• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 2
  • 1
  • Tagged with
  • 4
  • 4
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 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

Molecular Mechanisms of Levodopa Action in Animal Models of Parkinson's Disease

Nowak, Przemysław, Szczerbak, Grazyna, Dabrowska, Joanna, Bortel, Aleksandra, Biedka, Izabela, Kostrzewa, Richard M. 01 December 2006 (has links)
Parkinson's disease is a progressive neurodegenerative movement disorder, affecting mainly the elderly. One of the most important hallmarks of Parkinson's disease is the loss of neuronal cell bodies containing neuromelanin in the substantia nigra zona compacta, and subsequently, loss of dopamine terminals in basal ganglia nuclei of the brain. The discovery by Hornykiewicz and co-workers that levodopa could successfully treat Parkinson's disease in humans was one of the most important events of medicine in the 20th century. Since loss of nigrostriatal dopaminergic function is the basic underlying pathophysiology of this disease, drugs that enhance dopaminergic function in the striatum, including the exogenous precursor levodopa, remain the most effective symptomatic agents in the treatment of Parkinson's disease. However, there are some areas of controversy about levodopa-evoked motor complications (dyskinesias, on-off phenomena) as well as neuroprotective or neurotoxic activity of this drug, etc. In this article the authors try to clarify the molecular mechanisms involved in levodopa action, such as volume transmission - a crucial process for successful levodopa therapy, evidence that serotoninergic neurons may accumulate levodopa and convert it into dopamine as well as some aspects of neuroprotective action of levoda.
2

Vliv morfinové abstinence na katecholaminergní a serotoninergní neurotransmiterový systém v mozku potkana / The effect of morphine withdrawal on the catecholaminergic and serotonergic neurotransmitter system in rat brain

Nováková, Daniela January 2021 (has links)
The aim of this diploma thesis is to study the effect of morphine withdrawal on catecholaminergic and serotonergic neurotransmitter system in rat brain. Theoretical part of this thesis summarizes basic information known about principles of neurotransmission with focus on the catecholaminergic and serotonergic system, metabolism of its components, their signaling, relevant receptors, their distribution, and especially their effect on morphine dependence and subsequent withdrawal. It also summarizes briefly principles of opioid signaling and outlines the findings yet known about neurochemical analysis of the transmitter systems mentioned above. Experimental part of this thesis is focused on the optimization of the method of high performance liquid chromatography with fluorescence detection and its subsequent use to determine basic components of catecholaminergic and serotonergic neurotransmitter system in samples of different part of brain of rats affected by intraperitoneal administration of morphine sulphate, and its subsequent withdrawal and correspondings unaffected control rats. The expression of selected catecholaminergic receptors in identical samples is also detected. This thesis succesfully implements gradient into the originally isocratic method of high performance liquid chromatography...
3

Neurotoxicidade de pesticidas organofosforados durante o desenvolvimento: alterações bioquímicas e comportamentais / Neurotoxicity of organophosphate pesticides during development: biochemical and behavioral alterations

