823 resultados para DIS


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Ammonia is neurotoxic and believed to play a major role in the pathogenesis of hepatic encephalopathy (HE). It has been demonstrated, in vitro and in vivo, that acute and high ammonia treatment induces oxidative stress. Reactive oxygen species (ROS) are highly reactive and can lead to oxidization of proteins resulting in protein damage. The present study was aimed to assess oxidative status of proteins in plasma and brain (frontal cortex) of rats with 4-week portacaval anastomosis (PCA). Markers of oxidative stress, 4-hydroxy-2-nonenal (HNE) and carbonylation were evaluated by immunoblotting in plasma and frontal cortex. Western blot analysis did not demonstrate a significant difference in either HNE-linked or carbonyl derivatives on proteins between PCA and sham-operated control rats in both plasma and frontal cortex. The present study suggests PCA-induced hyperammonemia does not lead to systemic or central oxidative stress.

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Increased binding sites for "peripheral-type" benzodiazepine receptor (PTBR) ligands have been described in a wide range of neurological disorders including both human and experimental epilepsy. This study was undertaken to assess PTBR expression in relation to the presence of hippocampal sclerosis in human temporal lobe epilepsy (TLE). For this purpose, hippocampal CA1 subfields were dissected from surgical samples from patients with therapy-refractive TLE with (n = 5) or without (n = 2) hippocampal sclerosis and from age-matched nonepileptic postmortem controls (n = 5). PTBR expression was assessed by immunohistochemistry and reverse-transcription polymerase chain reaction. Receptor sites were evaluated using an in vitro binding assay and the selective PTBR ligand [3H]PK11195. Epileptic patients with hippocampal sclerosis showed increases in PTBR binding sites, immunoreactivity, and mRNA expression compared to both nonsclerotic TLE patients and postmortem nonepileptic controls. Induction of PTBR expression and binding sites were directly correlated with the presence of hippocampal sclerosis and the accompanying reactive gliosis.

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Chronic liver failure leads to hyperammonemia and consequently increased brain ammonia concentrations, resulting in hepatic encephalopathy. When the liver fails to regulate ammonia concentrations, the brain, devoid of a urea cycle, relies solely on the amidation of glutamate to glutamine through glutamine synthetase, to efficiently clear ammonia. Surprisingly, under hyperammonemic conditions, the brain is not capable of increasing its capacity to remove ammonia, which even decreases in some regions of the brain. This non-induction of glutamine synthetase in astrocytes could result from possible limiting substrates or cofactors for the enzyme, or an indirect effect of ammonia on glutamine synthetase expression. In addition, there is evidence that nitration of the enzyme resulting from exposure to nitric oxide could also be implicated. The present review summarizes these possible factors involved in limiting the increase in capacity of glutamine synthetase in brain, in chronic liver failure.

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Glutamatergic dysfunction has been suggested to play an important role in the pathogenesis of hepatic encephalopathy (HE) in acute liver failure (ALF). Increased extracellular brain glutamate concentrations have consistently been described in different experimental animal models of ALF and in patients with increased intracranial pressure due to ALF. High brain ammonia levels remain the leading candidate in the pathogenesis of HE in ALF and studies have demonstrated a correlation between ammonia and increased concentrations of extracellular brain glutamate both clinically and in experimental animal models of ALE Inhibition of glutamate uptake or increased glutamate release from neurons and/or astrocytes could cause an increase in extracellular glutamate. This review analyses the effect of ammonia on glutamate release from (and uptake into) both neurons and astrocytes and how these pathophysiological mechanisms may be involved in the pathogenesis of HE in ALF.

