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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.
61

A Miniature Wireless Neural Recording and Stimulating System for Chronic Implantation in Freely Moving Animals

Kanchwala, Mustafa Ashiq Hussain January 2018 (has links)
No description available.
62

Alterations in the Intestinal Microbiota Can be Detected by and Influence Specific Brain Regions

Collins, Josh 10 1900 (has links)
<p>Emerging evidence indicates that the commensal microbiota communicates with the brain and influences behavior. In animal models, perturbation of the microbiota is accompanied by changes in brain-derived neurotrophic factor (BDNF) levels in the brain. However, underlying mechanisms are unknown. We investigated whether vagal-parasympathetic and sympathetic branches of the autonomic nervous system are involved in the microbiota-gut-brain signalling and attempt to identify specific brain regions that are responsive to alterations in the intestinal microbiota. Specific pathogen-free Balb/c mice, with or without surgical vagotomy or chemical sympathectomy, received oral non-absorbable antimicrobials (ATM) <em>ad libitum</em> for 7 days. Behavior was tested on day 7 in the light/dark preference and step-down latency tests. Specific brain regions were sectioned and stained for the neuronal activation marker, <em>c-fos</em>. Perturbation of the microbiota significantly enhanced the exploratory behavior of mice in both tests and increased the expression of <em>c-fos</em> and phosphorylated <em>c-fos</em> in the hippocampus and dentate gyrus. <em>c-fos</em> expression in the nucleus of the solitary tract was unaffected and neither vagal-parasympathetic nor sympathetic neurotransmission were required for induction of the behavioral change following perturbation of the microbiota. Instability of the commensal microbiota enhances the activation of the hippocampal formation and influences host behavior in a manner that is independent of vagal-parasympathetic and sympathetic autonomic neurotransmission.</p> / Master of Health Sciences (MSc)
63

Chronic recording of vagus nerve activity in rats using carbon nanotube yarn electrodes

Marmerstein, Joseph Theodore 25 January 2022 (has links)
No description available.
64

Effets neurophysiologiques de la stimulation du nerf vague : implication dans le traitement de la dépression résistante et optimisation des paramètres de stimulation

Manta, Stella 01 1900 (has links)
La dépression est une pathologie grave qui, malgré de multiples stratégies thérapeutiques, demeure résistante chez un tiers des patients. Les techniques de stimulation cérébrale sont devenues une alternative intéressante pour les patients résistants à diverses pharmacothérapies. La stimulation du nerf vague (SNV) a ainsi fait preuve de son efficacité en clinique et a récemment été approuvée comme traitement additif pour la dépression résistante. Cependant, les mécanismes d’action de la SNV en rapport avec la dépression n’ont été que peu étudiés. Cette thèse a donc eu comme premier objectif de caractériser l’impact de la SNV sur les différents systèmes monoaminergiques impliqués dans la pathophysiologie de la dépression, à savoir la sérotonine (5-HT), la noradrénaline (NA) et la dopamine (DA), grâce à l’utilisation de techniques électrophysiologiques et de la microdialyse in vivo chez le rat. Des études précliniques avaient déjà révélé qu’une heure de SNV augmente le taux de décharge des neurones NA du locus coeruleus, et que 14 jours de stimulation sont nécessaires pour observer un effet comparable sur les neurones 5-HT. Notre travail a démontré que la SNV modifie aussi le mode de décharge des neurones NA qui présente davantage de bouffées, influençant ainsi la libération terminale de NA, qui est significativement augmentée dans le cortex préfrontal et l’hippocampe après 14 jours. L’augmentation de la neurotransmission NA s’est également manifestée par une élévation de l’activation tonique des récepteurs postsynaptiques α2-adrénergiques de l’hippocampe. Après lésion des neurones NA, nous avons montré que l’effet de la SNV sur les neurones 5-HT était indirect, et médié par le système NA, via l’activation des récepteurs α1-adrénergiques présents sur les neurones du raphé. Aussi, tel que les antidépresseurs classiques, la SNV augmente l’activation tonique des hétérorécepteurs pyramidaux 5-HT1A, dont on connait le rôle clé dans la réponse thérapeutique