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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
391

Rôle et expression de l'interleukine-27 dans le contexte de la sclérose en plaques

Sénécal, Vincent 03 1900 (has links)
Des études antérieures ont indiqué que l’IL-27 supprime le développement de l’encéphalomyélite auto-immune expérimentale (EAE), un modèle murin de la sclérose en plaques (SEP). L’expression en ARNm d’IL-27 est maximale au pic du développement de l’EAE. Cependant, sa contribution dans la pathogenèse de la SEP demeure irrésolue. Nous avons investigué si l’IL-27 contribue à moduler les réponses immunes dans le système nerveux central (SNC) de patients SEP. Nos résultats d’immunohistochimie sur échantillons post-mortem de cerveaux humains ont révélé que la production des deux sous-unités d’IL-27 (EBI-3 et p28) est plus élevée chez des patients comparés à des contrôles. De plus, les astrocytes (GFAP) et les microglies/macrophages (Iba1) représentent des sources biologiques importantes de l’IL-27 dans les lésions. Les lymphocytes T CD4 et CD8 qui infiltrent le SNC des patients expriment d’ailleurs le récepteur de l’IL-27 composé des chaînes gp130 et TCCR, supportant le concept que ces cellules pourraient répondre aux sources locales d’IL-27. Nous avons également démontré que des combinaisons de cytokines pro-inflammatoires (IFNγ, IL-1β et TNF) augmentent l’expression in vitro d’IL-27 par les astrocytes et macrophages humains, et que les microglies/macrophages de phénotype M1 produisent l’IL-27. Enfin, nous avons démontré que les astrocytes humains expriment aussi le récepteur à l’IL-27 et répondent à l’IL-27 par la phosphorylation de STAT1, mais pas de STAT3. Une telle signalisation dans ces cellules mène à l’augmentation d’expression de la molécule de co-inhibition PD-L1 et de la sécrétion de la chimiokine CXCL10. / Multiple lines of evidence support the notion that IL-27 can dampen the severity of experimental autoimmune encephalomyelitis (EAE). Whether this cytokine contributes to the pathogenesis of the human disease multiple sclerosis (MS) is still unresolved. We investigated whether IL-27 locally contributes to modulate the immune responses in the central nervous system (CNS) of MS patients. We performed immunohistochemistry on human post-mortem brain tissue samples and observed that both IL-27 subunits (EBI-3 and p28) are elevated in MS brains compared to controls. Moreover, we identified that astrocytes (GFAP+ cells) as well as microglia/macrophages (Iba1+ cells) are important sources of IL-27 in MS brains. Infiltrating CD8 and CD4 T cells present in the CNS of MS patients express the receptor for IL-27, composed of gp130 and TCCR chains, supporting the notion that these cells can respond to the local sources of IL-27. We demonstrated that combinations of inflammatory cytokines (IFNγ, IL-1β and TNF) up-regulate in vitro IL-27 expression by human astrocytes and macrophages, and that M1 microglia/macrophages produce IL-27. Lastly, we demonstrated that human astrocytes also express IL-27R and respond to the cognate cytokine by triggering the phosphorylation of STAT1, but not STAT3. Such signaling leads to the upregulation of PD-L1 expression and CXCL10 production by astrocytes. Our data demonstrate that IL-27 and its receptor are elevated in the CNS of MS patients and that inflammatory mediators present in MS lesions contribute to up-regulate such expression. Finally, astrocytes are key mediators of the production of IL-27 but also respond to this cytokine.
392

Role gliových buněk v imunitní odpovědi myší infikovaných neurotropní motolicí Trichobilharzia regenti / Role of glial cells in the immune response of mice infected by neurotropic fluke Trichobilharzia regenti

Macháček, Tomáš January 2015 (has links)
A central nervous system (CNS) can be invaded by plenty of parasites, including parasitic helminths. Host's immune response during such infections includes not only participation of peripheral lymphocytes, but also astrocytes and microglia, resident glial cells present in the CNS. Activation of astrocytes and microglia has been recently demonstrated also in mice infected by neurotropic avian trematode Trichobilharzia regenti (Digenea: Schistosomatidae) for which mammals represent accidental hosts. The parasite does not mature in them and elicits development of inflammatory reaction in the CNS which may take part in parasite's destruction. Employing in vitro experiments, this thesis aimed at evaluation of the possible role of astrocytes and microglia in murine immune response to T. regenti. For this purpose, primary astrocyte and microglia culture preparations were established and the cells were then stimulated by antigens of T. regenti (homogenate of transformed cercariae, recombinant cathepsins B1.1 and B2). After that, production of nitric oxide and proinflammatory cytokines (IL-1 beta, IL-6, TNF-alpha) was measured. The results revealed that in vitro stimulated astrocytes and microglia increase production of nitric oxide, IL-6 and TNF-alpha. Such response to parasite's antigens could influence...
393

Perfil de expressão gênica da micróglia humana e suas alterações relacionadas ao glioma / Human microglia expression profile and its alterations related to glioma

