832 resultados para Long chain alcohols
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Supercritical carbon dioxide (SC-CO(2)) extractions of Brazilian cherry (Eugenia uniflora L.) were carried out under varied conditions of pressure and temperature, according to a central composite 2(2) experimental design, in order to produce flavour-rich extracts. The composition of the extracts was evaluated by gas chromatography coupled with mass spectrometry (GC/MS). The abundance of the extracted compounds was then related to sensory analysis results, assisted by principal component and factorial discriminant analysis (PCA and FDA, respectively). The identified sesquiterpenes and ketones were found to strongly contribute to the characteristic flavour of the Brazilian cherry. The extracts also contained a variety of other volatile compounds, and part of the fruit wax contained long-chain hydrocarbons that according to multivariate analysis, contributed to the yield of the extracts, but not the flavour. Volatile phenolic compounds, to which antioxidant properties are attributed, were also present in the extracts in high proportion, regardless of the extraction conditions. (C) 2010 Elsevier Ltd. All rights reserved.
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In animal models of diet-induced obesity, the activation of an inflammatory response in the hypothalamus produces molecular and functional resistance to the anorexigenic hormones insulin and leptin. The primary events triggered by dietary fats that ultimately lead to hypothalamic cytokine expression and inflammatory signaling are unknown. Here, we test the hypothesis that dietary fats act through the activation of toll-like receptors 2/4 and endoplasmic reticulum stress to induce cytokine expression in the hypothalamus of rodents. According to our results, long-chain saturated fatty acids activate predominantly toll-like receptor 4 signaling, which determines not only the induction of local cytokine expression but also promotes endoplasmic reticulum stress. Rats fed on a monounsaturated fat-rich diet do not develop hypothalamic leptin resistance, whereas toll-like receptor 4 loss-of-function mutation and immunopharmacological inhibition of toll-like receptor 4 protects mice from diet-induced obesity. Thus, toll-like receptor 4 acts as a predominant molecular target for saturated fatty acids in the hypothalamus, triggering the intracellular signaling network that induces an inflammatory response, and determines the resistance to anorexigenic signals.
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Background The incorporation of lipid emulsions in parenteral diets is a requirement for energy and essential fatty acid supply to critically ill patients. The most frequently used IV lipid emulsions (LE) are composed with long-chain triacylglycerols rich in omega-6 polyunsaturated fatty acids (PUFA) from soybean oil, but these LE promote lymphocyte and neutrophil death. A new emulsion containing 20% soybean oil and 80% olive oil rich in (omega-9 monounsaturated fatty acids (MUFA) has been hypothesized not to cause impairment of immune function. In this study, the toxicity of an olive oil-based emulsion (OOE) on lymphocytes and neutrophils from healthy volunteers was investigated. Methods: Twenty volunteers were recruited and blood was. collected before a 6-hour infusion of an OOE, immediately after infusion, and again 18 hours postinfusion. Lymphocytes and neutrophils were isolated by gradient density. The cells were studied immediately after isolation and after 24 hours or 48 hours in culture. The following determinations were carried out: triacylglycerol levels and fatty acid composition and levels in plasma, lymphocyte proliferation, production of reactive oxygen species, and parameters of lymphocyte and neutrophil death (viability, DNA fragmentation, phosphatidylserine externalization, mitochondrial depolarization, and neutral lipid accumulation). Results: OOE decreased lymphocyte proliferation, provoked lymphocyte necrosis, and had no effect on the proportion of viable neutrophils. The mechanism of cell death induced by OOE involved neutral lipid accumulation but had no effect on mitochondrial membrane depolarization. Conclusions: The OOE given as a single dose of 500 mL induced low toxicity to lymphocytes from healthy volunteers, probably by necrosis.