Carla Soares de Lima Prieto 29 May 2013 (has links)
Pesticidas organofosforados são amplamente usados e seu uso constitui um grave problema de saúde pública. A ação clássica destes compostos é a inibição irreversível da acetilcolinesterase, promovendo acúmulo de acetilcolina nas sinapses e hiperestimulação colinérgica. No entanto, as consequências da exposição a baixas doses podem se estender a outros mecanismos de ação e sistemas neurotransmissores. Considerando que crianças constituem um grupo particularmente vulnerável aos efeitos de pesticidas, neste trabalho investigamos os efeitos da exposição aos organofosforados metamidofós (MET) e clorpirifós (CPF) durante o desenvolvimento sobre os sistemas colinérgico e serotoninérgico e sobre o comportamento de camundongos. Para isso, camundongos suíços foram expostos a injeções subcutâneas de MET, clorpirifós ou veículo do terceiro (PN3) ao nono (PN9) dias de vida pós-natal. As doses de exposição foram previamente escolhidas através da construção de uma curva dose-resposta que identificou como mais adequadas para este estudo as doses de 1mg/kg de MET e 3mg/kg de CPF, as quais promoveram em torno de 20% de inibição da acetilcolinesterase. Em PN10, parte dos animais foi sacrificada e foram avaliados os sistemas colinérgico e serotoninérgico no tronco encefálico e córtex cerebral. De PN60 a PN63, os animais foram submetidos a uma bateria de testes comportamentais. Em seguida, estes animais também foram sacrificados tendo sido avaliados os sistemas colinérgico e serotoninérgico. Em PN10, MET e CPF causaram alterações que sugerem aumento da atividade colinérgica respectivamente no tronco e córtex em fêmeas. No sistema serotoninérgico, apenas CPF promoveu alterações, aumentando a ligação ao receptor 5HT1A e transportador 5HT em fêmeas e diminuindo na ligação ao 5HT2. Em PN63, a atividade da acetilcolinesterase foi reestabelecida em todos os grupos. Ainda assim, MET diminuiu a atividade da colina acetiltransferase no córtex e a ligação ao transportador colinérgico no tronco. Quanto aos efeitos do CPF, no tronco, houve redução da atividade da colina acetiltransferase em fêmeas e aumento em machos. Sobre o sistema serotoninérgico, MET e CPF promoveram diminuições no 5HT1A respectivamente no tronco e córtex das fêmeas e CPF aumentou a ligação no córtex de machos. A ligação ao 5HT2 foi aumentada após o tratamento com MET e ao transportador 5HT foi diminuída em fêmeas após o tratamento com clorpirifós. Sobre o comportamento, identificamos comportamento associado à depressão em animais expostos a MET e aumento dos níveis de ansiedade, além de prejuízo de aprendizado/memória após exposição à CPF. Desta forma, nossos resultados indicam que a exposição à metamidofós e clorpirifós durante o desenvolvimento é capaz de alterar, de diferentes formas, a atividade colinérgica e serotoninérgica, mesmo que as doses de exposição sejam toxicologicamente equivalentes. Foram verificados efeitos nas vias neuroquímicas logo após a exposição e após um longo período de interrupção do tratamento, indicando efeitos tardios em sistemas importantes que podem estar associados às alterações comportamentais. Finalmente, o presente estudo reforça a associação epidemiológica entre pesticidas e alterações psiquiátricas e a capacidade da programação de alterações a longo-prazo quando a exposição se dá durante o desenvolvimento. / Organophosphate pesticides are widely used and its use consist on a severe public health problem. The classic effect of these compounds involve irreversible inhibition of the enzyme acetylcholinesterase, causing an accumulation of acetylcholine at cholinergic synapses and, consequently, cholinergic hyperstimulation. However, when the doses of exposure are low, other the mechanisms of action may play a role and other neurotransmitter systems may be affected. Considering that children are particularly vulnerable to effects of these compounds, in this study we investigated the effects of methamidophos and chlorpyrifos organophosphate exposure during development on cholinergic and serotonergic systems and behavior. For this purpose, Swiss mice received subcutaneous injections of methamidophos or chlorpyrifos, or vehicle from the third to the nineth postnatal day (PN3 - PN9). Initially, a dose-response study was performed and the doses of 1mg/kg methamidophos and 3mg/kg chlorphrifos, which promoted 20% inhibition of acetylcholinesterase activity in brain were chosen to be used in the next set of experiments. At PN10, one day after exposure, a group of animals was sacrificed and the brainstem and cortex collected and stored to further analysis of cholinergic and serotonergic systems. From PN60 to PN63 the animals were submitted to behavioral tests in order to evaluate: anxiety, locomotor activity, decision making, depressive-like behavior and learning/memory. After the last test, the animals were sacrificed and the brainstem and cortex collected and stored to further analysis of cholinergic and serotonergic systems. At PN10, methamidophos and chlorpyrifos promoted alterations that suggest an increase of cholinergic activity respectively on the brainstem and cortex of females. As for the serotonergic system: only chlorpyrifos elicited alterations: There were increases in 5HT1A receptor and 5HT transporter binding in females and a decrease in 5HT2 receptor binding. At PN63, the activity of acetylcholinesterase had returned to control levels. Despite that, methamidophos elicited a decrease in the activity of choline acetyltransferase in the cortex and in choline transporter binding in the brainstem. As for the serotonergic system, methamidophos and chlorpyrifos promoted decreased 5HT1A receptor binding respectively in the brainstem and cortex of females and chlorpyrifos increased its binding in males. Methamidophos exposure elicited increased 5HT2 binding whereas chlorpyrifos exposure decreased female 5HT transporter binding. Methamidophos elicited behavioral alterations suggestive of increased depressive-like behavior while chlorpyrifos exposure was associated to increased anxiety levels and memory/learning deficits. Our results indicate that metamidophos and chlorpyrifos exposure during development distinctively affect the cholinergic and serotonergic systems even at toxicologically equivalent doses. There were immediate and late-emergent neurochemical effects that may play a role on the behavioral outcomes. Finally, the present study reinforces the epidemiologic association between pesticides exposure and mood disorders and suggest that organophosphate exposure during early development programs for late effects.
4