Galatro, Thais Fernanda de Almeida 12 September 2016 (has links)
A micróglia é essencial para a homeostase do Sistema Nervoso Central (SNC), função neuro-imune inata, e exerce papel importante na neurodegeneração, envelhecimento cerebral e tumorigênese. Gliomas difusos são tumores cerebrais primários caracterizados por crescimento infiltrativo e altas taxas de heterogeneidade, o que torna a doença praticamente incurável. Avanços em análises genéticas caracterizaram alterações moleculares relacionadas ao tempo de sobrevida e à resposta clínica desses pacientes, especialmente em glioblastomas (GBM). No entanto, a tumorigenicidade dos gliomas não é controlada unicamente por suas alterações genéticas. As interações entre as células tumorais, a micróglia residente e os macrófagos/monócitos infiltrados desempenham um papel crucial na modulação do crescimento e agressividade do glioma. Neste estudo, analisamos o fenótipo de ativação da micróglia/macrófagos em gliomas, incluindo astrocitomas e oligodendroglimas de diferentes graus de malignidade, apresentamos o perfil de expressão gênica da população pura de micróglia cortical e do tecido cerebral total correspondente. Usando sequenciamento de DNA de alta performance, classificamos as amostras de GBM em Proneural, Clássico e Mesenquimal. Em seguida, avaliamos os status de ativação da micróglia/macrófagos dessas amostras. Apesar do alto grau de heterogeneidade, pudemos observar níveis mais altos dos marcadores mielóides (IBA1, CD11b and CD68) em tumores astrocíticos comparados a tumores de origem oligodendrocítica e ao tecido não-neoplásico. Marcadores de anti-inflamação, como CD163, foram mais abundantes em astrocitomas, bem como em GBMs do subtipo Mesenquimal e Clássico; enquanto que marcadores de pró-inflamação, como IL1-beta, mostraram uma expressão mais heterogênea entre as amostras. Em seguida, micróglia foi isolada de 25 amostras de córtex parietal provenientes de autópsia de indivíduos cognitivamente preservados e foi feito o RNA-seq. Os resultados foram comparados à micróglia de camundongo e a outras células mielóides. Boa parte dos genes expressos pela micróglia humana foram similares àqueles expressos pela micróglia murina, como CX3CR1, P2YR12 e ITGAM. Porém, foram identificados genes de característica imune, abundantemente expressos na micróglia humana e não identificados na micróglia de camundongos, como TLR, Fcy, receptores do tipo SIGLEC, e fatores de transcrição NLRC5 e CIITA. A comparação dos dados de expressão gênica da micróglia com monócitos e macrófagos identificou novos marcadores que distinguem a micróglia humana de outras células mielóides. Nossos dados sobre a micróglia em gliomas sugerem características de imunossupressão e de pró-crescimento em tumores de pior prognóstico, ligado a um fenótipo específico de ativação das células mielóides. Este é o primeiro estudo a identificar o transcriptoma da micróglia humana pura, demonstrando que ela é claramente diferente da micróglia murina e de outras células mielóides. Esses resultados abrem portas para estudos de populações específicas de células mielóides em gliomas / Microglia are essential for central nervous system (CNS) homeostasis and innate neuroimmune function, and play important roles in neurodegeneration, brain aging and tumorigenesis. Diffuse gliomas are primary brain tumors characterized by infiltrative growth and high heterogeneity, which renders the disease mostly incurable. Advances in genetic analysis have characterized molecular alterations leading to impact on patients\' overall survival and clinical outcome, particularly in glioblastoma (GBM). However, glioma tumorigenicity is not controlled uniquely by its genetic alterations. The crosstalk between tumor cells, resident microglia and infiltrating monocytes/macrophages plays a crucial role in modulating glioma growth and aggressiveness. Here, we assess the activation status of microglia/macrophages in gliomas,including astrocytomas and oligodendrogliomas of different grades of malignancy, and present the gene expression profile of pure cortical human microglia and corresponding unsorted brain tissue. Using high-throughput DNA sequencing, we have classified GBM samples in Proneural, classical and mesenchymal. Next, we evaluated the activation status of microglia/macrophages within these samples. Despite the great heterogeneity, we observed higher levels of myeloid markers (IBA1, CD11b and CD68) in astrocytic tumors compared to oligodendrocytic ones and to non-neoplastic (NN) tissue. Anti-inflammation markers, such as CD163, are also more abundant in astrocytomas, as well as in the mesenchymal and classical GBM subtypes, while pro-inflammation markers, such as IL1-beta, show a more widespread expression throughout samples. Next, microglia were isolated from the parietal cortex of 25 autopsy samples of cognitively preserved humans and RNA sequenced. Overall, genes expressed by human microglia are similar to mouse microglia, such as CX3CR1, P2YR12, and ITGAM. Interestingly, a number of immune genes, not identified as mouse microglia signature genes, were abundantly expressed in human microglia, such as TLR, Fcy and SIGLEC receptors and NLRC5 and CIITA transcription factors. Comparison of microglia to monocyte and macrophage expression data underscored the CNS-specific functions of microglia and new markers were identified that distinguish human microglia from other myeloid cells. Our glioma-related data suggests an immune-suppressive and growth supportive characteristic for tumors with worse clinical outcome, linked to an activation profile of myeloid cells. This data is the first comprehensive pure human microglia gene expression profile; human microglia clearly differ from mouse microglia and other myeloid cells. These results will help further studies focusing on pure myeloid cells populations in glioma
394

Einwanderung und Differenzierung von hämatogenen Zellen zu Mikroglia im adulten Zentralnervensystem

