkrankung angesehen. In der vorliegenden Arbeit wurde gezeigt, dass ADDLs Früh- und Spätphasen-LTP in verschiedenem Ausmaß vermindern. Donepezil und TC-1827 konnten die durch ADDLs induzierten Defizite bei Frühphasen-LTP geringfügig wiederherstellen, aber sie hatten keinen Einfluss auf das durch ADDLs verschlechterte Spätphasen-LTP. Im Gegensatz dazu, konnten sowohl SSR180711 als auch BAY 73-6691 ein durch ADDLs verschlechtertes Früh- und Spätphasen-LTP komplett wiederherstellen. ADX-47273 hatte keinen positiven Effekt auf Frühphasen-LTP, welches durch ADDLs verschlechtert worden war, konnte aber ein durch ADDLs verschlechtertes Spätphasen-LTP teilweise wiederherstellen. Somit wurde der vorherige Befund der Arbeit bestätigt: Substanzen, welche die glutamaterge Funktion verbessern, scheinen nicht nur wirksamer im Bezug auf LTP-Erhöhung zu sein als Substanzen die ausschließlich cholinerge Funktion erhöhen, sondern sie sind auch in der Lage, durch lösliche Aβ Oligomere verursachte Defizite bei LTP zu verbessern. Aus einem präklinischen Blickwinkel und basierend auf den Ergebnissen der vorliegenden Arbeit weisen demnach Substanzen, die glutamaterge Funktionen verbessern, ein hohes therapeutisches Potential als alternative Ansätze bezüglich kognitiver Defizite auf. Möglicherweise könnten sie sogar wirksamere Ansätze für die symptomatische Behandlung der Alzheimer’schen Erkrankung darstellen, als derzeitige Behandlungen, die ausschließlich cholinerge Funktion verbessern. N2 - Alzheimer’s disease (AD) is a progressive neurodegenerative disease of the brain. Today AD is the most common form of dementia in elderly people. It is clinically characterized by a progressive loss of memory and later on a decline in higher cognitive functions. The pathological hallmarks of AD, consistently demonstrated in brain tissue of patients, are extracellular amyloid-β (Aβ plaques, intracellular neurofibrillary tangles of tau protein and a profound loss of mainly cholinergic and glutamatergic synapses and ultimatively neurons. Estimates foresee that more than 80 million individuals will be affected by the disease by 2040 due to population aging worldwide underlining the high medical need for this disease. In order to find suitable drugs for the treatment of AD, experimental model systems are utilized to explore potential drug candidates. Such an experimental system is hippocampal long-term potentiation (LTP), which is widely accepted as an in vitro model of cellular processes fundamentally involved in memory formation. The present thesis focuses on the establishment and validation of LTP in rat hippocampal slices to characterize memory enhancing drugs as a potential treatment of AD. First, a multi-slice recording system was set up enabling stable measurements of LTP for up to seven hours from several slices simultaneously (chapter 2). Then, distinct protocols to induce early and late CA1 LTP, resembling short-term and long-term memory, were established. They were validated by addressing the hallmarks accepted for these forms of LTP: protein-synthesis independence and NMDA receptor dependence without contribution of L-VDCCs for early LTP, as opposed to protein-synthesis and NMDA / L-VDCCs dependence for late LTP (chapter 3). As in AD patients a loss of mainly cholinergic and glutamatergic synapses is obvious, these validated forms of LTP were used to study drugs potentially being able to enhance cholinergic and/or glutamatergic neuronal functions. The effects of two drugs exclusively interfering with cholinergic function on LTP were tested: the α4β2 nicotinic acetylcholinergic receptor agonist TC-1827 (chapter 4) and the acetylcholine esterase inhibitor donepezil (chapter 5). Both drugs were found to increase early LTP, but to not affect late LTP. Furthermore, two drugs exclusively interfering with glutamatergic function were analyzed: the metabotropic glutamate 5 receptor postive allosteric modulator ADX-47273 (chapter 3) and the phosphodiesterase (PDE) 9A inhibitor BAY 73-6691 (chapter 5). ADX-47273 increased late LTP, but had no effect on early LTP, whereas BAY 73-6691 showed enhancing effects on both early and late LTP and even transformed early into late LTP. The same effects like for the PDE9A inhibitor were observed for the α7 nicotinic acetylcholinergic receptor partial agonist SSR180711 (chapter 4), which interferes with both, cholinergic and glutamatergic function. Thus, drugs facilitating glutamatergic function or both glutamatergic and cholinergic function seem to be more efficacious in enhancing LTP than drugs facilitating solely cholinergic function. To evaluate whether this finding also proves true for experimental circumstances mimicking decreased cognitive function together with pathophysiology in AD patients, the ability of the drugs to ameliorate