690 resultados para omega 3 fatty acid


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Increased intake of dietary carbohydrate that is fermented in the colon by the microbiota has been reported to decrease body weight, although the mechanism remains unclear. Here we use in vivo11C-acetate and PET-CT scanning to show that colonic acetate crosses the blood–brain barrier and is taken up by the brain. Intraperitoneal acetate results in appetite suppression and hypothalamic neuronal activation patterning. We also show that acetate administration is associated with activation of acetyl-CoA carboxylase and changes in the expression profiles of regulatory neuropeptides that favour appetite suppression. Furthermore, we demonstrate through 13C high-resolution magic-angle-spinning that 13C acetate from fermentation of 13C-labelled carbohydrate in the colon increases hypothalamic 13C acetate above baseline levels. Hypothalamic 13C acetate regionally increases the 13C labelling of the glutamate–glutamine and GABA neuroglial cycles, with hypothalamic 13C lactate reaching higher levels than the ‘remaining brain’. These observations suggest that acetate has a direct role in central appetite regulation.

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Purpose: Diabetic myocardium is particularly vulnerable to develop heart failure in response to chronic stress conditions including hypertension or myocardial infarction. We have recently observed that angiotensin II (Ang II)-mediated downregulation of the fatty acid oxidation pathway favors occurrence of heart failure by myocardial accumulation of lipids (lipotoxicity). Because diabetic heart is exposed to high levels of circulating fatty acid, we determined whether insulin resistance favors development of heart failure in mice with Ang II-mediated myocardial remodeling.Methods: To study the combined effect of diabetes and Ang II-induced heart remodeling, we generated leptin-deficient/insulin resistant (Lepob/ob) mice with cardiac targeted overexpression of angiotensinogen (TGAOGN). Left ventricular (LV) failure was indicated by pulmonary congestion (lung weight/tibial length>+2SD of wild-type mice). Myocardial metabolism and function were assessed during in vitro isolated working heart perfusion.Results: Forty-eight percent of TGAOGN mice without insulin resistance exhibited pulmonary congestion at the age of 6 months associated with increased myocardial BNP expression (+375% compared with WT) and reduced LV power (developed pressure x cardiac output; -15%). The proportion of mice presenting heart failure was markedly increased to 71% in TGAOGN mice with insulin resistance (TGAOGN/Lepob/ob). TGAOGN/Lepob/ob mice with heart failure exhibited further increase of BNP compared with failing non-diabetic TGAOGN mice (+146%) and further reduction of cardiac power (-59%). Mice with insulin resistance alone (Lepob/ob) did not exhibit signs of heart failure or LV dysfunction. Myocardial fatty acid oxidation measured during in vitro perfusion was markedly increased in non-failing hearts from Lepob/ob mice (+380% compared with WT) and glucose oxidation decreased (-72%). In contrast, fatty acid and glucose oxidation did not differ from Lepob/ob mice in hearts from TGAOGN/Lepob/ob mice without heart failure. However, both fatty acid and glucose oxidation were markedly decreased (-47% and -48%, respectively, compared with WT/Lepob/+) in failing hearts from TGAOGN/Lepob/ob mice. Reduction of fatty acid oxidation was associated with marked reduction of protein expression of a number of regulatory enzymes implied in fatty acid oxidation.Conclusions: Insulin resistance favors the progression to heart failure during chronic exposure of the myocardium to Ang II. Our results are compatible with a role of Ang II-mediated downregulation of fatty acid oxidation, potentially promoting lipotoxicity.