Neurotoxicidade de pesticidas organofosforados durante o desenvolvimento: alterações bioquímicas e comportamentais / Neurotoxicity of organophosphate pesticides during development: biochemical and behavioral alterations

Carla Soares de Lima Prieto 29 May 2013 (has links)
Pesticidas organofosforados são amplamente usados e seu uso constitui um grave problema de saúde pública. A ação clássica destes compostos é a inibição irreversível da acetilcolinesterase, promovendo acúmulo de acetilcolina nas sinapses e hiperestimulação colinérgica. No entanto, as consequências da exposição a baixas doses podem se estender a outros mecanismos de ação e sistemas neurotransmissores. Considerando que crianças constituem um grupo particularmente vulnerável aos efeitos de pesticidas, neste trabalho investigamos os efeitos da exposição aos organofosforados metamidofós (MET) e clorpirifós (CPF) durante o desenvolvimento sobre os sistemas colinérgico e serotoninérgico e sobre o comportamento de camundongos. Para isso, camundongos suíços foram expostos a injeções subcutâneas de MET, clorpirifós ou veículo do terceiro (PN3) ao nono (PN9) dias de vida pós-natal. As doses de exposição foram previamente escolhidas através da construção de uma curva dose-resposta que identificou como mais adequadas para este estudo as doses de 1mg/kg de MET e 3mg/kg de CPF, as quais promoveram em torno de 20% de inibição da acetilcolinesterase. Em PN10, parte dos animais foi sacrificada e foram avaliados os sistemas colinérgico e serotoninérgico no tronco encefálico e córtex cerebral. De PN60 a PN63, os animais foram submetidos a uma bateria de testes comportamentais. Em seguida, estes animais também foram sacrificados tendo sido avaliados os sistemas colinérgico e serotoninérgico. Em PN10, MET e CPF causaram alterações que sugerem aumento da atividade colinérgica respectivamente no tronco e córtex em fêmeas. No sistema serotoninérgico, apenas CPF promoveu alterações, aumentando a ligação ao receptor 5HT1A e transportador 5HT em fêmeas e diminuindo na ligação ao 5HT2. Em PN63, a atividade da acetilcolinesterase foi reestabelecida em todos os grupos. Ainda assim, MET diminuiu a atividade da colina acetiltransferase no córtex e a ligação ao transportador colinérgico no tronco. Quanto aos efeitos do CPF, no tronco, houve redução da atividade da colina acetiltransferase em fêmeas e aumento em machos. Sobre o sistema serotoninérgico, MET e CPF promoveram diminuições no 5HT1A respectivamente no tronco e córtex das fêmeas e CPF aumentou a ligação no córtex de machos. A ligação ao 5HT2 foi aumentada após o tratamento com MET e ao transportador 5HT foi diminuída em fêmeas após o tratamento com clorpirifós. Sobre o comportamento, identificamos comportamento associado à depressão em animais expostos a MET e aumento dos níveis de ansiedade, além de prejuízo de aprendizado/memória após exposição à CPF. Desta forma, nossos resultados indicam que a exposição à metamidofós e clorpirifós durante o desenvolvimento é capaz de alterar, de diferentes formas, a atividade colinérgica e serotoninérgica, mesmo que as doses de exposição sejam toxicologicamente equivalentes. Foram verificados efeitos nas vias neuroquímicas logo após a exposição e após um longo período de interrupção do tratamento, indicando efeitos tardios em sistemas importantes que podem estar associados às alterações comportamentais. Finalmente, o presente estudo reforça a associação epidemiológica