aux antidépresseurs. Par ailleurs, nous avons constaté que malgré une diminution de l’activité électrique des neurones DA de l’aire tegmentale ventrale, la SNV induit une augmentation de la DA extracellulaire dans le cortex préfrontal et particulièrement dans le noyau accumbens, lequel joue un rôle important dans les comportements de récompense et l’hédonie. Un deuxième objectif a été de caractériser les paramètres optimaux de SNV agissant sur la dépression, en utilisant comme indicateur le taux de décharge des neurones 5-HT. Des modalités de stimulation moins intenses se sont avérées aussi efficaces que les stimulations standards pour augmenter l’activité électrique des neurones 5-HT. Ces nouveaux paramètres de stimulation pourraient s’avérer bénéfiques en clinique, chez des patients ayant déjà répondu à la SNV. Ils pourraient minimiser les effets secondaires reliés aux périodes de stimulation et améliorer ainsi la qualité de vie des patients. Ainsi, ces travaux de thèse ont caractérisé l’influence de la SNV sur les trois systèmes monoaminergiques, laquelle s’avère en partie distincte de celle des antidépresseurs classiques tout en contribuant à son efficacité en clinique. D’autre part, les modalités de stimulation que nous avons définies seraient intéressantes à tester chez des patients recevant la SNV, car elles devraient contribuer à l’amélioration des bénéfices cliniques de cette thérapie. / Depression is a severe psychiatric disorder, in which a third of patients do not achieve remission, despite the wide variety of therapeutic strategies that are currently available. Brain stimulation has emerged as a promising alternative therapy in cases of treatment resistance. Vagus nerve stimulation (VNS) has shown promise in treating resistant-depressed patients, and it has been approved as an adjunctive treatment for resistant depression. However, the mechanism of action by which VNS exerts its antidepressant effects has remained elusive. The first goal of this thesis was therefore to characterize the impact of VNS on monoaminergic systems known to be implicated in the pathophysiology of depression such as serotonin (5-HT), norepinephrine (NE) and dopamine (DA), by means of electrophysiologic techniques and microdialysis in the rat brain. Previous research has indicated that one hour of VNS increased the basal firing activity of locus coeruleus NE neurons and, secondarily, that of 5-HT neurons, but only after 14 days of stimulation. Our work demonstrated that VNS also modified the firing pattern of NE neurons towards a bursting mode of discharge. This mode of firing was shown to lead to enhanced NE release in the prefrontal cortex and hippocampus after 14 days. Increased NE neurotransmission was also evidenced by enhanced tonic activation of postsynaptic α2-adrenoceptors in the hippocampus. Selective lesioning of NE neurons was then used to demonstrate that the effects of VNS on the 5-HT system were indirect, and mediated by the activation of α1-adrenoceptors located on the dorsal raphe 5-HT neurons. Similar to classical antidepressants, VNS also enhanced the tonic activation of pyramidal 5-HT1A heteroreceptors, which are known to play a key role in the antidepressant response. We also found that in spite of a diminished firing activity of ventral tegmental area DA neurons after VNS, extracellular DA levels were significantly elevated in the prefrontal cortex, and particularly in the nucleus accumbens which plays an important role in reward behavior and hedonia. A second objective was to characterize the optimal VNS parameters to treat depression using the firing activity of 5-HT neurons as an indicator. It was found that less stimulation was as effective as the standard levels to increase 5-HT neurons firing rate. These novel parameters could be helpful for clinical application in VNS responsive patients, to potentially minimize and/or even prevent stimulation-related side effects, thus improving their quality of life. In brief, these studies reveal an influence of VNS on all three central monoamine systems, which differs in part from that of classical antidepressants while contributing to the clinical efficacy of this approach. It will also be interesting to determine whether the proposed lower stimulation parameters are as effective in providing antidepressant response in patients receiving VNS, which should contribute to improve the clinical benefits of that therapy.
65

