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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.
1

The Effect of Repeated Resveratrol Administration on Global Ischemia-Induced Hippocampal Neurodegeneration, Neurochemical Effects and Functional Alterations

Girbovan, Catrinel January 2015 (has links)
Global cerebral ischemia is an established animal model mimicking the effects of cardiac arrest in humans. It is characterized by selective neuronal damage in the hippocampus and significant behavioural and cognitive impairments. In this light, novel therapeutic compounds with numerous physiological targets as well as neuroprotective capabilities and the capacity to lessen residual cognitive deficits pose as great candidates in the treatment of ischemic pathology. The current thesis investigates the possible therapeutic properties of resveratrol (3, 4, 5´trihydroxystilbene), a naturally occurring phytoalexin present in the skin of grapes, against cerebral ischemia-induced neuronal degeneration and cognitive impairments, as well as elaborate on possible mechanisms of action of the compound in male Wistar rats. In Article 1, neuronal density assessment and behavioural testing following chronic pretreatment with resveratrol at two doses (1 and 10 mg/kg) revealed that the compound has important neuroprotective properties at short and long post-ischemic intervals. Despite comparable neuronal protection, the two resveratrol doses showed distinct behavioural effects, highlighting independent actions of the polyphenol on discrete physiological systems mediating cellular survival and behavioural recovery. Articles 2 and 3 investigated possible mechanisms of action of the polyphenol that have not yet been explored with regards to cerebral ischemia. Specifically, Article 2 demonstrated that resveratrol influences markers of plasticity in both ischemic and control animals as well as promotes angiogenesis in the hippocampal region postischemia. Further elaborating on documented effects attributing non-neuronal mechanisms of action of resveratrol in reducing glial activation postischemia, Article 3 highlighted important regulatory effects of resveratrol on mediating glial type-1 glutamate transporter expression at a short reperfusion interval. These findings support the notion of multiple biological targets by resveratrol and highlight its potential role in attenuating forebrain ischemia-induced neuronal degeneration through multiple physiological targets, while cautioning against possible dose-related effects on behaviour and in healthy controls.
2

Balanço dos receptores mineralocorticoides e glicocorticoides no giro denteado do hipocampo de cães idosos / Balance of mineralocorticoid and glucocorticoid receptors in the dentate gyrus of the hippocampus of aged dogs

Szriber, Shirley Jaqueline 04 January 2018 (has links)
Os receptores para mineralocorticoides (MR) e glicocorticoides (GR) representam importantes sítios de ligação para os glicocorticoides. Enquanto a ativação crônica e excessiva de GR leva à atrofia do hipocampo, a ativação do MR é neuroprotetora. Considerando as alterações no giro denteado (GD), decorrentes do envelhecimento, e a possível participação do MR e GR neste processo, o objetivo deste trabalho foi correlacionar o desbalanço de tais receptores com a degeneração neuronal nesta região do hipocampo de cães idosos. Para isso, utilizaram-se cortes histológicos do hipocampo de 6 cadáveres caninos jovens/adultos (até 8 anos de idade) e 12 idosos (idade igual ou superior a 10 anos), de ambos os sexos e de qualquer raça, os quais foram submetidos à: coloração de Nissl, para a identificação de células nervosas; imuno-histoquímica, para o estudo da expressão do MR e GR; e marcação fluorescente (fluoro-jade B), para detecção de neurônios em degeneração. A camada polimórfica do GD de cães idosos apresentou redução (em 16%) na contagem de neurônios e maior número de neurônios em degeneração. Em conjunto com estas alterações celulares, a menor marcação/expressão do MR e a menor relação MR:GR foram correlacionadas com a degeneração neuronal na camada polimórfica do GD de cães idosos. Além disso, cadelas idosas apresentaram menor densidade celular na camada granular, quando comparadas aos machos idosos, sugerindo uma ação diferencial dos esteroides sexuais nas alterações do GD. Os resultados indicam que o desbalanço na relação MR:GR pode interferir na sobrevivência neuronal no GD de cães idosos. / The mineralocorticoid (MR) and glucocorticoid (GR) receptors bind the glucocorticoid hormones. The chronic and excessive GR activation leads to hippocampus atrophy. By contrast, MR activation is neuroprotective. Considering the aging changes in the dentate gyrus (DG) and the possible participation of MR and GR in this process, the objective of this study was to correlate the unbalance of these receptors with the neuronal degeneration in this hippocampal region of aged dogs. For that purpose, cadaveric histologic sections of hippocampus of 6 young/adult dogs (until 8 years old) and 12 aged dogs (more than 10 years old), of both sex and any breed, were included. The Nissl staining and imunochemistry were performed to identify nerve cells and to study the MR and GR expression, respectively. Moreover, fluorescent labeling (fluoro- Jade B) was used to detect degenerating neurons. The polimorfic layer of the DG of aged dogs showed reduction (of 16%) on the neurons counting and more degenerating neurons. Together with this cells changes, the less MR expression and MR:GR relation were correlated with the neuronal degeneration in the polimorfic layer of DG of aged dogs. Besides that, aged females presented lower cell density in the granular layer, when compared to aged males, suggesting a differential sex steroid action on changes in the GD. Our results indicate that unbalance on the MR:GR relation may interfere with neuronal survival in the DG of aged dogs.
3