LTP impaired by soluble Aβ oligomer was analyzed (chapter 6). Soluble Aβ oligomers, also referred to as amyloid-β derived diffusible ligands (ADDLs), are thought to a putative cause of AD. Here, they were demonstrated to impair early and late LTP to different extents by exclusively targeting NMDA receptors and/or their signaling. These results further contribute to the hypothesis that soluble Aβ oligomers cause synaptic dysfunction which might lead to cognitive decline seen in AD patients. Regarding drug effects, donepezil and TC-1827 slightly restored ADDLs induced impairment of early LTP, but had no effect on late LTP impaired by ADDLs. In contrast, both, SSR180711 and BAY 73-6691 completely rescued early as well as late LTP impaired by ADDLs. ADX-47273 had no restoring effect on ADDLs induced early LTP impairment, but partially restored late LTP impaired by ADDLs. Thus, the earlier finding of the present thesis was confirmed: drugs facilitating glutamatergic function not only seem to be more efficacious in enhancing LTP than drugs facilitating solely cholinergic function, but are also superior in ameliorating soluble Aβ oligomer induced LTP deficits. Therefore, from a preclinical perspective and based on the results of the present thesis, drugs interfering with glutamatergic function seem to have a high therapeutic potential as alternative treatment concerning cognitive deficits. Probably, they represent more efficacious approaches for the symptomatic treatment of AD than current treatments solely facilitating cholinergic function. KW - Alzheimerkrankheit KW - Long-term potentiation KW - hippocampus KW - rat KW - learning and memory KW - Langzeitpotenzierung KW - Hippocampus KW - Ratte KW - Wirkstoff Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-85412 ER - TY - JOUR A1 - Krzymanski, M. A1 - Waaga, A. M. A1 - Ulrichs, Karin A1 - Müller-Ruchholtz, Wolfgang T1 - Long-standing rat kidney graft survival by a combination of organ perfusion with MHC class II monoclonal antibody and immunosuppression with reduced doses of 15-deoxyspergualin. N2 - No abstract available KW - Niere KW - Ratte KW - MHC Klasse II KW - kidney KW - rat Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64442 ER - TY - JOUR A1 - Krzymanski, Maciej A1 - Waaga, Ana M. A1 - Ulrichs, Karin A1 - Deja, Aadam A1 - Oko, Andrzej A1 - Rommel, Thomas A1 - Müller-Ruchholtz, Wolfgang T1 - The influence of MHC class II antigen blockade by perfusion with a monoclonal antibody on rat renal graft survival N2 - To decrease immunogenicity of the rat kidney, grafts were perfused with an anti-MHC class li monoclonal antibody (mAb ). How effectively this procedure blocked dass li-positive cells, which were mainly dendritic in appearance, was checked by immunostaining renal sections after perfusion and comparing them with in vitro stained sections. Optimum conditions were applied for graft pretreatment before transplantation. This procedure prolonged graft survival, though not satisfactorily from the biological point ofview (9.6 ± 0.8 versus 7.7 ± 0.5 days in the control group; P < 0.02). The dendritic cells were not killed but blocked. Several hours after transplantation, the mAb dissociated from these dass li-positive cells. It was also shown that donor cells migrate into the recipient's spieen early after transplantation. The number of these cells was smaller when the transplanted organ was perfused with the mAb. Further studies are suggested to deplete the graft of donor dendritic cells more adequately. They should also combine graft perfusion with antidass II mAb and recipient immunosuppression at reduced doses. KW - Chirurgie KW - Class II antigen blockade KW - rat KW - renal transplantation KW - Monoclonal antibody KW - dass II antigen blockade Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-64431 ER - TY - JOUR A1 - Feuerstein, G. A1 - Leader, P. A1 - Sirén, Anna-Leena A1 - Braquet, P. T1 - Protective effect of PAF-acether antagonist, BN 52021, in trichothecen toxicosis N2 - Trichothecenes are mycotoxins which produce Iethai toxicosis in humans and animals, yet no adequate therapeutic regimen has been developed. This study provides evidence that the selective platelet activating factor (PAF) antagonist, BN 52021 (5-15 mg/kg i.v.) can prolong the survival of conscious rats exposed to a highly Iethai T -2 toxicosis. These data also suggest that P AF is an important mediator of this unique toxicosis. KW - Neurobiologie KW - T-2 toxin KW - mycotoxin KW - PAF-acether KW - BN 52021 KW - rat Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63244 ER - TY - JOUR A1 - Marre, R. A1 - Hacker, Jörg A1 - Braun, V. T1 - The cell-bound hemolysin of Serratia marcescens contributes to uropathogenicity N2 - No abstract available KW - Infektionsbiologie KW - Serratia marcescens