974 resultados para SUBSTANTIA-NIGRA
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In temporal lobe epilepsy (TLE) seizures, tonic or clonic motor behaviors (TCB) are commonly associated with automatisms, versions, and vocalizations, and frequently occur during secondary generalization. Dystonias are a common finding and appear to be associated with automatisms and head deviation, but have never been directly linked to generalized tonic or clonic behaviors. The objective of the present study was to assess whether dystonias and TCB are coupled in the same seizure or are associated in an antagonistic and exclusive pattern. Ninety-one seizures in 55 patients with TLE due to mesial temporal sclerosis were analyzed. Only patients with postsurgical seizure outcome of Engel class I or II were included. Presence or absence of dystonia and secondary generalization was recorded. Occurrence of dystonia and occurrence of bilateral tonic or clonic behaviors were negatively correlated. Dystonia and TCB may be implicated in exclusive, non-coincidental, or even antagonistic effects or phenomena in TLE seizures. A neural network related to the expression of one behavioral response (e.g., basal ganglia activation and dystonia) might theoretically ""displace"" brain activation or disrupt the synchronism of another network implicated in pathological circuit reverberation and seizure expression. The involvement of basal ganglia in the blockade of convulsive seizures has long been observed in animal models. The question is: Do dystonia and underlying basal ganglia activation represent an attempt of the brain to block imminent secondary generalization? (C) 2007 Elsevier Inc. All rights reserved.
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The weaver mouse represents the only genetic animal model of gradual nigrostriatal dopaminergic neurodegeneration which is proposed as a pathophysiological phenotype of Parkinson`s disease. The aim of the present study was to analyze the nitric oxide and dopaminergic systems in selected brain regions of homozygous weaver mice at different postnatal ages corresponding to specific stages of the dopamine loss. Structural deficits were evaluated by quantification of tyrosine hydroxylase and neuronal nitric oxide synthase-immunostaining in the cortex, striatum, accumbens nuclei, subthalamic nuclei, ventral tegmental area, and substantia nigra compacta of 10-day, 1- and 2-month-old wildtype and weaver mutant mice. The results confirmed the progressive loss of dopamine during the postnatal development in the adult weaver mainly affecting the substantia nigra pars compacta, striatum, and subthalamic nucleus and slightly affecting the accumbens nuclei and ventral tegmental area. A general decrease in neuronal nitric oxide synthase-immunostaining with age was revealed in both the weaver and wild-type mice, with the decrease being most pronounced in the weaver. In contrast, there was an increase in the substantia nigra pars compacta nitric oxide synthase-immunostaining and a decrease mainly in the subthalamic and accumbens nuclei of the 2-month-old weaver mutant. The decrease in the expression of nNOS may bear functional significance related to the process of aging. DA neurons from the substantia nigra directly modulate the activity of subthalamic nucleus neurons, and their loss may contribute to the abnormal activity of subthalamic nucleus neurons. Although the functional significance of these changes is not clear, it may represent plastic compensating adjustments resulting from the loss of dopamine innervation, highlighting a possible role of nitric oxide in this process. (C) 2010 Elsevier B.V. All rights reserved.
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Omega-3 polyunsaturated fatty acids (omega-3 PUFAs) have been widely associated to beneficial effects over different neuropathologies, but only a few studies associate them to Parkinson`s disease (PD). Rats were submitted to chronic supplementation (21-90 days of life) with fish oil, rich in omega-3 PUFAs, and were uni- or bilaterally lesioned with 4 mu g of the neurotoxin 6-hydroxydopamine (6-OHDA) in the medial forebrain bundle Although lipid incorporation was evidenced in neuronal membranes, it was not sufficient to compensate motor deficits induced by 6-OHDA. In contrast, omega-3 PUFAs were capable of reducing rotational behavior induced by apomorphine, suggesting neuroprotection over dyskinesia The beneficial effects of omega-3 PUFAs were also evident in the maintenance of thiobarbituric acid reactive substances index from animals lesioned with 6-OHDA similar to levels from SHAM and intact animals. Although omega-3 PUFAs did not modify the tyrosine hydroxylase immunoreactivity in the substantia nigra pars compacta and in the ventral tegmental area, nor the depletion of dopamine (DA) and its metabolites in the striatum, DA turnover was increased after omega-3 PUFAs chronic supplementation Therefore, it is proposed that omega-3 PUFAs action characterizes the adaptation of remaining neurons activity. altering striatal DA turnover without modifying the estimated neuronal population. (C) 2009 Elsevier Ireland Ltd and the Japan Neuroscience Society. All rights reserved
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Many studies have shown that deficits in olfactory and cognitive functions precede the classical motor symptoms seen in Parkinson`s disease (PD) and that olfactory testing may contribute to the early diagnosis of this disorder. Although the primary cause of PD is still unknown, epidemiological studies have revealed that its incidence is increased in consequence of exposure to certain environmental toxins. In this study, most of the impairments presented by C57BL/6 mice infused with a single intranasal (i.n.) administration of the proneurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) (1 mg/nostril) were similar to those observed during the early phase of PD, when a moderate loss of nigral dopamine neurons results in olfactory and memory deficits with no major motor impairments. Such infusion decreased the levels of the enzyme tyrosine hydroxylase in the olfactory bulb, striatum, and substantia nigra by means of apoptotic mechanisms, reducing dopamine concentration in different brain structures such as olfactory bulb, striatum, and prefrontal cortex, but not in the hippocampus. These findings reinforce the notion that the olfactory system represents a particularly sensitive route for the transport of neurotoxins into the central nervous system that may be related to the etiology of PD. These results also provide new insights in experimental models of PD, indicating that the i.n. administration of MPTP represents a valuable mouse model for the study of the early stages of PD and for testing new therapeutic strategies to restore sensorial and cognitive processes in PD.