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Strategies aimed at the lowering of blood ammonia remain the treatment of choice in portal-systemic encephalopathy (PSE). L-ornithine-L-aspartate (OA) has recently been shown to be effective in the prevention of ammonia-precipitated coma in humans with PSE. These findings prompted the study of mechanisms of the protective effect of OA in portacaval-shunted rats in which reversible coma was precipitated by ammonium acetate administration (3.85 mmol/kg i.p.). OA infusions (300 mg/kg/h, i.v) offered complete protection in 12/12 animals compared to 0/12 saline-infused controls. This protective effect was accompanied by significant reductions of blood ammonia, concomitant increases of urea production and significant increases in blood and cerebrospinal fluid (CSF) glutamate and glutamine. Increased CSF concentrations of leucine and alanine also accompanied the protective effect of OA. These findings demonstrate the therapeutic efficacy of OA in the prevention of ammonia-precipitated coma in portacaval-shunted rats and suggest that this protective effect is both peripherally-mediated (increased urea and glutamine synthesis) and centrally-mediated (increased glutamine synthesis).

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Amongst the potential neurotoxins implicated in the pathogenesis of hepatic encephalopathy, manganese emerges as a new candidate. In patients with chronic liver diseases, manganese accumulates in blood and brain leading to pallidal signal hyperintensity on T1-weighted Magnetic Resonance (MR) Imaging. Direct measurements in globus pallidus obtained at autopsy from cirrhotic patients who died in hepatic coma reveal 2 to 7-fold increases of manganese concentration. The intensity of pallidal MR images correlates with blood manganese and with the presence of extrapyramidal symptoms occurring in a majority of cirrhotic patients. Liver transplantation results in normalization of pallidal MR signals and disappearance of extrapyramidal symptoms whereas transjugular intrahepatic portosystemic shunting induces an increase in pallidal hyperintensity with a concomitant deterioration of neurological dysfunction. These findings suggest that the toxic effects of manganese contribute to extrapyramidal symptoms in patients with chronic liver disease. The mechanisms of manganese neurotoxicity are still speculative, but there is evidence to suggest that manganese deposition in the pallidum may lead to dopaminergic dysfunction. Future studies should be aimed at evaluating the effects of manganese chelation and/or of treatment of the dopaminergic deficit on neurological symptomatology in these patients.

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Mild hypothermia (32 degrees C-35 degrees C) reduces intracranial pressure in patients with acute liver failure and may offer an effective adjunct therapy in the management of these patients. Studies in experimental animals suggest that this beneficial effect of hypothermia is the result of a decrease in blood-brain ammonia transfer resulting in improvement in brain energy metabolism and normalization of glutamatergic synaptic regulation. Improvement in brain energy metabolism by hypothermia may result from a reduction in ammonia-induced decrease of brain glucose (pyruvate) oxidation. Restoration of normal glutamatergic synaptic regulation by hypothermia may be the consequence of the removal of ammonia-induced decreases in expression of astrocytic glutamate transporters resulting in normal glutamate neurotransmitter inactivation in brain. Randomized controlled clinical trials of hypothermia are required to further evaluate its clinical impact.

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The development of encephalopathy in patients with acute liver injury defines the occurrence of liver failure. The encephalopathy of acute liver failure is characterized by brain edema which manifests clinically as increased intracranial pressure. Despite the best available medical therapies a significant proportion of patients with acute liver failure die due to brain herniation. The present review explores the experimental and clinical data to define the role of hypothermia as a treatment modality for increased intracranial pressure in patients with acute liver failure.

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The effects of chronic liver insufficiency resulting from end-to-side portacaval anastomosis (PCA) on glutamine synthetase (GS) activities, protein and gene expression were studied in brain, liver and skeletal muscle of male adult rats. Four weeks following PCA, activities of GS in cerebral cortex and cerebellum were reduced by 32\% and 37\% (p<0.05) respectively whereas GS activities in muscle were increased by 52\% (p<0.05). GS activities in liver were decreased by up to 90\% (p<0.01), a finding which undoubtedly reflects the loss of GS-rich perivenous hepatocytes following portal-systemic shunting. Immunoblotting techniques revealed no change in GS protein content of brain regions or muscle but a significant loss in liver of PCA rats. GS mRNA determined by semi-quantitative RT-PCR was also significantly decreased in the livers of PCA rats compared to sham-operated controls. These findings demonstrate that PCA results in a loss of GS gene expression in the liver and that brain does not show a compensatory induction of enzyme activity, rendering it particularly sensitive to increases in ammonia in chronic liver failure. The finding of a post-translational increase of GS in muscle following portacaval shunting suggests that, in chronic liver failure, muscle becomes the major organ responsible for the removal of excess blood-borne ammonia.