KW - uropathogenicity KW - hemolysin KW - rat Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59576 ER - TY - THES A1 - Monzón Casanova, Elisa T1 - Rat iNKT Cells: Phenotype and Function T1 - Ratten iNKT Zellen: Phänotyp und Funktion N2 - iNKT cells are a population of T cells with unique characteristics. In contrast to most αβ T cells which recognize peptides presented by highly polymorphic MHC molecules, iNKT cells are reactive to glycolipids presented by CD1d, a non-polymorphic MHC-I like molecule. Moreover, whereas MHC-restricted αβ T cells bear highly variable receptors (TCRs) formed after somatic recombination of the V(D)J gene segments, the TCR of iNKT cells is formed by an invariant α chain, which always contains the same gene segments: AV14 and AJ18; and a β chain of limited BV gene usage: BV8S2, BV7 or BV2, in the mouse. This invariant α chain is the reason for which these cells are named “i” and the NK part of their name refers to the expression of receptors typical of natural killer (NK) cells. iNKT cells recognize glycolipids of endogenous and microbial origin. After activation they secrete large amounts of very different cytokines such as IFN-γ and IL-4 and thus influence immune responses and pathological conditions. One of the most potent iNKT cell agonists, recognized by the semi-invariant TCR, is the synthetic glycolipid α-Galactosylceramide (α-Gal). iNKT cells can be visualized using CD1d-multimeric complexes loaded with α-Gal and flow cytometry, since this reagent has enough avidity to stain these cells. Interestingly, mouse iNKT cells can be stained with human α-Gal-loaded CD1d oligomers and human iNKT cells can also be visualized with mouse α-Gal-loaded CD1d oligomers, indicating a high degree of conservation of the recognition of α-Gal presented by CD1d through evolution. Previous studies showed that rats have the genes necessary to build semi-invariant TCRs: They have a CD1d homologue; one or two BV8S2 homologues and interestingly, up to ten AV14 gene segments, which are highly conserved when compared to the mouse genes. Importantly, it has been shown at least for two of these AV14 gene segments that they can produce invariant TCRα chains which, when coexpressed with BV8-containing β chains, react to α-Gal presented by rat CD1d. Furthermore, ex vivo stimulation of primary splenocytes with α-Gal results in the secretion of IL-4 and IFN-γ. Surprisingly, rat semi-invariant TCRs do not recognize α-Gal presented by mouse CD1d and accordingly, mouse α-Gal-loaded CD1d tetramers failed to stain a discrete population of rat iNKT cells. Taking all together, despite that strong evidence suggested that iNKT cells are present in the rat, the direct identification of such population and the analysis of CD1d-restricted immune responses were still pending for this species. Hence the work presented in this doctoral thesis was aimed to identify iNKT cells, to analyze their phenotype and also to study the distribution and function of CD1d in the rat. For these purposes, we produced essential reagents which were still lacking such as rat specific anti-CD1d monoclonal antibodies and rat CD1d oligomers. Importantly, two of three anti-rat CD1d monoclonal antibodies (all of them generated in our laboratory before this thesis was initiated) also recognized mouse CD1d and therefore allowed a direct comparison of CD1d expression between rat and mouse. Whereas CD1d distribution in the hematopoietic system was found to be extremely similar between these two species; in non-lymphatic tissues important differences were observed. Interestingly, CD1d protein was detected at not yet described sites such as the rat exocrine pancreas and rat and mouse Paneth cells. These monoclonal antibodies did not only allowed the analysis of CD1d expression, but also the first demonstration of the function of rat CD1d as an antigen presenting molecule, since cytokine release in response to α-Gal was blocked when they were added to ex vivo cultures of rat primary cells. Staining of primary rat iNKT cells (possible now with the newly generated rat CD1d oligomers) revealed interesting similarities with human iNKT cells. First, we observed that rat iNKT cells are only a minority among all NKR-P1A/B positive T cells. Human iNKT cells constitute also a very small proportion of NKR-P1A (CD161) expressing T cells, whereas in mice inbred strains which express NKR-P1C (NK1.1), most of NKRP1C expressing T cells are iNKT cells. Second, the majority of rat iNKT cells are either CD4 or DN and only a small proportion expresses CD8β. These findings are similar to humans and different to mice which lack CD8+ iNKT cells. Third, analysis of various inbred rat strains demonstrated different iNKT cell frequencies which correlated with cytokine secretion after α-Gal stimulation