Uso terapêutico de ultrassom abdominal diminui severidade de colite aguda induzida por DSS através da via anti-inflamatória colinérgica

Nunes, Natália Schneider January 2018 (has links)
Introdução: Colite Ulcerativa (UC) é uma Doença Inflamatória Intestinal (DII) caracterizada por uma resposta imune exacerbada, com sintomas como diarreia, perda de peso e sangue nas fezes. Apesar dos medicamentos disponíveis, a remissão da doença nem sempre consegue ser alcançada e há a necessidade de terapias alternativas. A colite induzida por DSS (Dextran Sulfate Sodium) é um modelo animal utilizado na investigação de novas terapias por sua semelhança à UC humana. DSS provoca dano à barreira epitelial do cólon, induzindo uma resposta imune exacerbada; entretanto, o exato mecanismo não está totalmente esclarecido. O Ultrassom Terapêutico (TUS) foi utilizado para tratamento de injúria renal em modelo experimental, sua ação se dá através da estimulação do nervo vago (VN) e consequente ativação da via antiinflamatória colinérgica (CAIP). Uma vez que pacientes com DII podem exibir atividade disfuncional do VN, TUS pode ser investigado como terapia alternativa. Objetivos: Investigar temporalmente o perfil clínico, proteômico, histológico e imunológico da colite aguda induzida por DSS; e determinar os efeitos de TUS na colite induzida por DSS. Métodos: No primeiro estudo, a severidade da colite foi avaliada pela administração de DSS 1-3%, observando a resposta clínica e histológica. A análise temporal de DSS 3% incluiu uma avaliação proteômica e histológica do cólon, e a resposta imune celular no baço, linfonodo mesentérico (MLN) e cólon. No segundo estudo, utilizando o modelo de DSS 2%, TUS foi aplicado no abdômen dos animais e foram observados os sintomas clínicos, dano histológico, proteômica do cólon e respostas imunes celulares no baço, MLN e cólon. Animais esplenectomizados ou knockout para a7nAChR (marcador clássico para ativação de CAIP) foram utilizados. Resultados: No primeiro estudo, observou-se que a severidade da doença foi aumentada seguindo concentrações de 1-3% DSS. A análise temporal de DSS 3% demonstrou que os macrófagos (F4/80+) se apresentam como a primeira resposta celular, seguidos por células T CD25+, CD4+ e CD8+. A piora clínica da doença correspondeu ao aumento progressivo de fatores pró-inflamatórios e dano tecidual no cólon, exceto no dia 8. Foram observados menores níveis dos marcadores de células T CD25+, CD4+ e CD8+ no MLN e/ou baço, sugerindo a ocorrência de tropismo destas células para o intestino. No segundo estudo, a aplicação de TUS diminuiu a severidade da doença através da melhora de sintomas clínicos, danos teciduais e encurtamento do cólon. A proteômica do cólon demonstrou uma resposta anti-inflamatória durante a fase de injúria (D0-7), induzindo uma resolução acelerada da doença na fase de recuperação (D8-14). TUS diminuiu os níveis de células T CD8+ e normalizou os níveis de células T CD25+ no cólon. Animais esplenectomizados não demonstraram melhora clínica ou histológica, enquanto animais a7nAChR KO apresentaram piora da colite experimental. Além disso, TUS aumentou os níveis de células F4/80+a7nAChR+ no intestino de animais WT DSS 2%. Conclusão: Nossos resultados demonstram que a severidade da doença depende da concentração de DSS, relacionada com as respostas clínica, proteômica e imune no modelo animal de DSS 3%; e TUS diminuiu a severidade da colite induzida por DSS presumidamente pela da estimulação do VN e consequente ativação de CAIP através do baço. / Introduction: Ulcerative Colitis (UC) is an Inflammatory Bowel Disease (IBD) characterized by uncontrolled immune response, presenting with symptoms of diarrhea, weight loss and bloody stools. Despite available treatments, UC sustained remission is not achievable and there is still the need for alternative therapies. Dextran Sulfate Sodium (DSS)-induced colitis is a mouse model used to investigate novel therapies, since it closely mimics human UC. DSS damages the colonic epithelial barrier, leading to an exacerbated immune response. However, the exact mechanism is not totally understood. Previous studies showed the use of Therapeutic Ultrasound (TUS) to prevent kidney injury in mice through stimulation of the vagus nerve (VN) and activation of the cholinergic anti-inflammatory pathway (CAIP). Since IBD patients can present with dysfunctional VN activity, TUS could be studied as an alternative therapy. Objectives: To investigate the temporal clinical, proteomic, histological and cellular immune profiles of DSS-induced acute colitis; and to determine the effects of TUS directed toward the VN and spleen in the course of DSS-induced colitis. Methods: First, we analyzed DSS-induced colitis severity by administration of 1-3% DSS, observing the clinical course and histological damage. A time course analysis was performed at 3% DSS, including colon proteomics, colon histology and immune cell responses in the spleen, MLN (mesenteric lymph node) and colon. Next, utilizing 2% DSS in drinking water, we applied TUS over the mice abdomen and analyzed clinical symptoms, histological damage, colon proteomics and immune cell responses in the spleen, MLN and colon. Splenectomized and a7nAChR (key indicator of CAIP activation) KO animals were also used. Results: In the first study, we observed worsening of the disease when increasing DSS concentrations from 1 to 3%. Time course analysis of 3% DSS revealed macrophages to be the first responders, followed by CD25+, CD4+ and CD8+ T cells. Worsening of the disease corresponded to a progressive increase in pro-inflammatory colonic factors and histological damage, except at day 8. Lower levels of CD25+, CD4+ and CD8+ T cells in MLN and/or spleen suggest an immune cell tropism to the gut. In the second study, TUS attenuated DSS induced colitis through amelioration of clinical symptoms, histological damage and colon shortening. Proteomic colon analysis demonstrated an antiinflammatory profile during the injury phase (D0-7), whilst inducing an early resolution of the disease during the recovery phase (D8-14). TUS decreased CD8+ and normalized CD25+ T cell levels in the gut. Splenectomized animals demonstrated no improved clinical and pathological outcomes, and a7nAChR KO mice presented with worsening of the disease. Furthermore, there were increased levels of F4/80+a7nAChR+ cells in the colon of 2% DSS WT mice under TUS treatment. Conclusion: Our results demonstrate that the severity of colitis is dependent on DSS concentration, correlated with clinical, proteomic and cellular immune responses on 3% DSS; and TUS significantly improved DSS-induced acute colitis presumably through stimulation of the VN and consequent activation of CAIP through the spleen.
66

Efeito da programação metabólica por restrição calórica no Núcleo do Trato Solitário de ratos Wistar