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There is considerable evidence showing that the neurodegenerative processes that lead to sporadic Parkinson`s disease (PD) begin many years before the appearance of the characteristic motor symptoms and that impairments in olfactory, cognitive and motor functions are associated with time-dependent disruption of dopaminergic neurotransmission in different brain areas. Midkine is a 13-kDa retinoic acid-induced heparin-binding growth factor involved in many biological processes in the central nervous system such as cell migration, neurogenesis and tissue repair. The abnormal midkine expression may be associated with neurochemical dysfunction in the dopaminergic system and cognitive impairments in rodents. Here, we employed adult midkine knockout mice (Mdk(-/-)) to further investigate the relevance of midkine in dopaminergic neurotransmission and in olfactory, cognitive and motor functions. Mdk(/-) mice displayed pronounced impairments in their olfactory discrimination ability and short-term social recognition memory with no gross motor alterations. Moreover, the genetic deletion of midkine decreased the expression of the enzyme tyrosine hydroxylase in the substantia nigra reducing partially the levels of dopamine and its metabolites in the olfactory bulb and striatum of mice. These findings indicate that the genetic deletion of midkine causes a partial loss of dopaminergic neurons and depletion of dopamine, resulting in olfactory and memory deficits with no major motor impairments. Therefore, Mdk(-/-) mice may represent a promising animal model for the study of the early stages of PD and for testing new therapeutic strategies to restore sensorial and cognitive processes in PD.
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There is evidence that nitric oxide plays a role in the neurotransmitter balance within the basal ganglia and in the pathology of Parkinson`s disease. In the present work we investigated in striatal 6-hydroxydopamine (6-OHDA) lesioned rats the effects of a nitric oxide synthase (NOS) inhibitor, NG-nitro-L-arginine (L-NOARG), given systemically on both the dopaminergic (DA) neuronal loss and the neuronal NOS cell density. We analyzed the DA neuronal loss through tyrosine hydroxylase immunohistochemistry (TH). The nitrergic system was evaluated using an antibody against the neuronal NOS (nNOS) isoform. Treatment with the L-NOARG significantly reduced 6-OHDA-induced dopaminergic damage in the dorsal striatum, ventral substantia nigra and lateral globus pallidus, but had no effects in the dorsal substantia nigra and in the cingulate cortex. Furthermore, L-NOARG reduced 6-OHDA-induced striatal increase, and substantia nigra compacta decrease, in the density of neuronal nitric oxide synthase positive cells. These results suggest that nitric oxide synthase inhibition may decrease the toxic effects of 6-OHDA on dopaminergic terminals and on dopamine cell bodies in sub-regions of the SN and on neuronal nitric oxide synthase cell density in the rat brain. (c) 2008 Elsevier B.V. All rights reserved.
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Iron homeostasis is altered in Parkinson's disease (PD). The HFE protein is an important regulator of cellular iron homeostasis and variations within this gene can result in iron overload and the disorder known as hereditary haemochromatosis. We studied the Cys282Tyr single nucleotide polymorphism as a genetic risk factor for PD in two distinct and separately collected cohorts of Australian PD patients and controls. In the combined cohort comprising 438 PD patients and 485 control subjects, we revealed an odds ratio for possession of the 282Tyr allele of 0.61 (95% confidence interval, Cl = 0.42-0.90, P = 0.011) from univariate chi-squared and 0.59 (95% Cl = 0.39-0.90, P = 0.014) after logistic regression analyses (correcting for potential confounding factors). These results suggest that possession of the 282Tyr allele may offer some protection against the development of PD. (C) 2002 Elsevier Science Ireland Ltd. All rights reserved.