Wehner, Tim 26 January 2004 (has links)
Zur langfristigen Markierung von hämatogenen Zellen wurde Knochenmark mit dem Gen für das grüne fluoreszierende Protein (GFP) transduziert und in bestrahlte Empfängermäuse transplantiert. Die GFP-Expression im peripheren Blut dieser Tiere war über den untersuchten Zeitraum von vier Monaten stabil. Die Hirne der Empfängertiere wurden zu den Zeitpunkten zwei, vier, acht und fünfzehn Wochen nach Knochenmarktransplantation auf die Präsenz von GFP-exprimierenden Zellen untersucht. Es fand sich eine im Zeitverlauf zunehmende Einwanderung und Differenzierung von GFP-exprimierenden hämatogenen Zellen zu ramifizierten Mikrogliazellen in der grauen und weißen Substanz. Nach vier Monaten stammten bis zu ein Viertel aller regionalen Mikrogliazellen aus dem transplantierten Knochenmark. Nach fokaler cerebraler Ischämie wanderten deutlich mehr GFP-positive Zellen aus dem Blut in das ischämische Areal ein und differenzierten zu ramifizierten Mikrogliazellen. Diese Ergebnisse implizieren einen Weg für den Transfer des humanen Immunodefizienzvirus in das Zentralnervensystem und offerieren einen nichtinvasiven Weg, genetisch manipulierte Zellen in das adulte Hirnparenchym einzuschleusen. / In order to stably label hematogenous cells, bone marrow was transduced with the gene for the green fluorescent protein (GFP) and transplanted into irradiated recipient mice. The GFP- expression in peripheral blood cells of these animals was stable within the examined time frame of four months. Brains of recipient animals were examined for the presence of GFP- expressing cells at two, four, eight and fifteen weeks after bone marrow transplantation. An increasing migration and differentiation of hematogenous GFP-expressing cells into ramified parenchymal microglia within the white and grey matter was found. After four months, up to quarter of regional microglia were bone-marrow derived. Following focal cerebral ischemia, an increased influx of GFP-positive blood-borne cells differentiating into ramified microglia was observed. These results imply a route for the human immunodeficiency virus into the central nervous system, and they offer a noninvasive approach for the transfer of genetically manipulated cells into the adult brain parenchyma.
395

T-Zell-vermittelte Autoimmunität

Gimsa, Ulrike 26 February 2004 (has links)
Die vorliegende Arbeit befaßt sich mit T-Helferzellen und ihren Interaktionen mit Gewebszellen, wie sie im gesunden Organismus und in Autoimmunerkrankungen auftreten. Es werden Fragen der Toleranzinduktion durch orale Gabe von Antigenen, speziell der oralen Verabreichung von Collagen II bei Patienten mit rheumatoider Arthritis diskutiert. Eine Immundeviation als Mittel, inflammatorische Th1-Zellantworten in anti-inflammatorische Th2-Zellantworten zu verwandeln, kann durch Eingriffe in die T-Zell-Signaltransduktion erreicht werden. Es werden neue Ansätze zu Mechanismen diskutiert, die das Immunprivileg des Zentralnervensystems gewährleisten. Die hirnresidenten Immunzellen, zu denen Mikrogliazellen und Astrozyten zählen, besitzen Eigenschaften, die eine Entzündung unwahrscheinlich machen. Sie müssen aktiviert werden, um Antigene präsentieren zu können. In organtypischen entorhinal-hippocampalen Schnittkulturen konnte gezeigt werden, dass Mikrogliazellen durch Th1-Zellen aktiviert, von Th2-Zellen hingegen deaktiviert werden. Die Möglichkeit, dass die Costimulation über CD80 oder CD86 differentielle Effekte auf den Charakter der Immunantwort hat, wird diskutiert. Der Einfluß von pro-inflammatorischen Zytokinen auf Mikrogliaaktivierung und den Erhalt von Nervenfasern wurde ebenfalls in Hirnschnittkulturen untersucht. Astrozyten sind wesentlicher Bestandteil der Blut-Hirn-Schranke. Diese kann jedoch von aktivierten T-Zellen überwunden werden. In dieser Arbeit wird gezeigt, dass Astrozyten über eine Expression von CD95L in aktivierten T-Zellen Apoptose induzieren können. Davon sind jedoch nicht alle T-Zellen betroffen. Andererseits wird eine T-Zellproliferation unterdrückt, indem T-Zellen unter Astrozyteneinfluß verstärkt CTLA-4 exprimieren, was einen Zellzyklusarrest zur Folge hat. Darüber hinaus ist eine verstärkte Produktion von Nervenwachstumfaktor (NGF; nerve growth factor) nach antigenspezifischer Interaktion von Astrozyten mit Th1- und Th2-Zellen als zusätzliches Mittel, eine Neuroinflammation einzudämmen, anzusehen. Die Arbeit stellt diese Ergebnisse in fünf Kapiteln dar, welche gleichzeitig eine Einführung in die als Anlagen enthaltenen zehn Publikationen geben. / This thesis deals with T helper cells and their interactions with tissue cells as they occur in the healthy organism and in autoimmune diseases. Questions of tolerance induction by oral application of antigens are discussed especially oral treatment with type II collagen in patients with rheumatoid arthritis. In order to transform inflammatory Th1 responses into anti-inflammatory Th2 responses, immune deviation can be reached by interference with T-cell signal transduction. New approaches towards the different ways that the immune privilege of the central nervous system is maintained are discussed. The resident immune cells, i.e. microglia and astrocytes possess properties that make inflammation unlikely. They have to be activated in order to present antigens. It has been shown in organotypic entorhinal-hippocampal slice cultures that Th1 cells activate whereas Th2 cells deactivate microglial cells. The possibility is discussed as to whether costimulation via CD80 or CD86 differentially influences the character of the immune response. The influence of pro-inflammatory cytokines on microglial activation and preservation of nerve fibers has also been studied in brain slice cultures. Astrocytes are an essential part of the blood-brain barrier, which can be crossed by activated T cells. The thesis shows that astrocytes can induce apoptosis in activated T cells via expression of CD95L. However, not all T cells are affected. T cell proliferation is suppressed by increased CTLA-4 expression in T cells under the influence of astrocytes, resulting in a cell cycle arrest. An additional mechanism of confining neuroinflammation is increased production of the nerve growth factor (NGF) following antigen-specific interaction of astrocytes and Th1 and Th2 cells, respectively. These results are presented in five chapters that also introduce the ten attached publications.
396