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The discovery of an alternative route to convert poly(xylyliden tetrahydrothiophenium chloride) (PTHT) into poly(p-phenylene vinylene) (PPV) using dodecylbenzenesulfonate (DBS) has allowed the formation of ultrathin films with unprecedented control of architecture and emission properties. In this work, we show that this route may be performed with several sufonated compounds where RSO(3)(-) replaces the counter-ion (Cl(-)) of PTHT, some of which are even more efficient than DBS. Spin-coating films were produced from PTHT and azo-dye molecules, an azo-polymer and organic salts as counter-ions of PTHT. The effects of the thermal annealing step of PTHT/RSO(3)(-) films at 110 and 230 degrees C were monitored by measuring the absorption and emission spectra. The results indicate that the exchange of the counterion Cl(-) of PTHT by a linear long chain with RSO(3)(-) group is a general procedure to obtain PPV polymer at lower conversion temperature (ca. 110 degrees C) with significant increase in the emission efficiency, regardless of the chemical position and the number of sulfonate groups. With the enhanced emission caused by Congo Red and Tinopal as counter-ions, it is demonstrated that the new synthetic route is entirely generic, which may allow accurate control of conversion and emission properties. (C) 2010 Elsevier B.V. All rights reserved.
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Chagas` disease, a parasitic infection caused by the flagellate protozoan Trypanosoma cruzi, is a major public health problem affecting millions of individuals in Latin America. On the basis of the essential role in the life cycle of T. cruzi, the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH) has been considered an attractive target for the development of novel antitrypanosomatid agents. In the present work, we describe the inhibitory effects of a small library of natural and synthetic anacardic acid derivatives against the target enzyme. The most potent inhibitors, 6-n-pentadecyl-(1) and 6-n-dodecylsalicilic acids (10e), have IC(50) values of 28 and 55 mu M, respectively. The inhibition was not reversed or prevented by the addition of Triton X-100, indicating that aggregate-based inhibition did not occur. In addition, detailed mechanistic characterization of the effects of these compounds on the T. cruzi GAPDH-catalyzed reaction showed clear noncompetitive inhibition with respect to both substrate and cofactor. (C) 2008 Elsevier Ltd. All rights reserved.
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The impetus for the increasing interest in studying surface active ionic liquids (SAILs; ionic liquids with long-chain ""tails"") is the enormous potential for their applications, e.g., in nanotechnology and biomedicine. The progress in these fields rests on understanding the relationship between surfactant structure and solution properties, hence applications. This need has prompted us to extend our previous study on 1-(1-hexadecyl)-3-methylimidazolium chloride to 1-(1-alkyl)-3-methylimidazolium chlorides, with alkyl chains containing 10, 12, and 14 carbons. In addition to investigating relevant micellar properties, we have compared the solution properties of the imidazolium-based surfactants with: 1-(1-alkyl)pyridinium chlorides, and benzyl (2-acylaminoethyl)dimethylammonium chlorides. The former series carries a heterocyclic ring head-group, but does not possess a hydrogen that is as acidic as H2 of the imidazolium ring. The latter series carries an aromatic ring, a quaternary nitrogen and (a hydrogen-bond forming) amide group. The properties of the imidazolium and pyridinium surfactants were determined in the temperature range from 15 to 75 degrees C. The techniques employed were conductivity, isothermal titration calorimetry, and static light scattering. The results showed the important effects of the interactions in the interfacial region on the micellar properties over the temperature range studied. (C) 2011 Elsevier Inc. All rights reserved.