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A 3D in vitro model of rat organotypic brain cell cultures in aggregates was used to investigate neurotoxicity mechanisms in glutaric aciduria type I (GA-I). 1 mM glutarate (GA) or 3-hydroxyglutarate (3OHGA) were repeatedly added to the culture media at two different time points. In cultures treated with 3OHGA, we observed an increase in lactate in the medium, pointing to a possible inhibition of Krebs cycle and respiratory chain. We further observed that 3OHGA and to a lesser extend GA induced an increase in ammonia production with concomitant decrease of glutamine concentrations, which may suggest an inhibition of the astrocytic enzyme glutamine synthetase. These previously unreported findings may uncover a pathogenic mechanism in this disease which has deleterious effects on early stages of brain development. By immunohistochemistry we showed that 3OHGA increased non-apoptotic cell death. On the cellular level, 3OHGA and to a lesser extend GA led to cell swelling and loss of astrocytic fibers whereas a loss of oligodendrocytes was only observed for 3OHGA. We conclude that 3OHGAwas the most toxic metabolite in our model for GA-I. 3OHGA induced deleterious effects on glial cells, an increase of ammonia production, and resulted in accentuated cell death of non-apoptotic origin.

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The unnatural threo-6-acetoxy-5-hexadecanolide and the natural mosquito oviposition pheromone erythro-6-acetoxy-5-hexadecanolide were synthesized in a diastereodivergent fashion in 44% and 33% overall yield respectively from 5-bromovaleric acid and undecanal. The key step utilized a chemoenzymatic epoxidation-lactonization of a naturally available fatty acid to form the 6-hydroxy-5-hexadecanolide core.17 The epoxidation strategy was later adapted to allow for an asymmetric synthesis. Shi epoxidation afforded highly enantioenriched (5R, 6R)-6-hydroxyhexadecanolide (er = 10) in 70 % overall yield. Other derivatives of the chiral ketone catalyst were also screened. Finally, attempts were made to obtain the correct stereochemistry at C(6) of the target with a dynamic kinetic transformation using lipase and a transfer hydrogenation catalyst. Epimerization of the lactol with the transfer hydrogenation catalyst was successful, but lipase mediated reactions halted at <10 % conversion.

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Contexte L’américanisation des habitudes de vie, notamment de l’alimentation, semble être en grande partie responsable de l’augmentation incessante de l’incidence élevée des maladies cardiovasculaires. La période postprandiale, où l’homéostasie vasculaire et métabolique est mise à l’épreuve, est d’une importance considérable dans le développement ou la prévention de l’athérosclérose et représente maintenant la majeure partie du temps d’éveil. La compréhension de l’influence de la composition d’un repas sur son impact postprandial est donc essentielle dans notre lutte dans la prévention de ces maladies. Objectifs L’objectif principal de ce projet de recherche était d’étudier les réponses endothéliale et métabolique à un repas de type méditerranéen mixte (MMM), puisqu’elles sont inconnues. Ce projet avait aussi pour objectifs d’évaluer l’impact microvasculaire d’un tel repas et de caractériser la composition postprandiale des acides gras plasmatiques. À titre comparatif, ces éléments ont aussi été étudiés suite à un repas riche en gras saturés (HSFAM). Méthodes Vingt-huit (28) hommes sains, exempts de facteurs de risque de maladies cardiovasculaires ont reçu de façon randomisée les deux repas à l’étude. Le MMM, composé de saumon frais et de légumes cuits dans l'huile d'olive, contenait 7.87g de SFA et 2.29g d’acides gras polyinsaturés oméga-3, tandis que le HSFAM, composé d'un sandwich déjeuner avec œuf, saucisse et fromage, contenait 14.78g de SFA. Les mesures de la fonction endothéliale mesurée par échographie brachiale (FMD), de la fonction microvasculaire mesurée par spectroscopie proche de l’infrarouge (NIRS) et de la composition des acides gras plasmatique ont été effectuées à jeun et en période postprandiale. Résultats Deux sous-groupes de répondeurs aux repas à l’étude se sont dégagés de ces travaux. Un premier sous-groupe de sujets ayant une triglycéridémie à jeun élevée, mais normale (hnTG) a démontré des altérations endothéliales seulement suivant le repas HSFAM. Un second sous-groupe de sujets ayant une triglycéridémie plus faible et normale (lnTG) n’a quant à lui pas subi d’altérations endothéliales suivant les deux repas à l’étude. Les sujets hnTG ont aussi démontré une charge triglycéridémique postprandiale (iAUC) plus importante et qui était de surcroît enrichie en acide stéarique suivant la HSFAM et en acide gras polyinsaturés oméga-3 suivant le MMM. L’évaluation par NIRS de la fonction microvasculaire nous révèle un ralentissement de la réoxygénation post-ischémique qui suggère une altération postprandiale du recrutement capillaire chez les sujets hnTG seulement. De telles altérations, qui semblent être plus importantes suivant le HSFAM, pourraient être en partie responsables de l’impact endothélial de ce repas. Conclusions Cet essai clinique démontre donc de façon novatrice qu’un repas MMM n’a pas d’effet endothélial délétère et que cette neutralité est indépendante de la triglycéridémie à jeun. De plus, une triglycéridémie à jeun élevée mais normale semble indiquer des dysfonctions endothéliales et métaboliques à des épreuves nutritionnelles tel un repas HSFAM. La consommation de repas méditerranéens par des individus sains à la triglycéridémie marginale serait bénéfique, peut-être même davantage que pour des individus de triglycéridémie plus faible, dans la prévention de l’athérogénèse et des maladies cardiovasculaires.