Guiati, Isabella Zacarin. January 2018 (has links)
Orientador: José de Anchieta Castro e Horta Júnior / Resumo: O estado nutricional materno durante períodos críticos de desenvolvimento da prole (fetal e neonatal) é considerado um importante indutor de Programação. No sistema nervoso central, as alterações poderiam ocorrer especialmente em áreas importantes para o controle do comportamento alimentar, como o núcleo do trato solitário (NTS) que se desenvolve durante o período embrionário. A sinalização relacionada à saciedade é mediada pelos aferentes primários glutamatérgicos provenientes do estômago e duodeno, imunorreativos ao transportador vesicular de glutamato – tipo 2 (VGLUT2) e modulada por diversos neuropeptídeos como o hormônio concentrador de melanina (MCH) e o transcrito regulado pela cocaína e anfetamina (CART). Assim, nosso objetivo foi comparar a organização citoarquitetônica e a imunorreatividade ao MCH, ao CART e ao VGLUT2 no NTS de ratos cujas mães foram submetidas à restrição calórica durante a gestação e lactação. Para sua execução, foram realizados acasalamentos de ratos adultos da linhagem Wistar para obtenção das proles, as quais foram objeto de estudo. Após a detecção da prenhez, as fêmeas foram separadas para a formação de dois grupos experimentais: grupo controle (GC), dieta normal ad libitum, e grupo restrição calórica (GR), dieta de 50% de restrição em relação ao grupo controle durante os períodos de gestação e lactação. Os filhotes machos, provenientes dos grupos restrição (GR) e controle (GC), foram divididos em quatro subgrupos etários (n=5) de 21, 28, 50 e... (Resumo completo, clicar acesso eletrônico abaixo) / Abstract: Maternal nutritional status during critical periods of offspring development (fetal and neonatal) is considered an important Programming inductor. In the central nervous system, alterations could occur especially in areas important for food behavior control, such as the nucleus of the solitary tract (NTS) that develops during the embryonic period. Signs related to satiety are mediated by glutamatergic primary afferents from the stomach and duodenum, immunoreactive to the vesicular glutamate transporter type 2 (VGLUT2) and modulated by various neuropeptides such as melanin concentrating hormone (MCH) and the transcript regulated by cocaine and amphetamine (CART). So, our objective was to compare the cytoarchitectonic organization and immunoreactivity to MCH, CART and VGLUT2 in the NTS of rats whose mothers were subjected to caloric restriction during pregnancy and lactation. For their execution, mating of adult Wistar rats was carried out to obtain proles, which were the object of study. After detection of pregnancy, the females were separated to form two experimental groups: control group (CG), normal ad libitum diet, and caloric restriction group (GR), a 50% restriction diet in relation to the control group during pregnancy and lactation periods. The male offspring from the restriction (GR) and control (CG) groups were divided into four age groups (n = 5) of 21, 28, 50 and 90 days. The number of animals from each offspring, postnatal weight 1, weight and naso-anal length, fo... (Complete abstract click electronic access below) / Mestre
67

Análise de redes de interação transcricional na substância nigra, locus cerúleo e núcleo dorsal do nervo vago na Doença de Parkinson / Transcriptional interaction network analyses in substantia nigra, locus coeruleus and dorsal nucleus of vagus nerve in Parkinson\'s disease

Corradini, Beatriz Raposo 17 April 2013 (has links)
INTRODUÇÃO: A doença de Parkinson é causada pela perda significativa de neurônios dopaminérgicos na substância nigra e perda celular no locus cerúleo, com perda do neurotransmissor dopamina e continuada deposição de inclusões proteicas nos tecidos cerebrais. A doença tem progressão caudo-rostral, iniciando-se no núcleo dorsal do nervo vago e, em grau menor, nos sistema olfativo, com evolução para o mesencéfalo e posteriormente para o prosencéfalo e neocórtex. Cerca de 90% dos casos são idiopáticos e o principal fator de risco é o envelhecimento. Para se compreender a interação genoma-ambiente e o mecanismo molecular nessa doença têm sido conduzidas investigações dos perfis de expressão gênica global em diversos tecidos-alvo. Essa abordagem de genômica funcional utiliza a tecnologia de DNA microarrays para estudo da expressão gênica e ferramentas de bioinformática para análise dos dados gerados. Neste trabalho foi feita uma análise das redes de interação transcricional em tecidos-alvo da doença de Parkinson utilizando-se amostras post mortem de tecidos cerebrais obtidas de pacientes e controles livres da doença. MÉTODOS: Estudo comparativo das redes de interação transcricional no núcleo dorsal do nervo vago, locus cerúleo e substância nigra entre pacientes com doença de Parkinson idiopática nos estágios Braak 4-5 e controles livres da doença utilizando material de necropsia. Foram utilizados DNA microarrays Agilent de 44 K e a análise estatística comparativa de dos transcritos válidos (TMEV) foi feita no vetor paciente X controle para cada região anatômica sob estudo. Para a