Untersuchungen zur strukturellen und funktionellen Plastizität des 20S-Proteasoms der Maus und seiner Modulierung durch den Proteasomaktivator PA28

Stohwasser, Ralf 17 November 2000 (has links)
Die Studie beinhaltet eine biochemisch-molekularbiologische Analyse des 20S-Proteasoms und seiner Aktivierung durch Proteine der PA28-Familie. Das 20S-Proteasom ist die zentrale Epitop-prozessierende cytosolisch-nukleäre Protease des MHC-Klasse-I-Antigenpräsentationsweges. In Mikroglia, wie auch in anderen Zellen, unterliegt das Proteasom einer Interferon-g-(IFN-g)-vermittelten strukturellen Plastizität, d.h. einer Substitution der Untereinheiten der Aktiven Zentren. Durch diesen Austauschmechanismus werden proteolytische Schnittpräferenzen modifiziert, was für die Hierarchie von cytotoxischen T-Zellantworten von Bedeutung ist. Lipopolysaccharide (LPS) bewirken in Mikroglia ebenfalls Veränderungen der proteasomalen Zusammensetzung des 20S-Komplexes und seines PA700-Aktivators. Dies ist ein Hinweis auf die Rolle des Proteasoms auch bei der Prozessierung von Antigenen des endolysosomalen Antigenpräsentationsweges. Die Modulation der Zusammensetzung des 20S-Proteasoms in Mikroglia durch IFN-g und LPS ist ein weiterer Beleg für die Rolle der Mikroglia bei der zellulären Immunantwort im Zentralnervensystem. Funktionen des Proteasoms in der MHC-Klasse-I-Antigenpräsentation werden durch den Proteasomaktivator PA28 optimiert. Die PA28-Proteinfamilie besteht aus den Proteinen PA28a, PA28b und PA28g. Diese Studie trägt - basierend auf kinetischen Modellierungen, Mutagenese- und Protein-Protein-Interaktionsstudien und Untersuchungen zur MHC-Klasse-I-Antigen-präsentation in PA28-Transfektanten - zur funktionellen Neubewertung dieser drei Proteine bei. Die drei PA28-Proteine sind autonome Aktivatoren des Proteasoms. Heteromere PA28ab-Komplexe verursachen eine stärkere Aktivierung des Proteasoms als die homomeren PA28a-oder PA28b-Komplexe. Das PA28g-Protein ist in vitro ein schwacher Aktivator verschiedener proteasomaler Peptidaseaktivitäten, der dennoch in unserem in vivo-Modell eine verbesserte MHC-Klasse-I-Antigenpräsentation bewirkt. Kinetische Argumente sprechen für Funktionen der PA28a und PA28b-Proteine als Translokasen für Peptidsubstate und -produkte des Proteasoms. Anhand des HBx-Proteins des Hepatitis B-Virus wird die Möglichkeit illustriert, das vorgestellte Modell zur Analyse viraler Faktoren anzuwenden, die mit der Aktivierung des Proteasoms durch PA28 interferieren. / The 20S proteasome is the proteolytic core complex of the main cytoplasmic and nuclear protein degradation system. One of the numerous functions assigned to the 20S proteasome is the generation of antigenic peptides from intracellular proteins. MHC class I surface presentation of antigenic peptides is one key event of the cellular immune response. The presented study was aimed on the biochemical and molecular-biological analysis of the 20S proteasome and its activation by regulatory proteins of the PA28 family. In the brain, microglial cells are the major antigen presenting cells and they respond sensitive to pathologic events. Cultured mouse microglia was used as a model to study the correlation between microglial activation parameters and structural plasticity of the 20S/26S proteasome. In response to interferon-g , constitutive active site subunits were replaced by inducible subunits as described for other cellular systems. These replacements result in altered proteolytic cleavage preferences, indicating that activated microglia adapts its proteasomal subunit composition to the requirements of an optimized MHC class I epitope processing. Since lipopolysaccharide (LPS), a glycolipid of bacterial pathogens, also alters proteasome subunit composition of the 20S proteasome and its activator PA700, a function of microglial proteasome in processing of antigens of the endolysosomal pathway has been postulated. The modulation of the 20S proteasome subunit composition indicates that microglia is part of the cellular immune response in the central nervous system. The proteasome activator PA28 has been reported to optimize MHC class I antigen presentation. The PA28 protein family is composed of three proteins: PA28a, PA28b and PA28b. Based on kinetic modelling approaches, mutagenesis of activator proteins, protein-protein interaction studies and investigation of MHC class I antigen presentation in PA28-transfected cell lines a evaluation of functions of these three proteins has been performed. In vitro investigations revealed that the recombinant PA28 proteins are activators of peptidase activities of the proteasome. Heteromeric PA28ab complexes are stronger activators than homomeric PA28a o PA28b complexes. Recombinant PA28g is a weak activator of several peptidase activities. Nevertheless, in PA28g transfected B8-fibroblasts preliminary results indicate an improved MHC class I presentation. Based on kinetic evidence, a model has been presented indicating that PA28a and PA28b proteins act as peptide translocases, performing the import of substrates or the export of products into the catalytic chamber of the 20S proteasome. Finally, as examplified with the HBx protein of Hepatitis B virus, the opportunity is presented to use an in vitro reconstitution system of proteasomal activation to examine viral proteins interfering with proteasomal activation.
397