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Problématique : La période périnatale est critique pour la santé et le développement de l’enfant. Les problèmes de santé mentale pendant la grossesse et après l’accouchement peuvent mener à des conséquences néfastes sur le développement de l’enfant et les issues plus tardives de sa santé. Cette thèse se concentre sur deux problèmes de santé mentale périnatale d’intérêt substantiel : le stress psychosocial pendant la grossesse et la dépression postnatale. Méthodes : Dans la première partie, nous donnons un aperçu de la dépression postnatale et effectuons une revue de la littérature portant sur deux facteurs de risque qui suscitent un nouvel intérêt, soit le génotype du transporteur de la sérotonine et l’état des acides gras oméga-3 polyinsaturés. Ensuite, dans le cadre de la deuxième partie, nous effectuons une revue de la littérature sur le stress psychosocial pendant la grossesse et la naissance prématurée, le tout en discutant les mécanismes physiologiques reliant ces deux derniers. Puis, nous examinons les liens existant entre le stress psychosocial et la durée de gestation au sein de la cohorte 3D, une étude longitudinale réalisée au Québec. Pour conclure, nous effectuons une investigation plus détaillée sur les facteurs de risque de l’anxiété liée à la grossesse dans la cohorte 3D, ceci en mettant l’accent sur l’historique des grossesses antérieures. Résultats : Dans la première partie, trois études menées rigoureusement révèlent des associations entre le génotype du transporteur de la sérotonine et la dépression postnatale. De même, les preuves s’accumulent à l’effet qu’une insuffisance en acides gras oméga-3 polyinsaturés soit associée à un risque plus élevé de dépression postnatale. Des données probantes préliminaires suggèrent qu’il pourrait y avoir une interaction entre les deux nouveaux facteurs de risque. Dans la deuxième partie, la littérature montre des liens entre le stress psychosocial pendant la grossesse et la naissance prématurée qui varient selon les dimensions du stress et le moment de mesure de celui-ci. Des associations plus fortes sont généralement trouvées plus tôt durant la gestation, alors que la perception subjective du stress et l’anxiété liée à la grossesse sont les plus étroitement associées à la naissance prématurée. Les voies comportementales, infectieuses, neuroinflammatoires, et neuroendocriniennes sont identifiées comme mécanismes physiologiques potentiels. Dans notre étude sur le stress psychosocial et la durée de la gestation au sein la cohorte 3D, nous avons observé une faible association entre l’anxiété liée à la grossesse au troisième trimestre et la naissance spontanée avant 39 semaines de gestation. Dans notre étude sur l’histoire obstétrique et l’anxiété liée à la grossesse, des liens indépendants ont été observés entre plusieurs issues de grossesses antérieures et l’anxiété liée à une grossesse subséquente. Conclusions : Les données probantes de la première partie soutiennent un programme de recherche ayant pour but de clarifier les liens entre les acides gras oméga-3 polyinsaturés, le génotype du transporteur de la sérotonine et la dépression postnatale. Dans la deuxième partie, nos résultats mettent en lumière l’importance relative du stress psychosocial comme prédicteur de la durée de gestation, tout en faisant une contribution importante pour des méta-analyses futures. Ils suggèrent d’ailleurs de nouvelles pistes de recherche pour les cadres conceptuels liant le stress et les issues de la naissance.