análise das redes de interação transcricional dos grupos de pacientes e controles em cada região anatômica utilizou-se o software FunNet e as anotações genômicas do Gene Ontology Consortium. RESULTADOS: Os genes com maior número de ligações gene-gene em cada rede transcricional, ou hubs, foram identificados e correlacionados com sua função biológica e possível papel na doença de Parkinson. A análise comparativa entre o perfil de hubs (número de ligações, posição na rede) em cada região anatômica para pacientes e controles revelou que: i) no núcleo dorsal do nervo vago os hubs principais nas redes de controles e pacientes estão relacionados a funções de manutenção da homeostase cerebral e organização neuronal, ii) no locus cerúleo os hubs principais dos controles são genes ligados à manutenção das funções cerebrais, mobilização de células progenitoras (pericitos) e controle de vias inflamatórias, enquanto que na rede de pacientes esses hubs estão ligados aos processos de endo e exocitose, desenvolvimento neuronal e controle do estresse oxidativo e degradação de proteínas; iii) finalmente, na substância nigra os principais hubs da rede de controles estão envolvidos na proteção contra estresse oxidativo e proteínas não dobradas e na manutenção do sistema dopaminérgico mesodiencefálico, enquanto que na rede de pacientes predominam hubs ligados a processos epigenéticos de envelhecimento mitocondrial, transporte vesicular, neurogênese, inflamação e morte neuronal. CONCLUSÕES: Os resultados da análise de redes de interação transcricional de pacientes e controles em diferentes regiões anatômicas são compatíveis com o modelo de progressão caudo-rostral da doença de Parkinson e apontam para mecanismos compensatórios no núcleo dorsal do nervo vago e locus cerúleo / INTRODUCTION: Parkinson\'s disease is caused by a substantial loss of dopaminergic neurons in the substantia nigra and cell loss in locus coeruleus, concomitant loss of dopamine neurotransmitter and continuing deposition of protein within the brain as intracellular inclusions. The disease has a caudal-rostral progression, beginning in the dorsal nucleus of vagus nerve and, in a less extent, in the olfactory system, progressing to the midbrain and finally to the basal forebrain and the neocortex. About 90% of the cases are idiopathic and the main risk factor is ageing. In order to have a better understanding of the genome-environment interactions and of the molecular mechanisms involved in this disease, the investigation of global gene expression in different target tissues has been conducted. This functional genomic approach is based on DNA microarray technology and on the use of bioinformatics for analyzing the data. In the present work an analysis of transcriptional interaction networks in Parkinson\'s disease target tissues was conducted in post mortem cerebral tissue samples obtained from patients and disease-free controls. METHODS: Comparative study of transcriptional interaction networks in the dorsal nucleus of vagus nerve, locus coeruleus, and substantia nigra of idiopathic Parkinson\'s disease patients in Braak stages 4-5 and disease-free controls using post mortem tissue samples. Agilent 44 K DNA microarrays were used and the statistical comparative analysis of valid transcripts was accomplished (TMEV) in the vector patient X control for each anatomic region under study. In order to analyze the transcriptional interaction networks for patient and control groups in each anatomic region the FunNet software and the Gene Ontology genomic annotations were used. RESULTS: The genes with high number of gene-gene connections in each transcriptional network, or hubs, were identified and related to their biological function and putative role in Parkinson\'s disease. The comparative analysis between hub profiles (number of connections, position in the network) in each anatomic region for patients and controls revealed that: i) in the dorsal nucleus of vagus nerve the main hubs in patient and control networks are related to the maintenance of brain homeostasis and to neuronal organization; ii) in the locus coeruleus the main hubs of control network are related to the maintenance of brain functions, mobilization of progenitor cells (pericytes) and control of inflammatory pathways, whereas in the patient network the main hubs are linked to exo and endocytosis processes, neuronal development and control of oxidative stress and protein degradation; iii) finally, in the substantia nigra the main hubs in the control network are related to protection against oxidative stress and unfolded/misfolded proteins and in the maintenance of the midbrain dopaminergic system, whereas in the patient network the main hubs are related to epigenetic processes of mitochondrial ageing, vesicular transport, neurogenesis and inflammation and neuronal death. DISCUSSION: The results of transcriptional interaction networks analyses performed for patient and control groups in different anatomic regions are compatible with the caudal-rostral model of Parkinson\'s disease progression and point out to compensatory mechanisms acting in vagus nerve and locus coeruleus
68