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Ionic liquids, ILs, carrying long-chain alkyl groups are surface active, SAIIs. We investigated the micellar properties of the SAIL 1-hexadecyl-3-methylimidazolium chloride, C(16)MeImCl, and compared the data with 1-hexadecylpyridinium chloride, C(16)PYCl, and benzyl (3-hexadecanoylaminoethyl)dimethylammonium chloride, C(15)AEtBzMe(2)Cl. The properties compared include critical micelle concentration, cmc; thermodynamic parameters of micellization; empirical polarity and water concentrations in the interfacial regions. In the temperature range from 15 to 75 degrees C, the order of cmc in H(2)O and in D(2)O is C(16)PYCl > C(16)MeImCl > C(15)AEtBzMe(2)Cl. The enthalpies of micellization, Delta H(mic)(degrees), were calculated indirectly from by use of the van`t Hoff treatment; directly by isothermal titration calorimetry, ITC. Calculation of the degree of counter-ion dissociation, alpha(mic), from conductivity measurements, by use of Evans equation requires knowledge of the aggregation numbers, N(agg), at different temperatures. We have introduced a reliable method for carrying out this calculation, based on the volume and length of the monomer, and the dependence of N(agg) on temperature. The N(agg) calculated for C(16)PyCl and C(16)MeImCl were corroborated by light scattering measurements. Conductivity- and ITC-based Delta H(mic)(degrees) do not agree; reasons for this discrepancy are discussed. Micelle formation is entropy driven: at all studied temperatures for C(16)MeImCl; only up to 65 degrees C for C(16)PyCl; and up to 55 degrees C for C(15)AEtBzMe(2)Cl. All these data can be rationalized by considering hydrogen-bonding between the head-ions of the monomers in the micellar aggregate. The empirical polarities and concentrations of interfacial water were found to be independent of the nature of the head-group. (C) 2010 Elsevier Inc. All rights reserved.
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A adrenoleucodistrofia ligada ao cromossomo X (X-ALD) é uma doença peroxissomal bioquimicamente caracterizada pelo acúmulo de ácidos graxos de cadeia muito longa (“Very Long Chain Fatty Acids” - VLCFA), principalmente os ácidos hexacosanóico (C26:0) e tetracosanóico (C24:0), em diferentes tecidos e fluidos orgânicos. A doença é clinicamente caracterizada por progressiva desmielinização central e periférica e insuficiência adrenal. Os mecanismos exatos do dano cerebral na X-ALD são pouco conhecidos. O tratamento usual para X-ALD com a mistura gliceroltrioleato/gliceroltrierucato na proporção 4:1, conhecido como óleo de Lorenzo (OL), em combinação com uma dieta de restrição dos VLCFA normaliza os níveis de VLCFA, mas em pacientes sintomáticos os sintomas neurológicos persistem ou progridem. Os radicais livres parecem estar envolvidos em um grande número de enfermidades no ser humano, tais como nas doenças neurodegenerativas (como doença de Parkinson, doença de Alzheimer e esclerose múltipla), nas doenças crônico-inflamatórias, nas doenças vasculares e no câncer. Considerando que a geração de radicais livres está envolvida em várias desordens neurodegenerativas, no presente estudo foram avaliados vários parâmetros de estresse oxidativo em plasma, eritrócitos e fibroblastos de pacientes sintomáticos com X-ALD. Também foi avaliado o efeito do tratamento com OL sobre diferentes parâmetros de estresse oxidativo em plasma e em eritrócitos de pacientes sintomáticos e assintomáticos com X-ALD tratados e não tratados com OL. Considerando que não é possível estudar estresse oxidativo em córtex cerebral de pacientes com X-ALD, foi avaliado o efeito in vitro da mistura VI ácido oleico (C18:1)/ácido erúcico (C22:1) sobre diversos parâmetros de estresse oxidativo em plasma e em eritrócitos humanos normais e em córtex cerebral de ratos adicionados dos ácidos hexacosanóico(C26:0) e tetracosanóico (C24:0). Foi verificado um aumento significativo da quimiluminescência e das espécies reativas do ácido tiobarbitúrico (TBA-RS), refletindo uma indução da peroxidação lipídica, bem como uma diminuição da reatividade antioxidante total (TAR) medida em plasma de pacientes sintomáticos, indicando uma capacidade deficiente em rapidamente combater um aumento das espécies reativas. Também foi observado um aumento da atividade da glutationa peroxidase (GPx) em eritrócitos e das atividades da catalase (CAT) e da superóxido dismutase (SOD) em fibroblastos dos pacientes sintomáticos estudados. Estes