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The Setschenow parameters of solubility in salt solutions and the thermodynamic parameters (25·C) of transfer from aqueous solution to aqueous salt solutions for 2-nitrobenzoic acid and 3-nitrobenzoic acid have been reported. The data have been rationalized on the basis of the localized hydrolysis model and the structure breaking action of ions of the electrolytes.

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Considering the major role of insulin signaling on fatty acid synthesis via stimulation of lipogenic enzymes, differential effects of insulin signaling on individual carbon fluxes for fatty acid synthesis have been investigated by comparing the individual lipogenic fluxes in WT and IRS-1 knockout (IRS-1 KO) brown adipocytes. Results from experiments on WT and IRS-1 KO cells incubated with [5-¹³C] glutamine were consistent with the existence of reductive carboxylation pathway. Analysis of isotopomer distribution of nine metabolites related to the lipogenic routes from glucose and glutamine in IRS-1 KO cells using [U-¹³C] glutamine as compared to that in WT cells indicated that flux through reductive carboxylation pathway was diminished while flux through conventional TCA cycle was stimulated due to absence of insulin signaling in IRS-1 KO cells. This observation was confirmed by quantitative estimation of individual lipogenic fluxes in IRS-1 KO cells and their comparison with fluxes in WT cells. Thus, these results suggest that glutamine’s substantial contribution to fatty acid synthesis can be directly manipulated by controlling the flux through reductive carboxylation of alpha-ketoglutarate to citrate using hormone (insulin).

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Increasing recognition of the importance of the long-chain n-3 PUFA, EPA and DHA, to cardiovascular health, and in the case of DHA to normal neurological development in the fetus and the newborn, has focused greater attention on the dietary supply of these fatty acids. The reason for low intakes of EPA and DHA in most developed countries (0 center dot 1-0 center dot 5hairspg/d) is the low consumption of oily fish, the richest dietary source of these fatty acids. An important question is whether dietary intake of the precursor n-3 fatty acid, alpha-linolenic acid (alpha LNA), can provide sufficient amounts of tissue EPA and DHA by conversion through the n-3 PUFA elongation-desaturation pathway. alpha LNA is present in marked amounts in plant sources, including green leafy vegetables and commonly-consumed oils such as rape-seed and soyabean oils, so that increased intake of this fatty acid would be easier to achieve than via increased fish consumption. However, alpha LNA-feeding studies and stable-isotope studies using alpha LNA, which have addressed the question of bioconversion of alpha LNA to EPA and DHA, have concluded that in adult men conversion to EPA is limited (approximately 8%) and conversion to DHA is extremely low (< 0 center dot 1%). In women fractional conversion to DHA appears to be greater (9%), which may partly be a result of a lower rate of utilisation of alpha LNA for beta-oxidation in women. However, up-regulation of the conversion of EPA to DHA has also been suggested, as a result of the actions of oestrogen on Delta 6-desaturase, and may be of particular importance in maintaining adequate provision of DHA in pregnancy. The effect of oestrogen on DHA concentration in pregnant and lactating women awaits confirmation.

