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Mécanismes cellulaires et moléculaires à l'origine des dissociations de la mémoire spatiale chez la souris : implication de la voie transcriptionnelle CREBPorte, Yves 12 December 2008 (has links)
De nombreuses données suggèrent que l'activation/phosphorylation du facteur de transcription CREB (cAMP Responsive Element Binding protein, pCREB) est nécessaire à la consolidation mnésique, notamment dans les tâches dépendantes de l’hippocampe (HPC). Au laboratoire, il a été récemment montré, dans deux paradigmes de conditionnement classique, que la consolidation des associations contexte-choc (HPC-dépendante) vs son-choc (amygdale-dépendante), est associée à l'établissement de cinétiques pCREB différentielles dans l’HPC (respectivement biphasique vs monophasique). Partant de ces données, nos travaux ont porté sur l'étude des cinétiques de la voie transcriptionnelle CREB-gènes précoces lors de la consolidation ou de la perturbation (vieillissement, extinction) d'une mémoire spatiale acquise en piscine de Morris. L’analyse des niveaux de pCREB au cours de l’entraînement met en évidence un recrutement différentiel des structures examinées selon la phase d’apprentissage, et nous a ainsi permis d’illustrer la théorie d’interaction des systèmes de mémoire. L’étude détaillée de la cinétique d’activation de CREB en fin d’apprentissage (lorsque la mémoire est bien consolidée) met en évidence des patrons d’activité pCREB qui varient selon la structure considérée (biphasique dans le CA1 vs monophasique ou inexistant dans les autres structures). La durée et l’amplitude de l’activation de CREB reflètent (1) le niveau d’implication de la structure cérébrale considérée dans le traitement des informations spatiales et (2) le degré de maîtrise de la tâche. L’analyse des patrons d’activation de CREB chez des souris âgées révèle que les déficits de mémoire spatiale dus au vieillissement sont associés à une altération sélective de la cinétique pCREB et à une diminution de la production de protéine Fos dans le CA1. Enfin, nous montrons que l’extinction de la mémoire spatiale induit des altérations spécifiques du patron d’activation de CREB dans le l’HPC (CA1) et l’amygdale selon que l’extinction est effectuée par retrait ou changements successifs de la position de la plate-forme. Dans leur ensemble, nos données mettent en lumière le rôle crucial de l’activation de la voie transcriptionnelle CREB dépendante dans l’aire CA1, dans une fenêtre temporelle extrêmement fine, pour le traitement des informations spatiales. / Accumulating evidence suggest that the activation/phosphorylation of CREB transcription factor (cAMP Responsive Element Binding protein, pCREB) is necessary for memory consolidation in hippocampus (HPC)-dependant tasks. Recently, it has been shown that the consolidation of memory traces for contextual- (HPC-dependant) vs elemental- (amygdala-dependent) conditioning resulted in different pCREB patterns in the HPC (respectively biphasic vs monophasic). Based on these data, we studied, by immunohistochemistry and western-blots, the activation patterns of the CREB-early genes transcriptional route during consolidation and disturbance (aging, extinction) of a spatial memory acquired in the Morris water maze. Analysis of pCREB levels across training revealed differential recruitment of the structures considered as a function of the learning phase, and illustrated memory systems interaction. A detailed analysis of the kinetics of CREB activation at the end of training (when the memory is well consolidated) showed variable activation patterns within the different structures examined (biphasic in the CA1 vs monophasic or absent in other structures). The amplitude and duration of CREB phosphorylation reflected (1) the role of the structure examined in spatial information processing and (2) the degree of mastering of the task. The detailed analysis of CREB phosphorylation in aged mice revealed that aging-induced spatial memory deficits are associated to a selective alteration of pCREB pattern and Fos production in the CA1. Finally, we showed that extinction of spatial memory differentially affected the CREB phosphorylation pattern in the HPC (CA1) and the amygdala when extinction occurred either by moving or by retiring the platform. Together, our findings highlight the crucial role of the activation of the CREB dependant transcriptional route within a narrow window in the CA1 subfield for efficient spatial information processing.
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The Effect of Glucagon-like Peptide-2 on Insulin-like Growth Factor-1 in Murine Intestinal Subepithelial MyofibroblastsLeen, Jason 15 February 2010 (has links)
Insulin-like growth factor-1 (IGF-1), a known secretory product of intestinal subepithelial myofibroblasts (ISEMF), is essential for the intestinotrophic effects of glucagon-like peptide-2(GLP-2). I hypothesized that GLP-2 increases the production of IGF-1 by primary murine
ISEMF in culture. Immunocytochemistry showed that the ISEMF stained appropriately for α
smooth muscle actin and vimentin but not for desmin. The ISEMF also expressed GLP-2
receptor and IGF-1 mRNA transcripts. ISEMF treated with GLP-2 revealed a maximal increase in IGF-1 mRNA transcript levels at 10-8 M GLP-2 and 2hr. Interestingly, immunoblotting revealed an increase in P-AKT/T-AKT with GLP-2, but no changes in cAMP, P-ERK/T-ERK or calcium were detected. PI3K inhibition and kinase-dead AKT over-expression abrogated GLP-2-induction of IGF-1 mRNA, and ISEMF from GLP-2R null mice demonstrated reductions in IGF-1 mRNA and cellular IGF-1, but not in media IGF-1, vs. wild-type ISEMF. These findings suggest a possible mechanism by which GLP-2 increases intestinal growth in-vivo.