dados sugerem que o estresse oxidativo pode estar envolvido na fisiopatologia da X-ALD. Verificamos também que o OL não reverteu o aumento do TBA-RS no plasma de indivíduos X-ALD. A determinação de TAR não apresentou alterações no plasma de pacientes X-ALD sintomáticos e assintomáticos antes e após o tratamento com OL. A atividade das enzimas antioxidantes CAT, GPx e SOD não se mostrou alterada em eritrócitos destes pacientes tratados ou não com OL. Nos experimentos in vitro, foi constatado um aumento significativo da quimiluminescência e de TBA-RS em plasma humano e em córtex cerebral de ratos adicionados dos ácidos C26:0C24:0, porém a mistura C18:1/C22:1 não reverteu este efeito. A medida de TAR não se mostrou alterada em córtex cerebral de ratos adicionado de C26:0C24:0, bem como não foi modificada pela mistura C18:1/C22:1. Por outro lado, a adição de C26:0C24:0 em plasma humano diminuiu a medida de TAR, porém a mistura C18:1/C22:1 não alterou esse efeito. As atividades das enzimas antioxidantes CAT e GPx não foram alteradas em eritrócitos humanos e em córtex cerebral de ratos pela adição de C26:0C24:0 , nem pela mistura C18:1/C22:1. O mesmo foi observado na medida de SOD em eritrócitos humanos adicionados de C26:0C24:0. A medida da atividade da SOD em córtex cerebral de ratos apresentou um aumento significativo induzido por C26:0C24:0 , porém a presença da mistura C18:1/C22:1 não modificou este efeito. Estes resultados sugerem fortemente que o estresse oxidativo possa estar envolvido na fisiopatologia da X-ALD e que o tratamento com óleo de Lorenzo não modifica estes parâmetros de estresse oxidativo. Assim, novas estratégias terapêuticas deveriam ser investigadas para pacientes de X-ALD.
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A presente tese teve como objetivo explicar a dinâmica político-institucional que produziu um quadro de relações intergovernamentais polarizado na política de saúde no âmbito do SUS ao final da década de 1990. Tal polarização ocorreu em virtude da presença simultânea de expressivo grau de municipalização e elevada capacidade indutiva e regulatória do Ministério da Saúde. As abordagens anteriores presentes na literatura sobre a descentralização do SUS produziam explicações parciais em virtude de apontarem como fatores explicativos da polarização um conjunto de razões específicas, em especial o escopo expressivamente descentralizador da Constituição de 1988, as preferências municipalistas do Movimento da Reforma Sanitária, o conteúdo das normas operacionais, o legado centralizador da trajetória da política de saúde no Brasil, a agenda centralizadora das reformas econômicas realizadas a partir da implementação do Plano Real, entre outros. Com base no arcabouço teórico do NeoInstitucionalismo Histórico, essa tese propõe uma abordagem que integra os diversos fatores condicionantes do jogo federativo setorial em torno de uma explicação sequencial das decisões que marcaram a trajetória da descentralização do SUS. Nessa abordagem, a trajetória das relações intergovernamentais é o resultado cumulativo de uma longa cadeia de decisões tomadas em contextos singulares que marcaram os governos Collor, Itamar e FHC, onde a escolha de um governo afetou o leque de opções disponíveis ao governo seguinte, deixando-lhe menos margem de mudança. Nessa lógica, a polarização federativa é vista como o produto não intencional de uma sequência de decisões que, acumuladas ao longo da década, concentraram poder, atribuições e recursos na União e nos municípios.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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The biodiesel is defined as the mono-alkyl ester derived from long-chain fatty acids, from renewable sources such as vegetable oils or animal fat, whose use is associated with the replacement of fossil fuels in diesel engine cycle. The biodiesel is susceptible to oxidation when exposed to air and this process of oxidation affects the quality of fuel, mainly due to long periods of storage. Because of this, the oxidation stability has been the focus of numerous researches since it directly affects the producers, distributors and users of fuel. One of the possibilities to increase the resistance of biodiesel is the autoxidation treatment with inhibitors of oxidation. The antioxidants can be used as potential inhibitors of the effects of oxidation on the kinematic viscosity and the index of acidity of biodiesel, thereby increasing oxidative stability. This