of primary cells. In comparison to mice, iNKT cell numbers are markedly reduced in rats. In F344 rats, inbred rat strain which released the highest cytokine amounts after α-Gal stimulation, approximately 0.25% and 0.1% of total liver and spleen lymphocytes, respectively, are iNKT cells. In contrast, in LEW rats iNKT cells were practically absent and neither IL-4 nor IFN-γ were detected after stimulation of primary cells with α-Gal. Once more, these frequencies are very close to those observed in humans. Last, as reported for human peripheral blood cells, rat iNKT cells could be easily expanded in vitro by adding α-Gal to cultures of intrahepatic lymphocytes, whereas the expansion of mouse iNKT cells was not possible using the same protocol. The presence of a multimember AV14 gene segment family in the rat is an intriguing characteristic. These AV14 gene segments are extremely homologous except in the CDR2α region. Based on the amino acid sequence of this region they have been divided into two different types: Type I and II. A specific tissue distribution of the different types was proposed in the first study where the presence of several AV14 gene segments was described. We also analyzed the AV14 gene segment usage in F344 and LEW inbred rat strains. In F344 rats we found no preferential usage of either AV14 gene segment type in the spleen and the liver but type II AV14 gene segments appeared more frequently in the thymus. In contrast, LEW rats show a preferential usage of type I AV14 gene segments in all three compartments analyzed: Thymus, spleen and liver. Taken all together, the usage of newly generated reagents allowed to gain novel insights into CD1d expression in the rat and in the mouse and to directly identify rat iNKT cells for the first time. The phenotypic and functional analysis of rat iNKT cells revealed numerous similarities with human iNKT cells. These are of special interest, since rats serve to investigate several pathological conditions including models for autoimmune diseases. The possibility now to analyze iNKT cells and CD1d-restricted T cell responses in the rat might help to understand the pathogenesis of such diseases. In addition, the uncomplicated in vitro expansion and culture of rat iNKT cells should facilitate the analysis of the immunomoldulatory capacities of these cells. N2 - iNKT Zellen sind eine Population von T Zellen mit einigen Besonderheiten. Anders als die meisten αβ T Zellen, deren T Zell Rezeptoren (TZRs) für von hochpolymorphen MHC Molekülen präsentierte Peptide spezifisch sind, erkennen iNKT Zellen Glycolipide die von CD1d, einem nicht polymorphem MHC-I artigen Moleküle, präsentiert werden. Während MHC-restringierte αβ T Zellen sehr unterschiedliche TZRs haben, die nach somatischer Rekombination der V(D)J Gensegmente generiert werden, besteht der TZR der iNKT Zellen aus einer invarianten α Kette und einer β Kette mit einem limitierten BV Gen Repertoire (BV8S2, BV7 und BV2 in Maus). Die invariante α Kette, auf die das i im Namen der iNKT Zellen verweist, enthält in der Maus immer AV14 und AJ18 kodierte V-Regionen. Das NK in ihrem Namen verweist darauf, dass sie häufig NK-Zell typische Oberflächenmoleküle exprimieren. iNKT Zellen erkennen Glycolipide endogenen und mikrobiellen Ursprungs und sezernieren nach Aktivierung große Mengen verschiedener Zytokine wie zum Beispiel IL-4 und IFN-γ. Auf diese Weise beeinflussen sie Immunantwort und pathologische Zustände. Eine der potentesten iNKT-Zell-TZR Agonisten ist das α-Galactosylceramid (α-Gal) und α-Gal beladene CD1d-Multimere ermöglichen es iNKT Zellen zu färben und mittels Durchflusszytometrie sichtbar zu machen. Die hohe Konservierung der iNKT TZR-CD1d Interaktion ermöglicht es sogar, Maus iNKT Zellen mittels α-Gal beladenen humanen CD1d-Multimere zu färben. Vorhergehende Studien zeigten, dass Ratten die notwendigen Gene für die Generierung der semi-invarianten TZR haben: Sie besitzen ein CD1d Homolog, ein oder zwei BV8S2 Homologe und bis zu zehn AV14 Gensegmente, die im Vergleich zu den Maus-AV14 Genen hoch konserviert sind. Mehrere dieser AV14 Gensegmenten wurden mit AJ18 zusammen rearrangiert gefunden und für mindestens zwei dieser invarianten α Ketten wurde gezeigt, dass sie zusammen mit BV8 enthaltenden β Ketten TZR bilden, die von CD1d präsentiertes α-Gal erkennen. Weiterhin wurde gezeigt, dass primäre Ratten- Milzzellen und intrahepatische Lymphozyten nach Kultur mit α-Gal IL-4 und IFN-γ sezernieren. Auf Grund dieser Befunde und der starken Konservierung der CD1d Gene und der Gene, die die semi-invarianten TZR kodieren, überrascht es, dass keine definierte Zellpopulation von intrahepatischen Rattenlymphozyten mittels α-Gal beladenen Maus CD1d-Tetrameren gefärbt wurde. Zusammengefasst kann gesagt werden, dass die direkte Identifizierung