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Dissertação para obtenção do Grau de Mestre em Engenharia Biomédica
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do Grau de Mestre em Engenharia Biomédica
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Dissertação para obtenção do Grau de Mestre em Engenharia Biomédica
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A doença de Parkinson (DP) é uma das patologias neurodegenerativas com maior incidência na população mundial com mais de 60 anos de idade. A sua progressão é acompanhada de uma redução acentuada da qualidade de vida dos pacientes, tornando-se vital procurar novos métodos que permitam entender os mecanismos fisiopatológicos da doença e auxiliem o seu diagnóstico em ambiente clínico. Estudos anteriores têm demonstrado que a neuromelanina, um pigmento localizado na região da substantia nigra pars compacta (SN), está presente nos neurónios produtores de dopamina e nos neurónios noradrenérgicos do locus coeruleus, sendo a sua perda uma das principais características patológicas da DP. Sabendo que a neuromelanina possui propriedades paramagnéticas é possível identificá-la em imagens de ressonância magnética ponderadas em T1. O objectivo deste trabalho passa pela procura de soluções para melhorar os processos de filtragem e segmentação utilizados num programa desenvolvido previamente para a segmentação desta região e assim conduzir à introdução da ferramenta em ambiente clínico. São também objectivos do trabalho o estudo da evolução temporal da área estimada da SN em grupos de doentes com DP e em voluntários saudáveis, investigar potenciais efeitos da medicação da DP na área de neuromelanina e ainda identificar eventuais alterações na concentração deste pigmento em pacientes com Tremor Essencial (TE) auxiliando o diagnóstico diferencial com a DP. Os resultados obtidos permitiram identificar um novo processo de filtragem bastante superior ao anteriormente utilizado e optimizar o processo de segmentação. Foi ainda possível diferenciar o grupo de controlo dos doentes com DP com base nas áreas medidas para a SN. Os pacientes de TE não revelaram alterações na área da neuromelanina face ao grupo de controlo contrastando com os doentes com DP. Concluiu-se que o protocolo de aquisição condiciona a qualidade das imagens e deve ser melhorado no futuro. A diferenciação entre doentes com DP e indivíduos saudáveis permite que a ferramenta seja relevante a nível do diagnóstico destas patologias. Foi ainda possível demonstrar que este método permite distinguir entre TE e DP, um resultado que poder ter grande relevância em futuras aplicações.
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A Doença de Parkinson (PD) e o Tremor Essencial (ET) são duas doenças neurológicas, crónicas e progressivas. Mundialmente, estima-se que a PD afete cerca de 1% da populaçãom com mais de 65 anos e que o ET afete até 5% da população com mais de 40 anos. A PD é o principal diagnóstico diferencial do ET, sendo que o diagnóstico se baseia em critérios clínicos cuja sensibilidade e especificidade em fase precoce da doença pode ser baixa. Como tal, é necessário descobrir biomarcadores que auxiliem o diagnóstico destas doenças e a sua diferenciação. Com recurso à técnica de imagem de RM com tensores de difusão (DTI) e à análise com regiões de interesse, este estudo teve como principal objetivo avaliar se os valores de anisotropia fracional (FA) e de difusibilidade média (MD) medidos em 11 regiões neuroanatómicas, podem ser biomarcadores precoces da PD e do ET. Teve também como objetivos estudar a reprodutibilidade destas medições, a sua evolução no espaço de 1 ano e se nos doentes com diagnóstico inicial de PD esses valores eram influenciados pela medicação anti-parkinsónica. Como resultado deste estudo foram encontradas alterações nos valores de FA ao nível do pedúnculo cerebeloso médio e nos valores de MD ao nível do núcleo lenticular (NL), pedúnculo cerebeloso superior e núcleo dentado. Foi também verificado que na substantia nigra, núcleo caudado e NL, os valores de FA e MD são satisfatoriamente reprodutíveis, não se alteram com o início da medicação anti-parkinsónica e que de uma forma geral não variam significativamente no espaço de 1 ano. Estes resultados comprovam que os valores de FA e MD medidos nas referidas regiões neuroanatómicas podem constituir potenciais biomarcadores que auxiliem os clínicos no diagnóstico precoce e diferencial da PD e do ET, bem como na monitorização da progressão destas doenças.
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A presente dissertação foi desenvolvida em colaboração com o Instituto de Biofísica e Engenharia Biomédica (IBEB/FCUL) e com o serviço de Neurologia do Hospital de Santa Maria (HSM)
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Tese de Doutoramento em Ciências da Saúde
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Neuheit, Neuheitsverarbeitung, Gedächtnis, Priming, Langzeitgedächtnis, Gedächtnisbildung, fMRT, Mittelhirn, medialer Temporallappen, Dopamin, Neuromodulation, Substantia nigra, Area tegmentalis ventralis