work aims to examine the efficiency of antioxidants, α-tocopherol and butylated hydroxy-toluene (BHT), added the biodiesel content of remembrance through Pressurized-Differential Scanning Calorimetry (P-DSC), Thermogravimetry (TG) and Petrology. The results showed that the use of antioxidant BHT, at the concentration of 2000ppm, increased resistance to oxidation of the biodiesel and oxidative induction time (OIT), which is a better result as antioxidant than the α-tocopherol. With the thermogravimetric analysis, it was observed that the biodiesel presented an initial decomposition temperature of lower tendency than that of oil, demonstrating to be more volatile, bearing great similarity to the diesel and being characterized as an alternative fuel. The rheological analysis indicated that each sample of biodiesel behaved as a Newtonian fluid
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Biodiesel is a fuel made up by mono-alkyl-esters of long chain fatty acids, derived from vegetable oils or animal fat. This fuel can be used in compression ignition engines for automotive propulsion or energy generation, as a partial or total substitute of fossil diesel fuel. Biodiesel can be processed from different mechanisms. Transesterification is the most common process for obtaining biodiesel, in which an ester compound reacts with an alcohol to form a new ester and a new alcohol. These reactions are normally catalyzed by the addition of an acid or a base. Initially sunflower, castor and soybean oil physicochemical properties are determined according to standard test methods, to evaluate if they had favorable conditions for use as raw material in the transesterification reaction. Sunflower, castor and soybean biodiesel were obtained by the methylic transesterification route in the presence of KOH and presented a yield above 93% m/m. The sunflower/castor and soybean/castor blends were studied with the aim of evaluating the thermal and oxidative stability of the biofuels. The biodiesel and blends were characterized by acid value, iodine value, density, flash point, sulfur content, and content of methanol and esters by gas chromatography (GC). Also studies of thermal and oxidative stability by Thermogravimetry (TG), Differential Scanning Calorimetry High Pressure (P-DSC) and dynamic method exothermic and Rancimat were carried out. Biodiesel sunflower and soybean are presented according to the specifications established by the Resolution ANP no 7/2008. Biodiesel from castor oil, as expected, showed a high density and kinematic viscosity. For the blends studied, the concentration of castor biodiesel to increased the density, kinematic viscosity and flash point. The addition of castor biodiesel as antioxidant in sunflower and soybean biodiesels is promising, for a significant improvement in resistance to autoxidation and therefore on its oxidative stability. The blends showed that compliance with the requirements of the ANP have been included in the range of 20-40%. This form may be used as a partial substitute of fossil diesel
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A carnitina, uma amina quaternária (3-hidroxi-4-N-trimetilamino-butirato), é sintetizada no organismo (fígado, rins e cérebro) a partir de dois aminoácidos essenciais: lisina e metionina, exigindo para sua síntese a presença de ferro, ácido ascórbico, niacina e vitamina B6. Tem função fundamental na geração de energia pela célula, pois age nas reações transferidoras de ácidos graxos livres do citosol para mitocôndrias, facilitando sua oxidação e geração de adenosina Trifosfato. A concentração orgânica de carnitina é resultado de processos metabólicos - como ingestão, biossíntese, transporte dentro e fora dos tecidos e excreção - que, quando alterados em função de diversas doenças, levam a um estado carencial de carnitina com prejuízos relacionados ao metabolismo de lipídeos. A suplementação de L-carnitina pode aumentar o fluxo sangüíneo aos músculos devido também ao seu efeito vasodilatador e antioxidante, reduzindo algumas complicações de doenças isquêmicas, como a doença arterial coronariana, e as conseqüências da neuropatia diabética. Por esse motivo, o objetivo do presente trabalho foi descrever possíveis benefícios da suplementação de carnitina nos indivíduos com necessidades especiais e susceptíveis a carências de carnitina, como os portadores de doenças renais, neuropatia diabética, síndrome da imunodefeciência adquirida e doenças cardiovasculares.