Análise de redes de interação transcricional na substância nigra, locus cerúleo e núcleo dorsal do nervo vago na Doença de Parkinson / Transcriptional interaction network analyses in substantia nigra, locus coeruleus and dorsal nucleus of vagus nerve in Parkinson\'s disease

Beatriz Raposo Corradini 17 April 2013 (has links)
INTRODUÇÃO: A doença de Parkinson é causada pela perda significativa de neurônios dopaminérgicos na substância nigra e perda celular no locus cerúleo, com perda do neurotransmissor dopamina e continuada deposição de inclusões proteicas nos tecidos cerebrais. A doença tem progressão caudo-rostral, iniciando-se no núcleo dorsal do nervo vago e, em grau menor, nos sistema olfativo, com evolução para o mesencéfalo e posteriormente para o prosencéfalo e neocórtex. Cerca de 90% dos casos são idiopáticos e o principal fator de risco é o envelhecimento. Para se compreender a interação genoma-ambiente e o mecanismo molecular nessa doença têm sido conduzidas investigações dos perfis de expressão gênica global em diversos tecidos-alvo. Essa abordagem de genômica funcional utiliza a tecnologia de DNA microarrays para estudo da expressão gênica e ferramentas de bioinformática para análise dos dados gerados. Neste trabalho foi feita uma análise das redes de interação transcricional em tecidos-alvo da doença de Parkinson utilizando-se amostras post mortem de tecidos cerebrais obtidas de pacientes e controles livres da doença. MÉTODOS: Estudo comparativo das redes de interação transcricional no núcleo dorsal do nervo vago, locus cerúleo e substância nigra entre pacientes com doença de Parkinson idiopática nos estágios Braak 4-5 e controles livres da doença utilizando material de necropsia. Foram utilizados DNA microarrays Agilent de 44 K e a análise estatística comparativa de dos transcritos válidos (TMEV) foi feita no vetor paciente X controle para cada região anatômica sob estudo. Para a análise das redes de interação transcricional dos grupos de pacientes e controles em cada região anatômica utilizou-se o software FunNet e as anotações genômicas do Gene Ontology Consortium. RESULTADOS: Os genes com maior número de ligações gene-gene em cada rede transcricional, ou hubs, foram identificados e correlacionados com sua função biológica e possível papel na doença de Parkinson. A análise comparativa entre o perfil de hubs (número de ligações, posição na rede) em cada região anatômica para pacientes e controles revelou que: i) no núcleo dorsal do nervo vago os hubs principais nas redes de controles e pacientes estão relacionados a funções de manutenção da homeostase cerebral e organização neuronal, ii) no locus cerúleo os hubs principais dos controles são genes ligados à manutenção das funções cerebrais, mobilização de células progenitoras (pericitos) e controle de vias inflamatórias, enquanto que na rede de pacientes esses hubs estão ligados aos processos de endo e exocitose, desenvolvimento neuronal e controle do estresse oxidativo e degradação de proteínas; iii) finalmente, na substância nigra os principais hubs da rede de controles estão envolvidos na proteção contra estresse oxidativo e proteínas não dobradas e na manutenção do sistema dopaminérgico mesodiencefálico, enquanto que na rede de pacientes predominam hubs ligados a processos epigenéticos de envelhecimento mitocondrial, transporte vesicular, neurogênese, inflamação e morte neuronal. CONCLUSÕES: Os resultados da análise de redes de interação transcricional de pacientes e controles em diferentes regiões anatômicas são compatíveis com o modelo de progressão caudo-rostral da doença de Parkinson e apontam para mecanismos compensatórios no núcleo dorsal do nervo vago e locus cerúleo / INTRODUCTION: Parkinson\'s disease is caused by a substantial loss of dopaminergic neurons in the substantia nigra and cell loss in locus coeruleus, concomitant loss of dopamine neurotransmitter and continuing deposition of protein within the brain as intracellular inclusions. The disease has a caudal-rostral progression, beginning in the dorsal nucleus of vagus nerve and, in a less extent, in the olfactory system, progressing to the midbrain and finally to the basal forebrain and the neocortex. About 90% of the cases are idiopathic and the main risk factor is ageing. In order to have a better understanding of the genome-environment interactions and of the molecular mechanisms involved in this disease, the investigation of global gene expression in different target tissues has been conducted. This functional genomic approach is based on DNA microarray technology and on the use of bioinformatics for analyzing the data. In the present work an analysis of transcriptional interaction networks in Parkinson\'s disease target tissues was conducted in post mortem cerebral tissue samples obtained from patients and disease-free controls. METHODS: Comparative study of transcriptional interaction networks in the dorsal nucleus of vagus nerve, locus coeruleus, and substantia nigra of idiopathic Parkinson\'s disease patients in Braak stages 4-5 and disease-free controls using post mortem tissue samples. Agilent 44 K DNA microarrays were used and the statistical comparative analysis of valid transcripts was accomplished (TMEV) in the vector patient X control for each anatomic region under study. In order to analyze the transcriptional interaction networks for patient and control groups in each anatomic region the FunNet software and the Gene Ontology genomic annotations were used. RESULTS: The genes with high number of gene-gene connections in each transcriptional network, or hubs, were identified and related to their biological function and putative role in Parkinson\'s disease. The comparative analysis between hub profiles (number of connections, position in the network) in each anatomic region for patients and controls revealed that: i) in the dorsal nucleus of vagus nerve the main hubs in patient and control networks are related to the maintenance of brain homeostasis and to neuronal organization; ii) in the locus coeruleus the main hubs of control network are related to the maintenance of brain functions, mobilization of progenitor cells (pericytes) and control of inflammatory pathways, whereas in the patient network the main hubs are linked to exo and endocytosis processes, neuronal development and control of oxidative stress and protein degradation; iii) finally, in the substantia nigra the main hubs in the control network are related to protection against oxidative stress and unfolded/misfolded proteins and in the maintenance of the midbrain dopaminergic system, whereas in the patient network the main hubs are related to epigenetic processes of mitochondrial ageing, vesicular transport, neurogenesis and inflammation and neuronal death. DISCUSSION: The results of transcriptional interaction networks analyses performed for patient and control groups in different anatomic regions are compatible with the caudal-rostral model of Parkinson\'s disease progression and point out to compensatory mechanisms acting in vagus nerve and locus coeruleus
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Participação do sistema nervoso parassimpático no metabolismo energético e na proliferação celular em ilhotas pancreáticas de ratos obesos-MSG

