921 resultados para Compostos organocalcogênios


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Epidemiological studies have shown an inverse relationship between nuts, including walnuts, intakes and chronic diseases such as cardiovascular diseases and cancers. The nuts contain phenolics compounds and flavonoids and are rich in tocopherol, phytosterols, and squalene. They are sources of carbohydrates, essential fatty acids and minerals. Since walnuts contain high levels of n-3 fatty acids and low unsaturated fatty acids, high levels of vitamin E, pholyphenols, flavonoids, arginine and fiber. The compounds possible beneficial effects are due to their antioxidant and antiproliferative activities, which are linked to a reduced risk for developing atherosclerosis and cancer. In recent years, the consumers have been showing an increased interest in nuts and walnuts because of their nutritional qualities and their potential beneficial effects on people’s health This review aims to describe the importance of beneficial bioactive compounds present in nuts and walnuts.

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This study presents a literature review which shows the nutritional, medicinal and antioxidant importance of mushrooms. In this research, the main antioxidant compounds of mushrooms, such as phenolic acids, flavonoids and tocopherols, as well as their mechanisms of action were described. The main in vitro methods used for evaluation of the antioxidant activity of these compounds were approached. The influences from the solvent polarity and the kind of extraction in the acquisition of the antioxidant compounds were also discussed. It was possible to conclude that mushrooms are a source of carbohydrates, proteins and minerals, thus presenting nutritional properties. The functional and medicinal properties are attributed to glucans, besides being excellent sources of natural antioxidants. Regarding the extraction process, it was noticed that the solvent polarity used in the extraction process is determinant in the obtainment of antioxidant compounds.

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Living organisms are constantly subjected to the action of free radicals, which are one of the causes of oxidation reactions, because they have on free electron, what makes it very reactive. They are products of organism reactions or they are produced by exogenous factors, such as tobacco. Fatty acids are the most vulnerable target, and may suffer lipid peroxidation, what affects the cell structure. Cardiovascular diseases, cancer and diseases of aging are occurrence of these reactions in the organism related. The aliments are also subjected to suffer oxidation reactions, what make them unfit for consumption and decreasing the useful life. Synthetics antioxidants are used as aliments preservatives, but they present some toxicity for the organism. Studies for the utilization of natural antioxidants have gained more importance in recent decades, due to the conservation potential and low toxicity. Phenolics compounds are largely present at the vegetable kingdom and they present high antioxidant potential due to the neutralization and kidnapping of free radicals capacity. These compounds are used by the industry at the aliments conservation, specially the phenolics acids. The consumption of aliments rich in phenolic compounds, such as teas, wines and fruits are low incidence of degenerative diseases related. This study consists in a bibliographic revision that covers these compounds importance in diet and at the food conservation, and the methodologies and difficulties in the extraction process due to variety of molecules of this group.

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A large amount of external factors that can foster the emergence of free radicals in organisms has created a imminent need for understanding and technologies that enables the search of antioxidant componds and extraction of antioxidants from natural sources. These compounds have great potential for kidnapping free radicals which are highly harmful to organisms, being the principal responsible for the decrease in the shelf life of foods, and aging. These free radicals are also related to diseases such as AIDS, arthritis, diabetes, heart disease and others. Fruits and vegetables are true mines of compounds with antioxidant potential, its vitamins and phenolic compounds present an essential role in the nutrition of living beings acting as a defense against degradation of lipids and proteins, which indicates the importance of a diet rich in these nutrients, given that part of the antioxidant defenses of the body comes from the diet. This revision study aims to put in evidence the indispensable role of antioxidants in the survival of organisms.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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A necessidade de fazer com que haja um aumento no consumo de hortaliças se faz crescente no mundo inteiro, isso porque esta é uma fonte rica em micronutrientes e macronutrientes, além de não agregar muito valor calórico na dieta e ser um alimento acessível para todas as classes econômicas. Entretanto, no Brasil, é verificado que a porcentagem da população que consome diariamente o recomendado de hortaliças e frutas ainda não atingiu o ideal para que se possa obter os benefícios trazidos do consumo, como a prevenção de algumas doenças não transmissíveis, através da dieta. Por isso, a necessidade de se estudar maneiras diferentes de cozimento das hortaliças, para que se torne possível preparar os vegetais de maneiras diferentes e torná-los mais atrativos, garantindo a melhor forma de fazê-los, para que se escolha o tratamento que melhor conserva o conteúdo de compostos bioativos. Para esse estudo foram considerados dois vegetais de grande importância, o espinafre (SpinaciaoleraceaL.) e a chicória (ChicoriumintybusL.), que foram submetidos a quatro tratamentos de cozimentos dististintos, a 100°C, no vapor, no microondas e no óleo, para cada tratamento foi avaliado parâmetros de cor, análise de sólidos solúveis totais, acidez titulável, determinação de ácido ascórbico, determinação de fenólicos e flavonoides totais, avaliação da atividade sequestrante de radicais livres (DPPH e ABTS) e carotenoides. Os resultados obtidos foram bastante diversificados, ou seja, para cada teste desenvolvido houve uma retenção maior do composto bioativo estudado em determinado cozimento preparado, entretanto o tratamento realizado a 100°C foi o tratamento que obteve menor retenção dos compostos bioativos entre os testes realizados.

