80 resultados para pequi


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O pequi (Caryocar brasiliense Camb. ) tem se destacado por ser um fruto oleaginoso e rico em carotenoides. A secagem é um processo utilizado na extração do óleo por hexano, mas a degradação dos carotenoides e óleo podem ocorrer. O objetivo deste trabalho foi avaliar a influência de diferentes métodos de secagem (ao sol, estufa ventilada a 40 e a 60 °C) e do tempo (4 horas e até peso constante) no rendimento e na qualidade do óleo extraído por hexano no extrator Soxhlet. Quando a polpa de pequi foi seca, 3% ou conteúdo menor de umidade e maior rendimento do óleo foi obtido (52 a 59%, base seca). Carotenoides totais foram maiores e índice de peróxido menores para a polpa desidratada a 40 °C em estufa ventilada, quando comparada com a secagem da polpa em estufa a 60 °C e ao sol. Estes resultados indicaram que a secagem em estufa a 40 °C por 19 horas resultou num maior rendimento do óleo e menor degradação térmica.

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In order to assure that the use of cerrado fruits occur in a sustainable way, studies to investigate their characteristics are extremely relevant. In this context, the present study aims to describe some chemical parameters of pequi fruits picked in three municipalities in southwestern Goiás State (Jataí, Rio Verde, and Serranópolis). In each city, two populations of pequi trees - pequizeiros, denominated areas, were selected. In each area, eight trees were selected for the fruit to be picked. The contents of phosphorus, potassium, calcium, magnesium, nitrogen, zinc, and ether extract were determined in the samples. The results demonstrate differences between the chemical characteristics studied for the fruits picked in different areas, which does not seem to vary in a significant way. Comparing the contents obtained in the present study with those required as human daily supply, further studies are recommended aiming at using the pequi fruit as a complementary alternative source of magnesium, manganese, and copper.

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O presente trabalho de pesquisa teve como objetivo desenvolver um processo de obtenção de pasta de pequi (Caryocar brasiliense) para uso culinário e avaliar a sua estabilidade quando acondicionada em embalagens de plástico e de vidro durante 180 dias de armazenamento. O processamento da pasta envolveu: descascamento, retirada da polpa em forma de lascas, obtenção da pasta em liquidificador, acidificação do produto com ácido cítrico até um pH < 4,5 e adição de 10% de NaCl (para evitar o desenvolvimento de microrganismos deterioradores e o escurecimento enzimático), tratamento térmico convencional a 80 ºC durante 10 minutos e enchimento a quente em potes de vidro e de plástico com capacidade de 200 mL. O produto final foi armazenado à temperatura ambiente (± 28 ºC) e submetido a análises físico-químicas de pH e acidez e a análises microbiológicas de contagem de fungos e leveduras, coliformes totais e termotolerantes durante um período de 180 dias. Quanto ao tipo de embalagem utilizada, o vidro mostrou-se mais eficiente que a embalagem plástica na proteção contra deterioração microbiana e físico-química, da perda de cor da pasta. Nas embalagens plásticas, após os 60 dias de armazenamento, as pastas apresentavam-se bastante escurecidas, entretanto, nas embaladas de vidro não foi constatada nenhuma evidência de deterioração, apresentando-se em bom estado durante os 120 dias de armazenamento. Para as pastas acondicionadas em vidro, foi observada também uma diminuição do pH e um aumento da acidez durante o armazenamento. Do ponto de vista microbiológico e físico-químico, a pasta de pequi acondicionada em embalagem de vidro manteve-se estável durante 120 dias, à temperatura ambiente.

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Caryocar brasiliense (popular name pequi) is widely consumed by the population of Brazilian Savannah. This fruit has a high concentration of monounsaturated fatty acids that can influence positively the lipid profile. In addition, pequi also has an important concentration of saturated fatty acids which, in turn, is associated with atherosclerosis risk. This study aimed to investigate the effect of a pequi-supplemented diet on blood lipid and glucose levels and hepatic histology. Female Albino swiss mice were divided into three groups and fed a standard chow diet (control group), chow diet supplemented with 33% pequi nut (nut group), and chow diet supplemented with 33% pequi pulp (pulp group). After 6 weeks, following an overnight fast, blood and liver were collected for posterior analyses. Serum total cholesterol and HDL-cholesterol were significantly higher in mice fed pequi-rich diets compared to the control group. Nevertheless, there was no modification in blood triglycerides, atherogenic fraction, and glucose levels. In addition, there was development of liver microvesicular steatosis related to pequi intake. In conclusion, the diets supplemented with pequi nut or pulp reduced the atherogenic risk by increasing the anti-atherogenic lipoproteins without changing the pro-atherogenic fraction in mice.