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The Effect of Glucagon-like Peptide-2 on Insulin-like Growth Factor-1 in Murine Intestinal Subepithelial MyofibroblastsLeen, Jason 15 February 2010 (has links)
Insulin-like growth factor-1 (IGF-1), a known secretory product of intestinal subepithelial myofibroblasts (ISEMF), is essential for the intestinotrophic effects of glucagon-like peptide-2(GLP-2). I hypothesized that GLP-2 increases the production of IGF-1 by primary murine
ISEMF in culture. Immunocytochemistry showed that the ISEMF stained appropriately for α
smooth muscle actin and vimentin but not for desmin. The ISEMF also expressed GLP-2
receptor and IGF-1 mRNA transcripts. ISEMF treated with GLP-2 revealed a maximal increase in IGF-1 mRNA transcript levels at 10-8 M GLP-2 and 2hr. Interestingly, immunoblotting revealed an increase in P-AKT/T-AKT with GLP-2, but no changes in cAMP, P-ERK/T-ERK or calcium were detected. PI3K inhibition and kinase-dead AKT over-expression abrogated GLP-2-induction of IGF-1 mRNA, and ISEMF from GLP-2R null mice demonstrated reductions in IGF-1 mRNA and cellular IGF-1, but not in media IGF-1, vs. wild-type ISEMF. These findings suggest a possible mechanism by which GLP-2 increases intestinal growth in-vivo.
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Estudo dos grânulos de lipofucsina e das sinapses do córtex temporal durante o envelhecimento / Study of lipofuscin granules and synapses in the temporal cortex during aging.Merlo, Suélen 14 April 2011 (has links)
Alterações morfológicas e funcionais ocorrem durante o envelhecimento, período da vida com maior incidência de doenças neurodegenerativas. No presente trabalho acompanhou-se a evolução dos grânulos de lipofucsina durante o envelhecimento para investigar alterações sinápticas, assim como proteínas associadas com doenças neurodegenerativas (alfa-sinucleína) e com o sistema ubiquitina-proteossoma em indivíduos de diferentes idades. No córtex temporal humano e de ratos determinou-se, nos diferentes grupos etários, seguindo a área, o número e as características dos grânulos de lipofucsina, o número de sinapses excitatórias, inibitórias e elétricas, os locais de contatos pós-sinápticos, o número de vesículas sinápticas por terminal e a expressão das proteínas alfa-sinucleína e ubiquitina. Amostras de córtex temporal humano de indivíduos com diferentes idades (20 - 28, 37 - 41 e 50 - 55 anos) foram coletadas de pacientes com epilepsia submetidos à lobectomia do lobo temporal. Amostras de ratos de 2, 6, 10 e 12 meses também foram coletadas. Foram utilizadas técnicas de microscopia de luz, eletrônica, confocal e western blots. Os dados obtidos de grânulos de lipofucsina são consistentes com outros estudos que observaram aumento dessa estrutura em mamíferos de maior idade. No entanto, os grânulos parecem crescer em volume, mas não em número, com aumento considerável da fração elétron lúcida (lipídica). Não houve diferença na expressão das proteínas alfa-sinucleína e ubiquitina entre os grupos das idades estudadas. A densidade sináptica foi similar entre os grupos experimentais, assim como o local de contato pós-sináptico. O aumento de vesículas elétron densas em sinapses inibitórias deve estar associado à demanda de neurotransmissores catecolaminérgicos. Estes resultados não expressam totalmente o processo de envelhecimento, pois as faixas etárias de humanos e ratos correspondem a uma idade ainda jovem. A coleta de material humano mais idoso foi impossibilitada pela faixa etária dos doentes submetidos à lobectomia. Os ratos do biotério da FMRP, não sobrevivem mais do que 12 meses em no nosso ambiente, incluindo manutenção dos animais isolados em racks. / Morphological and functional changes occur during the aging, period of life with increased incidence of neurodegenerative diseases. Following the evolution of the lipofuscin granules along three periods of life in humans and rats, the present work investigated synaptic changes, as well as proteins associated with neurodegenerative diseases (alpha-synuclein) and the ubiquitin-proteossoma system in individuals of different ages. The objectives of the study were to analyze the temporal cortex of humans and rats: the number of excitatory, inhibitory, and electric synapses, the site of postsynaptic contacts, the number of synaptic vesicles per terminal, and the expression of the proteins alpha-synuclein and ubiquitin following the size and features of the lipofuscin granules. Samples of temporal cortex of human subjects with different ages (20-28, 37-41 and 50-55 years) were collected from patients with epilepsy who underwent temporal lobectomy. Samples from rats of 2, 6, 10 and 12 months were also collected. Light, confocal, and electron microscopy, and western blots techniques were used as procedures. The data obtained on lipofuscin granules were coincident with other studies that observed a higher area occupied by this structure in older mammals. However, the granules seem to grow in volume, but not in number, with considerable increase of the electron lucid fraction (lipidic). There was no difference in the alpha-synuclein and ubiquitin expressions between the experimental groups. The synaptic densities were similar between the groups, as well as the postsynaptic contacts. Increase of the electron dense vesicles in inhibitory synapses, appeared to be associated with the demand of catecholamines. These results do not express totally the aging process, because the range of age used in humans, and rats belong to a young age. The human samples from older ages was difficult because, in general, of the age of the patients submitted to lobotomy. The rats of the FMRP bioterium do not survived more that 12 months in our environment, even in controlled conditions.