Balanço dos receptores mineralocorticoides e glicocorticoides no giro denteado do hipocampo de cães idosos / Balance of mineralocorticoid and glucocorticoid receptors in the dentate gyrus of the hippocampus of aged dogs

Shirley Jaqueline Szriber 04 January 2018 (has links)
Os receptores para mineralocorticoides (MR) e glicocorticoides (GR) representam importantes sítios de ligação para os glicocorticoides. Enquanto a ativação crônica e excessiva de GR leva à atrofia do hipocampo, a ativação do MR é neuroprotetora. Considerando as alterações no giro denteado (GD), decorrentes do envelhecimento, e a possível participação do MR e GR neste processo, o objetivo deste trabalho foi correlacionar o desbalanço de tais receptores com a degeneração neuronal nesta região do hipocampo de cães idosos. Para isso, utilizaram-se cortes histológicos do hipocampo de 6 cadáveres caninos jovens/adultos (até 8 anos de idade) e 12 idosos (idade igual ou superior a 10 anos), de ambos os sexos e de qualquer raça, os quais foram submetidos à: coloração de Nissl, para a identificação de células nervosas; imuno-histoquímica, para o estudo da expressão do MR e GR; e marcação fluorescente (fluoro-jade B), para detecção de neurônios em degeneração. A camada polimórfica do GD de cães idosos apresentou redução (em 16%) na contagem de neurônios e maior número de neurônios em degeneração. Em conjunto com estas alterações celulares, a menor marcação/expressão do MR e a menor relação MR:GR foram correlacionadas com a degeneração neuronal na camada polimórfica do GD de cães idosos. Além disso, cadelas idosas apresentaram menor densidade celular na camada granular, quando comparadas aos machos idosos, sugerindo uma ação diferencial dos esteroides sexuais nas alterações do GD. Os resultados indicam que o desbalanço na relação MR:GR pode interferir na sobrevivência neuronal no GD de cães idosos. / The mineralocorticoid (MR) and glucocorticoid (GR) receptors bind the glucocorticoid hormones. The chronic and excessive GR activation leads to hippocampus atrophy. By contrast, MR activation is neuroprotective. Considering the aging changes in the dentate gyrus (DG) and the possible participation of MR and GR in this process, the objective of this study was to correlate the unbalance of these receptors with the neuronal degeneration in this hippocampal region of aged dogs. For that purpose, cadaveric histologic sections of hippocampus of 6 young/adult dogs (until 8 years old) and 12 aged dogs (more than 10 years old), of both sex and any breed, were included. The Nissl staining and imunochemistry were performed to identify nerve cells and to study the MR and GR expression, respectively. Moreover, fluorescent labeling (fluoro- Jade B) was used to detect degenerating neurons. The polimorfic layer of the DG of aged dogs showed reduction (of 16%) on the neurons counting and more degenerating neurons. Together with this cells changes, the less MR expression and MR:GR relation were correlated with the neuronal degeneration in the polimorfic layer of DG of aged dogs. Besides that, aged females presented lower cell density in the granular layer, when compared to aged males, suggesting a differential sex steroid action on changes in the GD. Our results indicate that unbalance on the MR:GR relation may interfere with neuronal survival in the DG of aged dogs.

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