Proliferation von Mikrogliazellen und Astrozyten im Gyrus dentatus der Ratte nach experimenteler Läsion des entorhinalen Kortext

Grampp, Anne 06 October 2000 (has links)
Die Läsion des entorhinalen Kortex bei adulten Ratten induziert in der deafferenzierten Molekularschicht des Gyrus dentatus eine Gliaaktivierung und -proliferation. Histochemische Doppelfärbungen auf das astrozytenspezifische Antigen Glial fibrillary acidic protein oder den Mikrogliamarker Griffonia simplicifolia isolectin B4 und Bromodeoxyuridin haben gezeigt, daß die Mikrogliazellzahlen in der Molekularschicht des Gyrus dentatus 3 Tage nach Läsion (dpl) ein Maximum erreichten und 30 dpl auf Kontrollwerte zurückgingen. Die Astrozytenzahlen im ipsilateralen Gyrus dentatus erreichten 30 dpl ein Maximum, ihre größte Proliferationsaktivität war 7 dpl zu beobachten. 100 dpl waren die Astrozytenzahlen auf Kontrollwerte zurückgegangen. Die Gliaproliferation war nicht auf die ipsilaterale Molekularschicht beschränkt, sondern trat auch zu einem bestimmten Grad in der Körnerzellschicht und im kontralateralen Gyrus dentatus auf. Somit ruft eine entorhinale Kortexläsion eine rasche Mikrogliareaktion und eine langanhaltende Astrozytenaktivierung in der deafferenzierten Terminationszone des Tractus perforans hervor. Schließlich ist zu erwähnen, daß Gliaproliferation nach entorhinaler Läsion einem komplexen zeitlichen und räumlichen Muster folgt, das bei Prozessen der neuronalen und axonalen Reorganisation auftritt. / Entorhinal cortex lesion of adult rats induces glial activation and proliferation in the deafferented dentate molecular layer. Double-labelling immunocytochemistry for the astrocyte-specific antigen glial fibrillary acidic protein or the microglial cell marker Griffonia simplicifolia isolectin B4 with bromodexyuridine detection revealed that microglia counts and the proliferation rate in the ipsilateral dentate gyrus reached a maximum in the molecular layer at 3 days post-lesion (dpl) and returned to control levels by 30 dpl. Astrocyte counts in the ipsilateral dentate gyrus peaked at 30 dpl, with maximum proliferation at 7 dpl. At 100 dpl the astrocyte count had reverted to control levels. Glial proliferation was not restricted to the ipsilateral molecular layer but also occurred to some degree in the granule cell layer and the contralateral dentate gyrus. Thus entorhinal cortex lesion induces a rapid microglial reaction and long-lasting astrocyte activation in the deafferented termination zone of the perforant path. To conclude, glial proliferation after entorhinal cortex lesion follows a complex temporal and spatial pattern that coincides with processes of neuronal and axonal reorganization.
398

Encefalite viral induzida pelo vírus da dengue em camundongos suíços albinos: a resposta inflamatória do sistema nervoso central do hospedeiro neonato