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Evidence from both clinical and experimental studies demonstrates that mild hypothermia prevents encephalopathy and brain edema in acute liver failure (ALF). As part of a series of studies to elucidate the mechanism(s) involved in this protective effect, groups of rats with ALF resulting from hepatic devascularization were maintained at either 37°C (normothermic) or 35°C (hypothermic), and neurological status was monitored in relation to cerebrospinal fluid (CSF) concentrations of ammonia and lactate. CSF was removed via implanted cisterna magna catheters. Mild hypothermia resulted in a delay in onset of encephalopathy and prevention of brain edema; CSF concentrations of ammonia and lactate were concomitantly decreased. Blood ammonia concentrations, on the other hand, were not affected by hypothermia in ALF rats. These findings suggest that brain edema and encephalopathy in ALF are the consequence of ammonia-induced impairment of brain energy metabolism and open the way for magnetic resonance spectroscopic monitoring of cerebral function in ALF. Mild hypothermia could be beneficial in the prevention of severe encephalopathy and brain edema in patients with ALF awaiting liver transplantation.

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Elevated concentrations of ammonia in the brain as a result of hyperammonemia leads to cerebral dysfunction involving a spectrum of neuropsychiatric and neurological symptoms (impaired memory, shortened attention span, sleep-wake inversions, brain edema, intracranial hypertension, seizures, ataxia and coma). Many studies have demonstrated ammonia as a major player involved in the neuropathophysiology associated with liver failure and inherited urea cycle enzyme disorders. Ammonia in solution is composed of a gas (NH(3)) and an ionic (NH(4) (+)) component which are both capable of crossing plasma membranes through diffusion, channels and transport mechanisms and as a result have a direct effect on pH. Furthermore, NH(4) (+) has similar properties as K(+) and, therefore, competes with K(+) on K(+) transporters and channels resulting in a direct effect on membrane potential. Ammonia is also a product as well as a substrate for many different biochemical reactions and consequently, an increase in brain ammonia accompanies disturbances in cerebral metabolism. These direct effects of elevated ammonia concentrations on the brain will lead to a cascade of secondary effects and encephalopathy.

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Introduction : Cette thèse est constituée de trois articles liés les uns aux autres. Le premier s’attache à clarifier les perspectives théoriques et problèmes conceptuels entourant la notion de capacité/incapacité au travail, sa définition et son évolution au fil du temps. Les deuxième et troisième articles visent à évaluer les effets différentiels selon le genre de déterminants du retour au travail (RAT) et de la durée d’indemnisation ainsi que les coûts associés, dans une population de travailleurs indemnisés à long terme pour troubles musculosquelettiques (TMS). Méthodes : Dans le premier article, une revue systématique des définitions de l’(in)capacité au travail et une analyse comparative basée sur la théorisation ancrée débouchent sur une carte conceptuelle intégrative. Dans le second article, une cohorte de 455 adultes en incapacité à long terme pour TMS au dos/cou/membres supérieurs est suivie cinq ans au travers d’entretiens structurés et de données d’indemnisation. Des modèles de Cox stratifiés par genre ont été utilisés pour évaluer la durée jusqu’au premier RAT. Dans le troisième article, une cohorte populationnelle de 13,073 hommes et 9032 femmes en incapacité prolongée pour TMS au dos/cou/membres supérieurs a été suivie pendant trois ans à l’aide de données administratives. Des modèles de Cox stratifiés par genre ont été utilisés pour étudier la durée d’indemnisation et détecter les effets dépendants du temps. Les coûts ont également été examinés. Résultats : Les définitions analysées dans la première étude ne reflètent pas une vision intégrée et partagée de l’(in)capacité au travail. Cependant, un consensus relatif semble émerger qu’il s’agit d’un concept relationnel, résultant de l’interaction de multiples dimensions aux niveaux individuel, organisationnel et sociétal. La seconde étude montre que malgré des courbes de survie jusqu’au RAT similaires entre hommes et femmes (p =0.920), plusieurs déterminants diffèrent selon le genre. Les femmes plus âgées (HR=0.734, par tranches de 10 ans), d’un statut économique perçu comme pauvre (HR=0.625), travaillant ≥40 heures/semaine en ayant des personnes à charge (HR=0.508) et ne connaissant pas l’existence d’un programme de santé et sécurité sur leur lieu de travail (HR=0.598) retournent moins vite au travail, tandis qu’un revenu brut annuel plus élevé (par $10,000) est un facteur facilitant (HR=1.225). Les hommes de plus de 55 ans (HR=0.458), au statut économique perçu comme pauvre (HR=0.653), travaillant ≥40 heures/semaine avec une charge de travail physique perçue élevée (HR=0.720) et une plus grande précarité d’emploi (HR=0.825) retournent moins rapidement au travail. La troisième étude a révélé que trois ans après la lésion, 12.3% des hommes et 7.3% des femmes étaient encore indemnisés, avec un ratio de coûts homme-femme pour l’ensemble des réclamations de 2.1 :1. L’effet de certain prédicteurs (e.g. revenu, siège de lésion, industrie) varie selon le genre. De plus, l’effet de l’âge chez les hommes et l’effet de l’historique d’indemnisation chez les femmes varient dans le temps. Conclusion : La façon de définir l’(in)capacité au travail a des implications importantes pour la recherche, l’indemnisation et la réadaptation. Les résultats confirment également la pertinence d’investiguer les déterminants du RAT et de l’indemnisation selon le genre.