der Zellen und die Analyse der CD1d restringierten Immunantworten in der Ratten noch austand, obwohl es starke Hinweise für die Existenz der iNKT Zellen in dieser Art gab. Infolgedessen sind die Ziele dieser Arbeit: die Identifizierung der Ratten iNKT Zellen, die Analyse ihres Phänotyps und die Untersuchung der CD1d-restringierten Immunantworten. Um diese Ziele zu erreichen, wurden noch fehlende essentielle Reagenzien hergestellt, wie die ersten Ratten-CD1d spezifischen monoklonalen Antikörper und Ratten CD1d Oligomere. Zwei der drei charakterisierten monoklonalen Antikörpern erkennen sowohl Ratten CD1d als auch Maus CD1d. Dies ermöglichte den direkten Vergleich der CD1d Expression zwischen beiden Spezies (diese Antikörper wurden in unserem Labor vor dem Anfang dieser Doktorarbeit hergestellt). Während die CD1d Verteilung im hämatopoetischen System beider Arten äußerst ähnlich ist, wurden in nicht lymphatischen Geweben sehr starke Unterschiede gefunden. Interessanterweise wurde das CD1d Protein auch an noch nicht beschriebenen Stellen wie im exokrinen Pankreas der Ratte und in Paneth Zellen von Maus und Ratte beobachtet. Die monoklonalen Antikörper erlaubten nicht nur die Analyse der CD1d Verteilung, sondern auch den Beweis der Funktion von CD1d als Antigen präsentierendes Molekül, weil die Zugabe der Antikörper zu ex vivo Kulturen von primären Zellen die Sekretion von Zytokinen bei der Stimulation mit α-Gal hemmt. Färbungen von primären Ratten iNKT Zellen, jetzt möglich durch die neu generierte Ratten CD1d-Dimere, zeigten interessante Gemeinsamkeiten mit humanen iNKT Zellen. Es wurde erstens beobachtet, dass Ratten iNKT Zellen nur eine Minderheit unter allen NKR-P1A/B positiven T Zellen sind. Dies ähnelt den humanen iNKT Zellen, die ebenfalls auch nur ein sehr kleinen Teil der NKR-P1A (CD161) exprimierenden T Zellen stellen, während in Mausstämmen, die NKR-P1C (NK1.1) exprimieren, die Mehrheit der NKR-P1C positiven T Zellen iNKT Zellen sind. Zweitens sind die meisten Ratten iNKT Zellen CD4 positiv oder doppelt negativ während nur ein kleiner Anteil CD8β exprimiert. Diese Befunde gleichen denen mit humanen iNKTs und unterscheiden sich von Maus iNKTs, die immer CD8β negativ sind. Drittens zeigt die Analyse von verschiedenen Rattenstämmen, ähnlich wie beim Menschen, 10-100 fach geringere Frequenzen von iNKT Zellen als in der Maus. In F344 Ratten sind etwa 0.25% aller Lymphozyten in der Leber und etwa 0.1% aller Milzzellen iNKT Zellen. Wobei dies der Rattenstamm ist, der die größte Mengen an Zytokinen nach α-Gal Stimulation produziert. In LEW Ratten, die keine Zytokine nach α-Gal Stimulation produzierten, konnten iNKT Zellen praktisch nicht gefärbt werden. Schließlich konnten, wie bei humanen peripherischen Blutzellen beobachtet, Ratten iNKT Zellen durch alleinige Zugabe von α-Gal in vitro expandiert werden, während dies mit Maus iNKT Zellen nicht möglich war. Eine faszinierende bislang nur in der Ratte gemachte Beobachtung ist die Existenz einer AV14 Multigenfamilie, deren Mitglieder bis auf die CDR2 kodierende Region hochhomolog sind. Basiert auf der Aminosäuresequenz dieser Region wurde diese Familie in zwei Gruppen aufgeteilt: Typ I und II. Die erste Studie, in der diese zwei verschiedenen Typen beschrieben wurden, schlug eine spezifische Gewebsverteilung von AV14 positiven TCR vor. Wir haben ebenfalls die Benutzung dieser AV14 Gene in F344 und LEW Inzuchtrattenstämmen analysiert und gefunden, dass es in F344 Leber und Milz keine Präferenz für einen bestimmten AV14 Typ gibt. Jedoch wurde der Typ II häufiger in F344 Thymus gefunden. Im Vergleich zeigen LEW Ratten eine bevorzugte Benutzung des Typ I in allen analysierten Geweben (Thymus, Milz und Leber). Zusammengefasst kann gesagt werden, dass diese Studie mit Hilfe neu generierter Reaganzien neue Erkenntnisse zur CD1d Expression in Ratte und Maus gewonnen wurden und erstmals eine direkte phänotypische und funktionelle Analyse von iNKT Zellen der Ratte durchgeführt wurde. Es wurden eine Reihe von Gemeinsamkeiten zwischen iNKT Zellen von Ratte und Mensch gefunden. Diese sind vor allem deshalb von Interesse, da das Versuchstier Ratte für eine Reihe von Autoimmunkrankheiten und andere pathologische Zustände als Modellorganismus dient. Es ist zu erwarten, dass weitere Untersuchungen von CD1d-restringierten Zellen der Ratte neue Einsichten in die Genese dieser Krankheiten ermöglicht. Darüberhinaus sollte die in der Ratte beobachtete einfach durchzuführende in vitro Kultur und Expansion von iNKT Zellen eine Analyse ihrer immunmodulatorischen Eigenschaften deutlich erleichtern. KW - Ratte KW - Natürliche Killerzelle KW - Immunologie KW - CD1d KW - rat KW - NKT Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-56526 ER - TY - JOUR A1 - Sendtner, Michael A1 - Arakawa, Yoshihiro A1 - Stöckli, Kurt A. A1 - Kreutzberg, Georg W. A1 - Thoenen, Hans T1 - Effect of ciliary neurotrophic factor (CNTF) on motoneuron survival N2 - We have demonstrated that the extensive degeneration of motoneurons in the rat facial nucleus after transection of the facial nerve in newborn rats can be prevented by local ciliary neurotrophic factor (CNTF) administration. CNTF differs distinctly from known neurotrophic molecules such as NGF, BDNF and NT-3 in both its molecular characteristics (CNTF is a cytosolic rather than a secretory molecule) and its broad spectrum of biological activities. CNTF is expressed selectively by Schwann cells and astrocytes of the peripheral and central nervous system, respectively, but not by target tissues of the great variety of CNTF -responsive neurons. CNTF mRNA is not detectable by Northern blot or PCR analysis during embryonic development and immediately after birth. However, during the second post-natal week, a more than 30-fold increase in CNTF mRNA and pro tein occurs in the sciatic nerve. Since the period of low CNTF levels in peripheral nerves coincides with that of high vulnerability of motoneurons (i.e. axonallesion results in degeneration of motoneuron cell bodies), insufficient availability of CNTF may be the reason for the rate of lesioninduced cell death of early post-natal motoneurons. Highly enriched embryonic chick motoneurons in culture are supported at survival rates higher than 60% by CNTF, even in single cell cultures, indicating that CNTF acts directly on motoneurons. In contrast to CNTF, the members of the neurotrophin gene family (NGF, BDNF and NT-3) do not support the survival of motoneurons in culture. However, aFGF and bFGF show distinct survival activities which are additive to those of CNTF, resulting in the survival of virtually all motoneurons cultured in the presence of CNTF and bFGF. KW - motoneurons KW - ciliary neurotrophic factor KW - CNTF KW - nerve lesion KW - rat KW - chick KW - neurotrophic factor Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-33048 ER - TY - THES A1 - Nußbaumer, Judith T1 - Die Übertragung von Toxoplasma gondii über die Muttermilch und deren immunologische Konsequenzen : Arbeiten im Rattenmodell T1 - Transmission of Toxoplama gondii via mother`s milk and consequences in the immune response N2 - In dieser Arbeit wurden im Versuchstier Ratte die Transmission von T.gondii über die Muttermilch und deren immunologische Konsequenzen analysiert. Es konnte gezeigt werden, dass sich Rattenmilch als labordiagnostisches Medium eignet, wobei der direkte visuelle Parasitennachweis mit dem Lichtmikroskop, trotz verschiedender Aufbereitungsmethoden erfolglos blieb. Auch die PCR eignete sich für unsere Versuche nicht als Nachweismethode. Als geeignte und sensitive Methode für den Parasitennachweis in Rattenmilch stellte sich die Anzucht auf humanen Vorhautfibroblasten (HFF-Zellkultur)dar, wobei bereits zwei Tachyzoiten, die in vitro zu Milch nicht infizierter Tiere gegeben wurden, ausreichten, um eine HFF-Zelle zu infizieren. Immunisierungsexperimente wurden durchgeführt, um die Frage zu klären, ob die im Serum von Jungtieren nachgewiesenen Toxoplasma-spezifischen Immunglobulinen über die Muttermilch aufgenommen worden sein könnten. Es gelang in Milch und Serum der Ammen, sowie im Serum der Jungtiere, T. gondii spezifische Immunglobuline nachzuweisen. Die Transmission des Parasiten als freier Tachyzoit wurde in dieser Arbeit simuliert. Tachyzoiten von T. gondii wurden in verschiedener Dosierung in Rattenmilch angereichert und 48 Stunden alten Ratten verabreicht. Die humorale und zelluläre Immunantwort wurde getestet. Tachyzoiten, die über die Milch aufgenommen wurden, können eine Infektion auslösen. Ratten wurden schließlich auf natürlichem Wege über Milch mit T. gondii infiziert, die humorale Immunantwort bestimmt und der Gehalt der infizierten Rattenmilch an Immunglobulinen überprüft. Die Antikörperkonzentration in Serum und Milch der Ammen zeigte eine deutliche Korrelation und im Serum der Nachkommen ließen sich ebenfalls Antikörper nachweisen. Zeichen einer Infektion fanden sich jedoch nicht. Die Rattenmilch kann also T. gondii und toxoplasmaspezifische Immunglobuline enthalten, die von Nachkommen aufgenommen werden. Den Mechanismus der Parasitenübertragung und die Rolle maternaler parasitenspezifischer Immunglobuline für Infektion und parasitenspezifische Immunantwort der Nachkommen gilt es jedoch noch zu klären. N2 - The transmission of T. gondii via mother`s milk and the consequences in the immune response was tested in this work. We could show, that it is possible to work with milk, but it wasn`t possible to find the parasite in milk by the use of common microscopy. The use of the PCR wasn`t a good method for the detection of the parasite in our experiments. But