TURIEL, Maíra Catherine Pereira 14 October 2011 (has links)
Submitted by Ana Rosa Silva (arosa@ufpa.br) on 2012-07-23T17:20:56Z No. of bitstreams: 2 Dissertacao_EncefaliteViralInduzida.pdf: 5417139 bytes, checksum: fe2793fc67a8b75aaa720b7b4ba15b48 (MD5) license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) / Approved for entry into archive by Ana Rosa Silva(arosa@ufpa.br) on 2012-07-23T17:21:44Z (GMT) No. of bitstreams: 2 Dissertacao_EncefaliteViralInduzida.pdf: 5417139 bytes, checksum: fe2793fc67a8b75aaa720b7b4ba15b48 (MD5) license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) / Made available in DSpace on 2012-07-23T17:21:44Z (GMT). No. of bitstreams: 2 Dissertacao_EncefaliteViralInduzida.pdf: 5417139 bytes, checksum: fe2793fc67a8b75aaa720b7b4ba15b48 (MD5) license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) Previous issue date: 2011 / CNPq - Conselho Nacional de Desenvolvimento Científico e Tecnológico / Para estudar a resposta imune inata produzida especificamente no interior do SNC em desenvolvimento, evitando a influencia do sistema imune, empregamos modelo de infeccao viral induzida pela inoculacao intracerebral do virus da dengue em camundongos neonatos. Oito camundongos lactentes de dois dias de idade da espécie Mus musculus e variedade suica albina foram inoculados por via intracerebral com homogenado cerebral infectado com a especie Flavivirus (DENV3 genotipo III). Outro conjunto de animais foi utilizado como controle (nao infectado) e inoculado com igual volume de homogenado cerebral nao infectante e mantidos nas mesmas condicoes dos infectados. Decorridos 7 dias apos a infeccao os camundongos doentes foram sacrificados e tiveram seus cerebros processados para imunomarcacao de astrocitos e microglias. Quantificou-se a resposta imune glial no stratum lacunosum molecular (Lac Mol), radiatum (Rad) e pyramidale (Pir) de CA1-2 do hipocampo e na camada molecular do giro denteado (GDMol) usando o fracionador optico para estimar o numero de microglias e astrocitos em animais infectados e controles. Intensa astrocitose reativa e intensa ativacao microglial foram encontradas em animais neonatos com sinais clinicos de meningoencefalite. Entretanto, embora tenham sido maiores as estimativas do numero de microglias ativadas nos infectados (Inf) do que nos animais controles (Cont) nas camadas GDMol (Inf: 738,95 } 3,07; Cont: 232,73 } 70,38; p = 0,0035), Rad (Inf: 392,49 } 44,13; Cont: 62,76 } 15,86; p = 0,0004), em relacao ao numero total de microglias (ativadas ou nao) apenas o stratum radiatum mostrou diferença significante (Inf: 6.187,49 } 291,62; Cont: 4.011,89 } 509,73; p = 0,01). Por outro lado apenas a camada molecular do giro denteado mostrou diferenca no numero de astrocitos (Inf: 8.720,17 } 903,11; Cont: 13.023,13 } 1.192,14; p = 0,02). Tomados em conjunto os resultados sugerem que a resposta imune inata do camundongo neonato a encefalite induzida pelo virus da dengue (sorotipo 3, genotipo III) esta associada a um maior aumento do numero de microglias do que de astrocitos reativos e essa mudanca e dependente da camada e da regiao investigada. As implicacoes fisiopatologicas desses achados permanecem por ser investigadas. / To study the innate immune response produced specifically within the developing CNS, avoiding the influence of the immune system, employ viral infection model induced by intracerebral inoculation of dengue virus in neonatal mice. Eight newborn mice two days old of the species Mus musculus and Swiss albino variety were inoculated intracerebrally with brain homogenate infected with Flavivirus species (DENV3 genotype III). Another group of animals was used as control (uninfected) and inoculated with an equal volume of non-infectious brain homogenate and maintained under the same conditions of those infected. After 7 days after infection the mice were sacrificed and patients have had their brains processed for immunostaining of astrocytes and microglia. We quantified the glial and astrocitic immune response in the stratum lacunosum molecular (Lac Mol), radiatum (Rad) and pyramidale (Pir) of hippocampus and in the stratum molecular of dentate gyrus (DGMol) using the optical ractionator to estimate the number of microglias and astrocytes in the hippocampus of infected and control animals. Intense reactive astrocytosis and microglial activation were associated with clinical signs of meningoencephalitis in neonate subjects. Although the number of activated microglia to be higher in infected than in control subjects in the GDMol (Inf:738,95 } 83,07 vs Cont: 232,73 } 70,38; p = 0,0035), Rad (Inf: 392,49 } 44,13 vs Cont: 62,76 } 15,86; p = 0,0004) the number of total microglias (activated or not) was different only in the stratum radiatum (Inf: 6.187,49 } 291,62; Cont: 4.011,89 } 509,73;p = 0,01). On the other hand the total number of astrocytes was higher in control than in infected subjects only in the DGMol (Inf: 8.720,17 } 903,11; Cont: 13.023,13 }1.192,14; p = 0,02). Taken together the results suggest that the immune innate response in neonate mice after encephalitis induced by DENV3 genotype III is associated with a higher increase in the activated microglias than astrocytes in a regional and laminardependent fashion. The patophysiology implications of these events remain to be investigated.
399