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The purpose of this study was to improve the prediction of the quantity and type of Volatile Fatty Acids (VFA) produced from fermented substrate in the rumen of lactating cows. A model was formulated that describes the conversion of substrate (soluble carbohydrates, starch, hemi-cellulose, cellulose, and protein) into VFA (acetate, propionate, butyrate, and other VFA). Inputs to the model were observed rates of true rumen digestion of substrates, whereas outputs were observed molar proportions of VFA in rumen fluid. A literature survey generated data of 182 diets (96 roughage and 86 concentrate diets). Coefficient values that define the conversion of a specific substrate into VFA were estimated meta-analytically by regression of the model against observed VFA molar proportions using non-linear regression techniques. Coefficient estimates significantly differed for acetate and propionate production in particular, between different types of substrate and between roughage and concentrate diets. Deviations of fitted from observed VFA molar proportions could be attributed to random error for 100%. In addition to regression against observed data, simulation studies were performed to investigate the potential of the estimation method. Fitted coefficient estimates from simulated data sets appeared accurate, as well as fitted rates of VFA production, although the model accounted for only a small fraction (maximally 45%) of the variation in VFA molar proportions. The simulation results showed that the latter result was merely a consequence of the statistical analysis chosen and should not be interpreted as an indication of inaccuracy of coefficient estimates. Deviations between fitted and observed values corresponded to those obtained in simulations. (c) 2005 Elsevier Ltd. All rights reserved.

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A feedlot trial was conducted to determine the effect of dietary vitamin A concentration and roasted soybean (SB) inclusion on carcass characteristics, adipose tissue cellularity, and muscle fatty acid composition. Angus-crossbred steers (n = 168; 295 +/- 1.8 kg) were allotted to 24 pens (7 steers each). Four treatments, in a 2 x 2 factorial arrangement, were investigated: no supplemental vitamin A, no roasted soybeans (NANS); no vitamin A, roasted SB (20% of the diet on a DM basis; NASB); with supplemental (2,700 IU/kg) vitamin A, no roasted SB (WANS); and with supplemental vitamin A, roasted SB (WASB). Diets included high moisture corn, 5% corn silage, 10 to 20% supplement, and 20% roasted SB in the SB treatments on a DM basis. The calculated vitamin A concentration in the basal diet was < 1,300 IU/kg of DM. Blood samples (2 steers/pen) were collected for serum vitamin A determination. Steers were slaughtered after 168 d on feed. Carcass characteristics and LM composition were determined. Fatty acid composition of LM was analyzed, and adipose cellularity in the i.m. and s.c. depots was determined. No vitamin A x SB interactions were detected (P > 0.10) for cattle performance, carcass composition, or muscle fatty acid composition. Low vitamin A diets (NA) did not affect (P > 0.05) ADG, DMI, or G:F. Quality grade tended (P = 0.07) to be greater in NA steers. Marbling scores and the percentage of carcasses grading > or = Choice(-) were 10% greater for NA steers, although these trends were not significant (P = 0.11 and 0.13, respectively). Backfat thickness and yield grade were not affected (P > 0.26) by vitamin A supplementation. Composition of the LM was not affected (P > 0.15) by vitamin A or SB supplementation. Serum retinol at slaughter was 44% lower (P < 0.01) for steers fed NA than for steers supplemented with vitamin A (23.0 vs. 41.1 microg/dL). A vitamin A x SB interaction occurred (P < 0.05) for adipose cellularity in the i.m. depot; when no SB was fed, vitamin A supplementation decreased cell density and increased cell size. However, when SB was fed, vitamin A supplementation did not affect adipose cellularity. Adipose cellularity at the s.c. depot was not affected (P > 0.18) by vitamin A or SB treatments. Fatty acid profile of the LM was not affected by vitamin A (P > 0.05), but SB increased (P < 0.05) PUFA (7.88 vs. 4.30 g/100 g). It was concluded that feeding NA tended to increase marbling without affecting back-fat and yield grade. It appeared that NA induced hyperplasia in the i.m. but not in the s.c. fat depot.