milk was found positive for the presence of parasites by infection of human foreskin fibroblasts. In addition, rats were immunized to answer the question of the possiblity of the transmission of immunoglobulins via mother`s milk to the offsprings. We could find immunoglobulins in the milk and blood of immunized nurse-rats and in the blood of the offsprings. The transmission of the parasite as free tachyzoite was simulated and the humoral and cellular immune response was tested. Tachyzoites taken in via milk can stimulate an infection. Finally nurse-rats were infected with T. gondii via the natural route and the humoral immune response of the infected rats and of the offspring of uninfected rats which were fed by the nurse-rats was detected. We could find immunoglobulins in the blood of the offsprings but no signs of an infection. You can find T. gondii and immunoglobulins in the milk of an infected rat, both can be transmitted to offsprings. The mechanism of the transmission of the parasite and the importance of maternal immunoglobulins for an infection and immune response has still to be analysed. KW - Toxoplasma gondii KW - Ratte KW - Milch KW - Immunologie KW - Toxoplasma gondii KW - rat KW - milk KW - Immunology Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-23006 ER - TY - THES A1 - Schuler, Patrick T1 - Lokalisation und Blockade der Serinprotease uPA im C6-Glioblastom-Modell der Ratte T1 - Lokalisation and Blockade of Serinprotease uPA in C6-Glioblastoma modell of the Rat N2 - Gegenstand dieser Doktorarbeit war die Beschreibung des Urokinaseplaminaktivators uPA im C6-Sphäroidmodell der Ratte und dessen Lokalisation in Bezug auf den Primärtumor. Das hierbei verwendete Tiermodell basiert auf der C6-Tumorzellreihe, welche durch Transfektion von Rattengliomzellen mit dem Vaskularisierungsfaktor VEGF entwickelt wurde. Die gesteigerte Expression von VEGF resultiert in einer stärkeren Vaskularisierung und einer erhöhten Wachstumsrate des Tumors. Im Vorfeld der Tumorimplantation konnte die Expression von uPA durch die C6-Tumorzellen mittels reverser RNA-Transkription und Polymerasekettenreaktion nachgewiesen werden. In vitro gelang der Nachweis von uPA im C6-Sphäroiden mittels Fluoreszenz-Färbung. Im Rahmen des Tierversuches wurden aus den Tumorzellen ca. 300µm große Sphäroide hergestellt, welche den Ratten in den Kortex des linken Frontallappens implantiert wurden und dort solide Hirntumoren bildeten. Die Versuchstiere wurden anschließend in zwei Gruppen aufgeteilt. Der Positivgruppe wurde täglich über einen Zeitraum von 19 bzw. 21 Tagen der Proteasehemmer WX-UK1 in die Bauchhöhle injiziert, die Kontrollgruppe erhielt ein Placebo. Nach Ablauf des Behandlungszeitraumes konnte an den explantierten Gehirnen mittels histochemischer Peroxidasefärbung die Protease uPA im Tumorgewebe nachgewiesen werden. Die Konzentration von uPA war besonders im invasionsaktiven Bereich des Tumors erhöht. Dieser entspricht der Randzone des soliden Tumors, sowie den distanzierten Zellnestern im gesunden Hirngewebe, welche als so genannte Invasionszone zusammengefasst werden. Die tragende Rolle von uPA bei der Invasion der Tumorzellen in das gesunde Hirngewebe konnte somit bestätigt werden. Die Messung von erhöhten uPA-Konzentrationen an der Basalmembran von Hirngefäßen korreliert mit Beobachtungen, dass die Tumorzellen entlang von Gefäßen und Plexus migrieren, aber nicht in der Lage sind, in das Gefäßlumen einzudringen. Der Nachweis der erfolgreichen orthotopen Sphäroidimplantation mittels MRT-Bildgebung der Hirntumoren unterstreicht den Vorteil der offenen Implantationstechnik gegenüber der Zellinjektion. Die peritoneale Verabreichung des Proteasehemmers WX-UK1 führte im Rahmen dieser Untersuchungen zu keiner signifikanten Reduktion des Tumorwachstums, welches mittels Volumenmessung im MRT dokumentiert wurde. Des Weiteren konnte keine Minderung der uPA-Konzentration in den Tumoren der Positivgruppe gegenüber der Kontrollgruppe gemessen werden. Neben der fehlenden Biodistribution des Wirkstoffes kommt hierfür auch eine mangelnde Spezifität von WX-UK1 für uPA oder ein alternativer Aktivierungsweg der Proteolyse innerhalb der Tumorzellen in Betracht. Diese Arbeit führt zur Weiterentwicklung des C6-Sphäroidmodells und unterstützt die zukünftige Entwicklung von Wirkstoffen gegen das Tumorwachstum auf Basis der anti-invasiven Therapie. N2 - Lokalisation and Blockade of Serinprotease uPA in Glioblastoma modell of the Rat KW - Glioblastom KW - uPA KW - Infiltration KW - Hirntumor KW - Ratte KW - glioblastoma KW - uPA KW - infiltration KW - braintumor KW - rat Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-18967 ER - TY - THES A1 - Kuckein, Marc Oliver T1 - Charakterisierung von CD4+ CD25+ T-Regulatorzellen (Treg) der Ratte : In-vitro-Kultivierung, Cytokinprofil