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The objective of this study was to analyze the physicochemical properties and carotenoid levels of pequi oil obtained by different extraction methods and to evaluate the preservation of these properties and pigments during storage time. The pequi oil was obtained by solvent extraction, mechanical extraction, and hot water flotation. It was stored for over 180 days in an amber bottle at ambient conditions. Analyses for the determination of the acidity, peroxide, saponification and iodine values, coloration, total carotenoids, and β-carotene levels were conducted. The oil extraction with solvents produced the best yield and carotenoid levels. The oil obtained by mechanical extraction presented higher acidity (5.44 mg KOH.g-1) and peroxide values (1.07 mEq.kg-1). During the storage of pequi oil, there was an increase in the acidity and the peroxide values, darkening of the oil coloration, and a reduction of the carotenoid levels. Mechanical extraction is the less advantageous method for the conservation of the physicochemical properties and carotenoid levels in pequi oil.

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Pequi peel comprises 76% of the whole fruit and it is discarded during consumption. Thus, pequi peel has been considered a solid residue, although it has potential for use in various applications. Limitations in the use of this material are mainly due to the lack of information of its nutritional composition, especially about the toxic or antinutritional factors. Soaking is often used to prepare complementary foods and has been reported to be beneficial for enhancing nutritive value. The effect of soaking on the nutritional quality of pequi peel flour was determined by measuring changes in chemical composition, antinutritional factors, total phenols and in vitro protein and starch digestibility. The results showed that 24 h of maceration increases the content of lipids (200%), protein (28.3%) and dietary fibber (31%), while carbohydrate and ash content decreases. There were no haemagglutination activity or α-amylase inhibitors, but it was detected the presence of phytic acid (0.4 g 100 g-1). The soaking reduced 8.5% phenols and 19.0% tannins, 6.2% protein digestibility, and was also effective to eliminate trypsin inhibitors, and increase starch digestibility (24.2%). Soaking was efficient to improve nutritional characteristics of the pequi peel flour, opening up possibilities for its use in food formulations.

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In order to determine the variability of pequi tree (Caryocar brasiliense Camb.) populations, volatile compounds from fruits of eighteen trees representing five populations were extracted by headspace solid-phase microextraction and analyzed by gas chromatography-mass spectrometry. Seventy-seven compounds were identified, including esters, hydrocarbons, terpenoids, ketones, lactones, and alcohols. Several compounds had not been previously reported in the pequi fruit. The amount of total volatile compounds and the individual compound contents varied between plants. The volatile profile enabled the differentiation of all of the eighteen plants, indicating that there is a characteristic profile in terms of their origin. The use of Principal Component Analysis and Cluster Analysis enabled the establishment of markers (dendrolasin, ethyl octanoate, ethyl 2-octenoate and β-cis-ocimene) that discriminated among the pequi trees. According to the Cluster Analysis, the plants were classified into three main clusters, and four other plants showed a tendency to isolation. The results from multivariate analysis did not always group plants from the same population together, indicating that there is greater variability within the populations than between pequi tree populations.

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This study investigated the colour, proximate composition, bioactive compounds (phenolic and carotenoid contents), and antioxidant activity of the pulp of pequi from different regions of the Brazilian Savanna. The colour parameters and the lipid and carotenoid contents of the pulp were significantly different between the samples. The lipid content ranged from 135.4 to 322.5 g/kg. The pequi pulp showed high total phenolic content (1.8 to 3.3 mg GAE/g). The carotenoid amount ranged from 37 to 187 µg/g. The carotenoid content was significantly correlated with the colour and lipid content of the pequi pulp. The antioxidant activity showed a mean IC50 value of 197.9 µg/mL. The pequi pulp is rich in phenolic compounds and carotenoids and has a good antioxidant activity. Its colour is influenced by the carotenoid content, which can be predicted by regression models using routine colour parameters.