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Atualmente observa-se uma diminuição no consumo de verduras entre os brasileiros, especialmente na região norte e nordeste do país, entre jovens e aos estratos sociais de baixa escolaridade. Entretanto, o consumo de verduras forma a base de excelência para uma alimentação saudável além de ser indispensável no dia-a-dia. Dentre as verduras de destaque encontram-se a couve-manteiga e o almeirão, que são verduras baratas, amplamente disponíveis no país e que contam com a presença de diferentes tipos de antioxidantes. Antioxidantes são compostos bioativos que possuem múltiplas propriedades, mas que se destacam pelo seu potencial de óxido-redução e por sua capacidade de competir por sítios ativos e receptores de estruturas celulares. Esses mecanismos estão descritos como sendo moduladores da resposta inflamatória, além de serem preventivos de várias condições e doenças. Incluem-se nessa classe os compostos fenólicos, que são produtos do metabolismo secundário dos vegetais e têm sua atividade devido a interação com espécies radicalares, tendo como um dos seus principais componentes os flavonoides, que são metabólitos secundários da classe dos polifenois, tendo seu consumo relacionado a diminuição do risco de doenças coronarianas e alguns tipos de câncer. O objetivo desse trabalho foi avaliar o efeito de quatro diferentes processos de cozimento (microondas, cozimento a vapor, cozimento em água fervente e fritura a óleo), em duas verduras de grande consumo no Brasil, em relação as quantidades de ácido ascórbico, acidez, compostos fenólicos totais, flavonoides totais e atividade sequestrante de radicais livres e verificar qual melhor método de cozimento que mantenha esses compostos. Os resultados obtidos demonstram que não há uma uniformidade nas alterações...

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The albendazole and mebendazole drugs are benzimidazole derivatives and belong to the anthelmintic class. These drugs are particularly recommended for the treatment against worms present in the gastrointestinal tract of animals and humans, by acting directly on the worm metabolism. The need for thermally study drugs is related to all the parameters that these analyzes include: presence or absence of polymorphs, possible changes in the crystallinity of the drugs, as well as the quality control during the manufacturing process thereof. In this study the thermal behavior of anthelmintic albendazole and commercial mebendazole and its recrystallisation in organic solvents, such as acetic acid and formic acid in dimethylformamide to mebendazole, and albendazole were studied using TG-DSC techniques, TG-FTIR, FTIR and XRD. TG-DSC techniques were used so it could collect information about the thermal stability of the compounds steps for thermal decomposition process and also prove its melting temperature. For recrystallization of drugs in organic solvents, the TG-DSC curves were analyzed to compare and determine that the occurrence of polymorphs. The coupled TG-FTIR technique allowed the analysis of volatile products which were released during the thermal decomposition of the commercial mebendazole. The absorption spectroscopy in the infrared region was performed to mebendazole, and albendazole in order to show the difference in functional groups of both, comparing the spectra with commercial drugs and see if there was recrystallized changes in the absorption band where the drug was recrystallized or when heated. The diffraction technique by powder X-ray method was used for comparison of the crystal structures of commercial drugs and recrystallization in organic solvents to identify changes in crystallinity both, which might suggest the formation of polymorphs

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Pós-graduação em Agronomia (Horticultura) - FCA

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)