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Although ammonia is considered the main factor involved in the pathogenesis of hepatic encephalopathy (HE), it correlates well with the severity of HE in acute liver failure, but not in chronic liver disease. Oxidative stress is another factor believed to play a role in the pathogenesis of this syndrome; it represents an imbalance between the production and neutralization of reactive oxygen species, which leads to cellular dysfunction. In the setting of liver disease, oxidative stress represents a systemic phenomenon induced by several mechanisms: decreased antioxidant synthesis, increased systemic release of oxidant enzymes, generation of reactive oxygen species, and impaired neutrophil function. High ammonia concentrations induce cerebral oxidative stress, thus contributing to severe hepatic encephalopathy, as observed in acute liver failure. In chronic liver disease, significantly lower degrees of hyperammonemia (<500 μM) do not induce cerebral nor systemic oxidative stress. Data from both animal and human studies sustain that there is a synergistic effect between systemic oxidative stress, and ammonia that is implicated in the pathogenesis of hepatic encephalopathy.

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Inspiré par la réflexion épistémologique de l'anthropologue Michel Verdon, ce mémoire propose un cadre conceptuel pour l'étude de l'organisation sociale des castes en Inde. L'ethnographie de Jonathan Parry, Caste and Kinship in Kangra, est analysée et réinterprétée dans un langage dit « opérationnel ». Les différentes approches des castes oscillent entre deux pôles théoriques opposés : l'idéalisme, représenté notamment par la démarche structuraliste de Louis Dumont, et le substantialisme, jadis adopté par les dirigeants coloniaux et incarné plus récemment dans les travaux de Dipankar Gupta. Toutes deux holistes, ces options conduisent pourtant à une impasse dans l'étude comparative de l'organisation sociale, car elles rendent les groupes « ontologiquement variables » et, par conséquent, incomparables. En repensant les prémisses sur lesquelles repose la conception générale de l'organisation sociale, un cadre opérationnel confère à la notion de groupe une réalité binaire, discontinue, évitant ainsi la variabilité ontologique des groupes et favorisant le comparatisme. Il rend également possible l'étude des rapports entre groupes et réseaux. La relecture de l'ethnographie Caste and Kinship in Kangra montre la pertinence d'une telle approche dans l'étude des castes. Le caractère segmentaire de ces dernières est remis en cause et l'autonomie des foyers, qui forment des réseaux d'alliances en matière d'activités rituelles, est mise de l'avant. Cette nouvelle description incite enfin à de nouvelles comparaisons.

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Série de l'Observatoire des fédérations