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Estudo dos grânulos de lipofucsina e das sinapses do córtex temporal durante o envelhecimento / Study of lipofuscin granules and synapses in the temporal cortex during aging.Suélen Merlo 14 April 2011 (has links)
Alterações morfológicas e funcionais ocorrem durante o envelhecimento, período da vida com maior incidência de doenças neurodegenerativas. No presente trabalho acompanhou-se a evolução dos grânulos de lipofucsina durante o envelhecimento para investigar alterações sinápticas, assim como proteínas associadas com doenças neurodegenerativas (alfa-sinucleína) e com o sistema ubiquitina-proteossoma em indivíduos de diferentes idades. No córtex temporal humano e de ratos determinou-se, nos diferentes grupos etários, seguindo a área, o número e as características dos grânulos de lipofucsina, o número de sinapses excitatórias, inibitórias e elétricas, os locais de contatos pós-sinápticos, o número de vesículas sinápticas por terminal e a expressão das proteínas alfa-sinucleína e ubiquitina. Amostras de córtex temporal humano de indivíduos com diferentes idades (20 - 28, 37 - 41 e 50 - 55 anos) foram coletadas de pacientes com epilepsia submetidos à lobectomia do lobo temporal. Amostras de ratos de 2, 6, 10 e 12 meses também foram coletadas. Foram utilizadas técnicas de microscopia de luz, eletrônica, confocal e western blots. Os dados obtidos de grânulos de lipofucsina são consistentes com outros estudos que observaram aumento dessa estrutura em mamíferos de maior idade. No entanto, os grânulos parecem crescer em volume, mas não em número, com aumento considerável da fração elétron lúcida (lipídica). Não houve diferença na expressão das proteínas alfa-sinucleína e ubiquitina entre os grupos das idades estudadas. A densidade sináptica foi similar entre os grupos experimentais, assim como o local de contato pós-sináptico. O aumento de vesículas elétron densas em sinapses inibitórias deve estar associado à demanda de neurotransmissores catecolaminérgicos. Estes resultados não expressam totalmente o processo de envelhecimento, pois as faixas etárias de humanos e ratos correspondem a uma idade ainda jovem. A coleta de material humano mais idoso foi impossibilitada pela faixa etária dos doentes submetidos à lobectomia. Os ratos do biotério da FMRP, não sobrevivem mais do que 12 meses em no nosso ambiente, incluindo manutenção dos animais isolados em racks. / Morphological and functional changes occur during the aging, period of life with increased incidence of neurodegenerative diseases. Following the evolution of the lipofuscin granules along three periods of life in humans and rats, the present work investigated synaptic changes, as well as proteins associated with neurodegenerative diseases (alpha-synuclein) and the ubiquitin-proteossoma system in individuals of different ages. The objectives of the study were to analyze the temporal cortex of humans and rats: the number of excitatory, inhibitory, and electric synapses, the site of postsynaptic contacts, the number of synaptic vesicles per terminal, and the expression of the proteins alpha-synuclein and ubiquitin following the size and features of the lipofuscin granules. Samples of temporal cortex of human subjects with different ages (20-28, 37-41 and 50-55 years) were collected from patients with epilepsy who underwent temporal lobectomy. Samples from rats of 2, 6, 10 and 12 months were also collected. Light, confocal, and electron microscopy, and western blots techniques were used as procedures. The data obtained on lipofuscin granules were coincident with other studies that observed a higher area occupied by this structure in older mammals. However, the granules seem to grow in volume, but not in number, with considerable increase of the electron lucid fraction (lipidic). There was no difference in the alpha-synuclein and ubiquitin expressions between the experimental groups. The synaptic densities were similar between the groups, as well as the postsynaptic contacts. Increase of the electron dense vesicles in inhibitory synapses, appeared to be associated with the demand of catecholamines. These results do not express totally the aging process, because the range of age used in humans, and rats belong to a young age. The human samples from older ages was difficult because, in general, of the age of the patients submitted to lobotomy. The rats of the FMRP bioterium do not survived more that 12 months in our environment, even in controlled conditions.
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The Cytotoxic Mechanisms of Hepatotoxicity Induced by Methamphetamine and 3,4-Methylenedioxy-Methamphetamine Under Normothermic and Hyperthermic ConditionsFrommann, Nicole P. January 2020 (has links)
No description available.
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