und regulatorische Funktion T1 - Characterization of rat CD4+ CD25+ regulatory T cells (Treg) : In vitro culture, cytokine patterns and regulatory functions N2 - Die vorliegende Arbeit beschäftigte sich mit der Charakterisierung regulatorischer CD4+ CD25+ T-Lymphozyten (Treg) der Ratte und dem Nachweis ihrer Suppressor-Funktion in vitro. Als erstes wurde die Verteilung dieser Zellen in den lymphatischen Organen untersucht. Dabei waren sie sowohl in den parailiacalen, cervicalen und mesenterialen Lymphknoten (zwischen 4,5 und 6,1%) als auch im Thymus mit 1,3% und in der Milz mit 4,5% nachzuweisen. Ihr CD45Rlow Phänotyp entspricht dem humaner und muriner Treg. Alle Treg der Ratte exprimieren den  T-Zellrezeptor, und sie sind zu 40% für einen weiteren Aktivierungsmarker, nämlich CD134, positiv. Um die Vitalität frisch isolierter Treg in vitro erfolgreich zu erhalten, ist es notwendig, sie zu stimulieren; entweder mit den beiden Antikörpern R73 (anti-TCR) und JJ319 (anti-CD28) oder mit allogenen dendritischen Zellen und/oder IL-2. Ein weiteres wesentliches Ergebnis dieser Arbeit war, dass stimulierte Treg sowohl IL-2 als IL-10 produzierten. Während der dreitägigen Kultivierung sezernierten 100.000 Treg mit 1.200 pg/ml dreimal soviel IL-10 wie IL-2 (402 pg/ml) in den Kulturüberstand. Die Suppressor-Funktion von Treg der Ratte wurde in Inhibitionsassays bestätigt. Gemessen wurde ihre Fähigkeit, in Abhängigkeit ihrer Zellzahl die polyklonale Aktivierung von CD25neg zu hemmen. Wurden Treg und CD25neg zu gleichen Anteilen kultiviert, so war eine nahezu vollständige Hemmung der Aktivierung von CD25neg nachweisbar. Je geringer der Anteil aktivierter Treg im Inhibitionsassay war, desto geringer war auch der von ihnen übertragende suppressive Effekt. Zudem wurde gezeigt, dass die Suppression umso stärker war, je größer der Anteil blastoider FSCbright Zellen an den im Inhibitionsassay eingesetzten Treg war. Die Charakterisierung von Treg der Ratte hat somit gezeigt, dass sie über eindeutige Suppressor-Eigenschaften verfügen. Dieser Nachweis stellt die wesentliche Voraussetzung für künftige in vivo Untersuchungen dar. N2 - Immunologic self-tolerance in the periphery can be provided by thymic-derived regulatory CD4+ CD25+ T cells or Tregs. These cells have been found in many species, e.g. human, mice and rat. The rat is one of the most important animals for experimental organ transplantation in a clinic-relevant procedure but less is known about the immunobiology of rat Treg. Therefore, the main purpose of this study was to characterise this important cell type in the rat in order to confirm their expected suppressive effect. First, the distribution of Tregs in different lymphatic organs was examined. They were detectable in parailiacal-, cervical- and mesenterical lymph nodes (between 4.5 and 6.1%) as well as in the thymus (1.3%) and spleen (4.5%). Second, Tregs demonstrated a phenotype of activated T cells: CD25+, CD134+ and CD45RClow. To achieve a successful preservation of their vitality in vitro, the freshly isolated Tregs were stimulated either with the antibody combination of R73 and JJ319 with specificity for the T-cell receptor and CD28, respectively, or with a combination of allogeneic dendritic cells and exogenous Interleukin-2 (IL-2). Another essential finding was the production of both IL-2 and IL-10 by Tregs. During an incubation period of 3 days, 100.000 Tregs produced 1200 pg/ml IL-10 and 402 pg/ml IL-2. The suppressive function of Tregs, measured as the efficacy to inhibit the polyclonal activation of naïve T cells, was confirmed in an inhibition-assay. In the case of an equal number of Tregs and naïve T cells a nearly complete inhibition of the activation of naïve T cells was proven. However, freshly isolated Tregs didn't show any suppressive effects in the inhibition assay prior to their own activation with T73 and JJ 319. Activated Tregs expressed more CD25 molecules on their cell surfaces and they increased in size (blastoid or FSCbright Tregs). The amount of these blastoid transformed Tregs strongly influenced the efficacy of suppression: A population of Tregs with a proportion of FSCbright Tregs over 70% was 6-times more efficient than a population of Tregs with a proportion of FSCbright Tregs below 50%. Therefore, the activation of freshly isolated CD25+ Tregs is necessary to preserve their vitality as well as their suppressive effect. In summary, a major result of this work is that rat Tregs indeed demonstrate suppressive capacities. This knowledge is a fundamental requirement for further experiments analyzing their efficacy in vivo after experimental organ transplantation. KW - Regulatorische T-Lymphozyten KW - Ratte KW - Regulatory T cells KW - rat Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-18124 ER -