Lubaczeuski, Camila 01 August 2013 (has links)
Made available in DSpace on 2017-07-10T14:17:02Z (GMT). No. of bitstreams: 1 kelly Jaque.pdf: 1788989 bytes, checksum: 65d07041b0d9003d6666dd84d7fee873 (MD5) Previous issue date: 2013-08-01 / The growing number of overweight and obesity has led to an increase in the number of patients with insulin resistance and diabetes mellitus type 2. MSG obese rats were glucose intolerant, insulin resistant and theirs pancreatic islets secrete more insulin in response to glucose. Subdiafragmatic vagotomy changes the response of islets to glucose and improves glucose homeostasis, supporting the hypothesis that an unbalance of autonomic nervous system with increased parasympathetic nervous system (PNS) action but a decreased sympathetic nervous system function. Studies showed that the PNS is also involved in &#946;-cell proliferation. Therefore, we investigated of PNS participation, using a subdiafragmatic vagal denervation, upon pancreatic &#946;-cell function and mass regulation, and the body glucose control disruption in MSG-obese rats. For this, Male Wistar rats received during the first five days of life monosodium glutamate (MSG) or saline. Subdiaphragmatic vagotomy was performed at 30 days of life. At 90 days of age, we verified static insulin secretion, pancreas morphometric, ERK expression in islets, glucose homeostasis and lipidis. The MSG treatment caused obesity at 90 days of life. MSG rats presented lower body weight and nasoanal length, increased Lee index and fat depots, normoglycemia, hyperinsulinemia, dyslipidemia, glucose intolerance and insulin resistance when compared to CTL. Vagotomy performed at 30-days of age prevented obesity, fat deposition in the liver and ameliorated glucose tolerance and insulin sensitivity in adult MVAG rats in relation to MSG rats. Islets from MSG rats secreted more insulin at stimulatory glucose concentrations than CTL islets. Histological analysis showed that pancreatic islets from MSG rats were lower with a reduction in &#946;-cell area without modification in &#945;-cell content when compared with CTL. Also, MSG group presented an increased number of pancreatic islets per mm2, with higher number of islets, which may contributes to the higher islet and &#946;-cell relative mass in the MSG pancreas. These effects were associated with enhanced proliferation in MSG group. The number of MVAG pancreatic islet were less than MSG. Vagotomoy performed at 30-days of age, reduced islet and &#946;-cell area in the pancreas from 90-days old CVAG rats. Finally, the relative islet and &#946;-cell mass in MVAG and CVAG rats was similar to CTL. Here we verified if ERK was involved in &#946;-cell replication in MSG rats, but presented no alteration. We demonstrate for the first time that adult MSG rats showed enhanced pancreatic &#946;-cell proliferation which contributes to the higher islet insulin secretion in response to glucose. The vagus nerve is the main factor involved in such a process, since vagotomy performed at 30 days of age prevented islet morphological alterations in adult MVAG rats. Possibly this increase PNS activity in MSG endocrine pancreas is responsible to hyperinsulinemia that enhanced fat storage, damaged glucose homeostasis and insulin action in MSG obesity / O crescente número de pessoas com sobrepeso e obesidade tem levado ao aumento no número de pacientes com resistência à insulina (RI) e portadores do Diabetes mellitus tipo 2. Ratos obesos MSG são intolerantes à glicose (Gli), RI e suas ilhotas pancreáticas secretam mais insulina em resposta à concentrações de Gli. A vagotomia subdiafragamática altera a responsividade das ilhotas à Gli e melhora a homeostase glicêmica nestes animais, sugerindo um desbalanço do sistema nervoso autonômico, com aumento do tônus parassimpático e redução do simpático. Estudos demonstram que o sistema nervoso parassimpático (SNP) possui efeito na proliferação das células &#946;-pancreáticas. Desta forma, investigamos a participação do SNP, através da vagotomia subdiafragmática, no metabolismo energético e na proliferação das ilhotas e de células &#946;-pancreáticas de ratos obesos-MSG. Para isto, ratos Wistar machos receberem durante os cinco primeiros dias de vida glutamato monossódico (grupo MSG) ou salina (grupo CTL). A vagotomia subdiafragmática foi realizada aos 30 dias de vida formando os grupos MVAG e CVAG. Aos 90 dias, verificamos a secreção estática de insulina, homeostase glicêmica e lipídica, morfometria do pâncreas e conteúdo proteico da ERK nas ilhotas. Ratos MSG apresentaram redução do peso corporal e comprimento nasoanal, aumento do índice de Lee e acúmulo de gordura, normoglicêmia, hiperinsulinemia, dislipidemia, intolerância à Gli e RI comparados aos CTL. A vagotomia realizada aos 30 dias de vida preveniu obesidade, acúmulo de gordura no fígado e melhorou a tolerância à Gli e a sensibilidade à insulina em ratos MVAG adultos em relação aos ratos MSG. As ilhotas dos animais MSG secretaram mais insulina quando estimulada pela Gli, em relação aos animais CTL. As análises histológicas mostram que as ilhotas pancreáticas dos animais MSG são menores com redução da área das células &#946; sem alteração nas células &#945; em relação aos CTL. O grupo MSG apresenta um aumento do número das ilhotas por mm2, que pode estar contribuindo com o aumento da massa relativa das ilhotas e das células &#946;. Esse efeito está associado ao aumento da proliferação no grupo MSG. O número de ilhotas foi menor nos MVAG em relação aos MSG. A vagotomia realizada aos 30 dias de vida reduziu a área das ilhotas e das células &#946; aos 90 dias de vida nos animais CVAG. Finalmente, a massa relativa das ilhotas e da células &#946; no MVAG e CVAG foram similares ao CTL. Verificamos se a ERK estava envolvida na proliferação das células &#946; nos ratos MSG, porém não apresentaram alterações desta proteína. Pela primeira vez demonstramos que ratos MSG apresentam aumento da proliferação das células &#946; que contribui com o aumento da secreção de insulina em resposta à Gli. O nervo vago é o principal fator envolvido neste processo, visto que a vagotomia realizada aos 30 dias de vida preveniu as alterações morfológicas das ilhotas nos ratos MVAG adultos
70

Effets neurophysiologiques de la stimulation du nerf vague : implication dans le traitement de la dépression résistante et optimisation des paramètres de stimulation