entre pesticidas e alterações psiquiátricas e a capacidade da programação de alterações a longo-prazo quando a exposição se dá durante o desenvolvimento. / Organophosphate pesticides are widely used and its use consist on a severe public health problem. The classic effect of these compounds involve irreversible inhibition of the enzyme acetylcholinesterase, causing an accumulation of acetylcholine at cholinergic synapses and, consequently, cholinergic hyperstimulation. However, when the doses of exposure are low, other the mechanisms of action may play a role and other neurotransmitter systems may be affected. Considering that children are particularly vulnerable to effects of these compounds, in this study we investigated the effects of methamidophos and chlorpyrifos organophosphate exposure during development on cholinergic and serotonergic systems and behavior. For this purpose, Swiss mice received subcutaneous injections of methamidophos or chlorpyrifos, or vehicle from the third to the nineth postnatal day (PN3 - PN9). Initially, a dose-response study was performed and the doses of 1mg/kg methamidophos and 3mg/kg chlorphrifos, which promoted 20% inhibition of acetylcholinesterase activity in brain were chosen to be used in the next set of experiments. At PN10, one day after exposure, a group of animals was sacrificed and the brainstem and cortex collected and stored to further analysis of cholinergic and serotonergic systems. From PN60 to PN63 the animals were submitted to behavioral tests in order to evaluate: anxiety, locomotor activity, decision making, depressive-like behavior and learning/memory. After the last test, the animals were sacrificed and the brainstem and cortex collected and stored to further analysis of cholinergic and serotonergic systems. At PN10, methamidophos and chlorpyrifos promoted alterations that suggest an increase of cholinergic activity respectively on the brainstem and cortex of females. As for the serotonergic system: only chlorpyrifos elicited alterations: There were increases in 5HT1A receptor and 5HT transporter binding in females and a decrease in 5HT2 receptor binding. At PN63, the activity of acetylcholinesterase had returned to control levels. Despite that, methamidophos elicited a decrease in the activity of choline acetyltransferase in the cortex and in choline transporter binding in the brainstem. As for the serotonergic system, methamidophos and chlorpyrifos promoted decreased 5HT1A receptor binding respectively in the brainstem and cortex of females and chlorpyrifos increased its binding in males. Methamidophos exposure elicited increased 5HT2 binding whereas chlorpyrifos exposure decreased female 5HT transporter binding. Methamidophos elicited behavioral alterations suggestive of increased depressive-like behavior while chlorpyrifos exposure was associated to increased anxiety levels and memory/learning deficits. Our results indicate that metamidophos and chlorpyrifos exposure during development distinctively affect the cholinergic and serotonergic systems even at toxicologically equivalent doses. There were immediate and late-emergent neurochemical effects that may play a role on the behavioral outcomes. Finally, the present study reinforces the epidemiologic association between pesticides exposure and mood disorders and suggest that organophosphate exposure during early development programs for late effects.

Page generated in 0.0588 seconds