Estudo da neuropatologia induzida pelo vírus Marabá em modelo murino

FARIAS, Alexandre Maia de 28 February 2014 (has links)
Submitted by Cleide Dantas (cleidedantas@ufpa.br) on 2014-06-23T14:32:32Z No. of bitstreams: 2 license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) Dissertacao_EstudoNeuropatologiaInduzida.pdf: 2723680 bytes, checksum: 7ec0e36fe9197262d43f318f6e1c8b98 (MD5) / Approved for entry into archive by Ana Rosa Silva (arosa@ufpa.br) on 2014-07-31T17:00:08Z (GMT) No. of bitstreams: 2 license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) Dissertacao_EstudoNeuropatologiaInduzida.pdf: 2723680 bytes, checksum: 7ec0e36fe9197262d43f318f6e1c8b98 (MD5) / Made available in DSpace on 2014-07-31T17:00:08Z (GMT). No. of bitstreams: 2 license_rdf: 23898 bytes, checksum: e363e809996cf46ada20da1accfcd9c7 (MD5) Dissertacao_EstudoNeuropatologiaInduzida.pdf: 2723680 bytes, checksum: 7ec0e36fe9197262d43f318f6e1c8b98 (MD5) Previous issue date: 2014 / UEPA - Universidade do Estado do Pará / UFPA - Universidade Federal do Pará / IEC - Instituto Evandro Chagas / O vírus Marabá (Be AR 411459) é um Vesiculovírus (VSV), membro da família Rhabdoviridae, isolado em 1983, de um pool de flebotomíneos capturado em Marabá-PA pela Seção de Arbovírus do Instituto Evandro Chagas. Na literatura pouco se tem sobre neuropatologia experimental induzida pelo vírus Marabá, apesar dos 30 anos de isolamento. Um único estudo, porém, revelou que a infecção viral em camundongos recém-nascidos provoca necrose e picnose em neurônios em várias regiões do sistema nervoso central (SNC) O objetivo do presente trabalho foi investigar a distribuição do vírus Marabá no SNC, a ativação microglial e astrocitária, aspectos histopatológicos; e a expressão de citocinas e óxido nítrico (NO), na encefalite induzida pelo vírus Marabá em camundongo BALB/c adultos. Para tanto, foram realizados processamentos de amostras para análise histopatologica; immunohistoquímica para marcação de microglia, astrócitos e antígeno viral; testes de quantificação de citocinas e NO; e análises estatísticas. Os resultados demonstraram que os animais infectados (Ai) 3 dias após a inoculação (d.p.i.) apresentam discreta marcação do antígeno viral, bem como quanto a ativação de microglia e astrócitos no SNC. Por outro lado, nos Ai 6 d.p.i. a marcação do antígeno viral foi observada em quase todas regiões encefálicas, observando-se intensa ativação microglial nestes locais, embora a astrogliose tenha sido menor. Edema, necrose e apoptose de neurônios foram observados principalmente no bulbo olfatório, septo interventrícular e córtex frontal dos Ai 6 d.p.i. A quantificação dos níveis de IL-12p40, IL-10, IL-6, TNF- α, INF-ү, MCP-1 e de NO mostrou aumentos significativos nos Ai 6 d.p.i., quando comparados aos animais controles e Ai 3 d.p.i.. Por outro lado, os níveis de TGF-β, importante imunossupressor, não foi significativo em todos os grupos e tempos avaliados (3 e 6 d.p.i.). Estes resultados indicam que o vírus Marabá pode infectar diversas regiões do SNC de camundongo BALB/c adulto 6 d.p.i., produzindo alterações anátomo-patológicas e uma forte resposta imune inflamatória que pode ser letal para o animal. / The Marabá virus (Be AR 411459) is an Vesiculovirus (VSV), member of the Rhabdoviridae family, isolated in 1983 from a pool of sandflies captured in Marabá - PA by Section Arbovirus the Evandro Chagas Institute. In literature There are few studies on experimental neuropathology Marabá virus induced, despite 30 years of isolation. A single study, however, revealed that viral infection in newborn mice causes necrosis and pyknosis in neurons in several regions of the central nervous system (CNS). The objective of this study was to investigate the distribution of Marabá virus in the CNS, reactive microglia and astrocytes, histopathologic features, and the expression of cytokines and nitric oxide (NO), in Marabá virus-induced encephalitis in BALB / c mice. Thus was performed processing of samples for histopathological examination; Immunohistochemistry for observation of microglia, astrocytes and viral antigen; tests for quantification of cytokines and NO, and statistical analyzes. The results showed that infected animals (Ai) 3 days after inoculation (d.p.i.) with discrete labeling of viral antigen, as well as the activation of microglia and astrocytes in the CNS. Moreover , in Ai 6 d.p.i. marking the viral antigen was observed in almost all brain regions, with intense microglial activation in these locations, although was less astrogliosis. Edema, necrosis and apoptosis of neurons were mainly observed in the olfactory bulb, septum and frontal cortex of Ai 6 d.p.i. Quantification of IL - 12p40, IL- 10, IL- 6, TNF- α, INF- ү, MCP-1 and NO, showed significant increases in Ai 6 d.p.i., when compared with controls animals and Ai 3 d.p.i. On the other hand, TGF-β, important immunosuppressant, has not been significant in all groups and evaluated times (3 and 6 d.p.i.). These results indicate that Marabá virus can infect various CNS regions of BALB /c mouse adult 6 d.p.i., producing anatomical and pathological changes and strong inflammatory immune response that can be lethal to the animal.
400

Fenótipos microgliais e tratamento com minociclina após isquemia focal induzida por microinjeções de endotelina-1 no córtex motor de ratos adultos