Manta, Stella 01 1900 (has links)
La dépression est une pathologie grave qui, malgré de multiples stratégies thérapeutiques, demeure résistante chez un tiers des patients. Les techniques de stimulation cérébrale sont devenues une alternative intéressante pour les patients résistants à diverses pharmacothérapies. La stimulation du nerf vague (SNV) a ainsi fait preuve de son efficacité en clinique et a récemment été approuvée comme traitement additif pour la dépression résistante. Cependant, les mécanismes d’action de la SNV en rapport avec la dépression n’ont été que peu étudiés. Cette thèse a donc eu comme premier objectif de caractériser l’impact de la SNV sur les différents systèmes monoaminergiques impliqués dans la pathophysiologie de la dépression, à savoir la sérotonine (5-HT), la noradrénaline (NA) et la dopamine (DA), grâce à l’utilisation de techniques électrophysiologiques et de la microdialyse in vivo chez le rat. Des études précliniques avaient déjà révélé qu’une heure de SNV augmente le taux de décharge des neurones NA du locus coeruleus, et que 14 jours de stimulation sont nécessaires pour observer un effet comparable sur les neurones 5-HT. Notre travail a démontré que la SNV modifie aussi le mode de décharge des neurones NA qui présente davantage de bouffées, influençant ainsi la libération terminale de NA, qui est significativement augmentée dans le cortex préfrontal et l’hippocampe après 14 jours. L’augmentation de la neurotransmission NA s’est également manifestée par une élévation de l’activation tonique des récepteurs postsynaptiques α2-adrénergiques de l’hippocampe. Après lésion des neurones NA, nous avons montré que l’effet de la SNV sur les neurones 5-HT était indirect, et médié par le système NA, via l’activation des récepteurs α1-adrénergiques présents sur les neurones du raphé. Aussi, tel que les antidépresseurs classiques, la SNV augmente l’activation tonique des hétérorécepteurs pyramidaux 5-HT1A, dont on connait le rôle clé dans la réponse thérapeutique aux antidépresseurs. Par ailleurs, nous avons constaté que malgré une diminution de l’activité électrique des neurones DA de l’aire tegmentale ventrale, la SNV induit une augmentation de la DA extracellulaire dans le cortex préfrontal et particulièrement dans le noyau accumbens, lequel joue un rôle important dans les comportements de récompense et l’hédonie. Un deuxième objectif a été de caractériser les paramètres optimaux de SNV agissant sur la dépression, en utilisant comme indicateur le taux de décharge des neurones 5-HT. Des modalités de stimulation moins intenses se sont avérées aussi efficaces que les stimulations standards pour augmenter l’activité électrique des neurones 5-HT. Ces nouveaux paramètres de stimulation pourraient s’avérer bénéfiques en clinique, chez des patients ayant déjà répondu à la SNV. Ils pourraient minimiser les effets secondaires reliés aux périodes de stimulation et améliorer ainsi la qualité de vie des patients. Ainsi, ces travaux de thèse ont caractérisé l’influence de la SNV sur les trois systèmes monoaminergiques, laquelle s’avère en partie distincte de celle des antidépresseurs classiques tout en contribuant à son efficacité en clinique. D’autre part, les modalités de stimulation que nous avons définies seraient intéressantes à tester chez des patients recevant la SNV, car elles devraient contribuer à l’amélioration des bénéfices cliniques de cette thérapie. / Depression is a severe psychiatric disorder, in which a third of patients do not achieve remission, despite the wide variety of therapeutic strategies that are currently available. Brain stimulation has emerged as a promising alternative therapy in cases of treatment resistance. Vagus nerve stimulation (VNS) has shown promise in treating resistant-depressed patients, and it has been approved as an adjunctive treatment for resistant depression. However, the mechanism of action by which VNS exerts its antidepressant effects has remained elusive. The first goal of this thesis was therefore to characterize the impact of VNS on monoaminergic systems known to be implicated in the pathophysiology of depression such as serotonin (5-HT), norepinephrine (NE) and dopamine (DA), by means of electrophysiologic techniques and microdialysis in the rat brain. Previous research has indicated that one hour of VNS increased the basal firing activity of locus coeruleus NE neurons and, secondarily, that of 5-HT neurons, but only after 14 days of stimulation. Our work demonstrated that VNS also modified the firing pattern of NE neurons towards a bursting mode of discharge. This mode of firing was shown to lead to enhanced NE release in the prefrontal cortex and hippocampus after 14 days. Increased NE neurotransmission was also evidenced by enhanced tonic activation of postsynaptic α2-adrenoceptors in the hippocampus. Selective lesioning of NE neurons was then used to demonstrate that the effects of VNS on the 5-HT system were indirect, and mediated by the activation of α1-adrenoceptors located on the dorsal raphe 5-HT neurons. Similar to classical antidepressants, VNS also enhanced the tonic activation of pyramidal 5-HT1A heteroreceptors, which are known to play a key role in the antidepressant response. We also found that in spite of a diminished firing activity of ventral tegmental area DA neurons after VNS, extracellular DA levels were significantly elevated in the prefrontal cortex, and particularly in the nucleus accumbens which plays an important role in reward behavior and hedonia. A second objective was to characterize the optimal VNS parameters to treat depression using the firing activity of 5-HT neurons as an indicator. It was found that less stimulation was as effective as the standard levels to increase 5-HT neurons firing rate. These novel parameters could be helpful for clinical application in VNS responsive patients, to potentially minimize and/or even prevent stimulation-related side effects, thus improving their quality of life. In brief, these studies reveal an influence of VNS on all three central monoamine systems, which differs in part from that of classical antidepressants while contributing to the clinical efficacy of this approach. It will also be interesting to determine whether the proposed lower stimulation parameters are as effective in providing antidepressant response in patients receiving VNS, which should contribute to improve the clinical benefits of that therapy.

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