DIAS, Michelle Nerissa Coelho 23 December 2016 (has links)
Submitted by Cássio da Cruz Nogueira (cassionogueirakk@gmail.com) on 2017-03-27T14:16:04Z No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) Dissertacao_FenotiposMicrogliaisTratamento.pdf: 5341802 bytes, checksum: 9c43c6974bd1c1aa2a1870b9a38dd2c2 (MD5) / Approved for entry into archive by Edisangela Bastos (edisangela@ufpa.br) on 2017-04-10T14:30:37Z (GMT) No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) Dissertacao_FenotiposMicrogliaisTratamento.pdf: 5341802 bytes, checksum: 9c43c6974bd1c1aa2a1870b9a38dd2c2 (MD5) / Made available in DSpace on 2017-04-10T14:30:37Z (GMT). No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) Dissertacao_FenotiposMicrogliaisTratamento.pdf: 5341802 bytes, checksum: 9c43c6974bd1c1aa2a1870b9a38dd2c2 (MD5) Previous issue date: 2016-12-23 / CAPES - Coordenação de Aperfeiçoamento de Pessoal de Nível Superior / As células microgliais são componentes fundamentais do sistema imune inato que fazem, continuamente, uma varredura completa do parênquima neural em busca de alterações teciduais sutis para a preservação da integridade tecidual. Estes macrófagos residentes do sistema nervoso central (SNC), correspondem a cerca de 20% da população celular encefálica. Em desordens neurais agudas e crônicas, incluindo lesão cerebral e da medula espinhal, acidente vascular encefálico experimental (AVE), doenças de Alzheimer, Parkinson e Huntington, células microgliais são ativadas, o que é refletido em alterações morfológicas e bioquímicas. Nestas doenças, acredita-se que a ativação microglial contribua tanto para neuroproteção como para a exacerbação do processo lesivo. Diversas evidências experimentais sugerem que a ativação microglial excessiva pode contribuir para a exacerbação do processo lesivo após AVE experimental. No entanto, nossos estudos prévios sugerem que as células microgliais podem liberar fatores tróficos após AVE experimental em regiões anatomicamente distintas da população microglial com fenótipos prejudiciais. Inexistem estudos que tenham descrito os padrões de reatividade dos diferentes fenótipos microgliais após isquemia experimental. No presente projeto, investigaremos os padrões de ativação de células microgliais apresentando fenótipos benéficos e prejudiciais, avaliando que populações microgliais são inibidas pela tetraciclina minociclina após isquemia cortical focal. Os animais foram submetidos à isquemia focal no córtex motor por microinjeções de 80 pMol de endotelina-1 (ET-1). Os mesmos foram sacrificados 7, 14 e 30 dias após a indução isquêmica. Foi feita a técnica de imuno-histoquímica para a observação da perda neuronal (NeuN+) e imunofluorescência dupla para avaliar a densidade de células microgliais M1 e M2 na área lesionada. A análise estatística da densidade de células NeuN+ foi feita pelo test t de Student dos grupos de 07 dias de sobrevida controle e tratado enquanto que a análise das células microgliais M1 e M2 foram feitas pela análise de variância dos grupos de 07, 14 e 30 dias sobrevida controle, adotando em todos os testes o nível de significância P<0.05. Foi comprovada uma preservação no numero de neurônios presentes no parênquima lesionado dos animais tratados com minociclina. Foi observada uma diminuição no numero de células microgliais M1 nos animais tratados com minociclina, sugerindo que o fármaco pode apresentar efeitos em vias de expressão dos fenótipos microgliais M1. Entretanto, quando comparados os animais de 07, 14 e 30 dias controle, há um aumento do numero desse fenótipo M1 que se estende do 07 dia até o 30 dia de sobrevida. Concluímos que há um efeito neuroprotetor do fármaco minociclina relacionada ao acidente vascular encefálico, sugerindo que esse fármaco pode estar envolvido na modulação dos fenótipos microgliais necessitando de maiores estudos sobre a sua função nas vias de expressão desses fenótipos. / Microglial cells are fundamental components of the innate immune system that continually make a complete scan of the neural parenchyma in search of subtle tissue changes for the preservation of tissue integrity. These resident macrophages of the central nervous system (CNS) correspond to about 20% of the encephalic cell population. In acute and chronic neural disorders, including brain and spinal cord injury, experimental stroke, Alzheimer's, Parkinson's and Huntington's disease, microglial cells are activated, which is reflected in morphological and biochemical changes. In these diseases, it is believed that microglial activation contributes to both neuroprotection and exacerbation of the injury process. Several experimental evidences suggest that excessive microglial activation may contribute to the increase of the injury process after experimental stroke. However, our previous studies suggest that microglial cells may release trophic factors after experimental stroke in anatomically distinct regions of the microglial population with deleterious phenotypes. There are no studies that have described the reactivity patterns of the different microglial phenotypes after experimental ischemia. In the present project, we will investigate the patterns of activation of microglial cells presenting beneficial and harmful phenotypes, evaluating which microglial populations are inhibited by tetracycline minocycline after focal cortical ischemia. The animals were submitted to focal ischemia in the motor cortex by microinjections of 80 pMol of endothelin-1 (ET- 1). They were sacrificed 7, 14 and 30 days after ischemic induction. The immunohistochemistry technique for the observation of neuronal loss (NeuN +) and double immunofluorescence to evaluate the density of M1 and M2 microglial cells in the lesioned area was used. Statistical analysis of NeuN+ cell density was performed by the Student's t-test from the 7-day of control and treated groups while the analysis of the M1 and M2 microglial cells were done by the analysis of variance in the 07, 14 and 30 control groups, adopting in all tests the level of significance P <0.05. A preservation in the number of neurons in the injured parenchyma of the animals treated with minocycline was confirmed. A decrease in the number of M1 microglial cells in minocycline-treated animals was observed, suggesting that the drug may present effects on expression pathways of M1 microglial phenotypes. However, when the animals of the control group of 07, 14 and 30 are compared, there is an increase in the number of this M1 phenotype that extends from day 7 to day 30. We conclude that there is a neuroprotective effect of the drug minocycline when associated to stroke, suggesting that this drug may be involved in the modulation of microglial phenotypes requiring further studies on its function in the pathways of expression of these phenotypes.

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