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The objective of this study was to characterize the development of pequi fruit (Caryocar brasiliense) of the Brazilian cerrado. It takes 84 days (12 weeks) for pequi to develop with the onset of flowering in September and early fruit set in January. Pequi fruit showed a simple sigmoid growth curve, and its growth was characterized based on fresh mass and longitudinal and transverse diameters. The contents of titratable acidity, soluble solids, β-carotene, and vitamin C increased during fruit growth, reaching their maximum values at the 12th week (84 days) after anthesis. Pequi is a fruit with an extremely high respiratory activity; its respiratory rate decreased during its development. Pequi fruit has been classified as a non-climacteric fruit due to the decrease of both respiration and ethylene production rates during maturation and ripening.

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O pequi é um dos frutos mais abundantes no Cerrado, sendo sua polpa muito apreciada na culinária regional, porém, sua amêndoa (também comestível) é pouco aproveitada. O consumo da amêndoa crua pode acarretar em problemas digestivos, devido à possível presença de fatores antinutricionais, assim como a torra pode alterar, nutricionalmente, a amêndoa. Este trabalho objetivou verificar a composição centesimal, o perfil de ácidos graxos e os fatores antinutricionais, em amêndoas de pequi crua e torrada (a 270ºC, por 15 minutos), oriundas do Estado de Goiás e submetidas às análises de composição centesimal (umidade, proteínas, lipídeos, cinzas, carboidratos e valor energético), perfil de ácidos graxos e fatores antinutricionais (inibidores de tripsina, tanino e fitatos). A composição centesimal e os fatores antinutricionais, respectivamente para as amêndoas crua e torrada, apresentaram os seguintes teores: umidade: 25,40% e 1,70%; cinzas: 3,90% e 4,60%; proteínas: 13,40% e 14,70%; lipídeos: 24,70% e 25,70%; carboidratos: 32,50% e 53,30%; e valor energético: 406,20 kcal/100 g e 503,00 kcal/100 g, com ausência de inibidores de tripsina e taninos com 1,21% e 1,17% e fitatos com 2,64% e 1,86%. No perfil de ácidos graxos, respectivamente para as amêndoas crua e torrada, foram obtidos 86,90% e 84,61% de ácidos saturados e 10,57% e 10,40% de insaturados. A torra das amêndoas não influenciou, significativamente (p > 0,05), somente a variável proteína, interferindo, assim, nas características nutricionais e antinutricionais.

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A casca de pequi é um resíduo do processamento do fruto, encontrado em grande volume nas regiões do cerrado brasileiro, que pode constituir uma alternativa para a alimentação de ruminantes. Avaliou-se a cinética da degradação ruminal da matéria seca (MS), proteína bruta (PB) e fibra em detergente neutro (FDN) do farelo da casca de pequi (FCP) e de dietas contendo diferentes níveis do resíduo em substituição ao capim-elefante (CE). Foram utilizados quatro caprinos, machos, portando cânulas ruminais, dispostos em um delineamento experimental de blocos ao acaso com parcela subdividida. Avaliaram-se os parâmetros de degradabilidade do FCP, capim-elefante e de dietas contendo 0, 10, 20 e 30% de FCP em substituição ao CE. Os alimentos foram incubados no rúmen nos tempos de 4, 8, 12, 24, 48, 72 e 96 horas. Os resultados indicaram degradação potencial da MS, PB e FDN do resíduo superiores a 90, 80 e 80%, respectivamente. A adição do FCP em substituição ao CE resultou em maior degradabilidade da matéria seca e fibra em detergente neutro, reflexo da maior fração solúvel e potencialmente degradável da MS do FCP. Para a fração protéica, a adição de FCP correlacionou-se negativamente com a fração solúvel, degradação potencial e efetiva, e positivamente com a fração insolúvel potencialmente degradável. A substituição do capim-elefante por FCP permite melhor aproveitamento da dieta, elevando o aporte de nutrientes ao animal.

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Among the fruit species of the Brazilian Cerrado, the pequi is much popular in regions where it is extracted. Often it used in typical dishes, on the industry medicinal, cosmetic and handmade, also it studied its potential to produce fuel. Thus, this article sought to ponder about the disclosure of this fruit in the press, by means of the search system's site Folha de S. Paulo and applying content analysis, proposed by Bardin, beyond bibliography and documentary research. The justification for this research is that the pequi is a fruit of great importance in the economy and sustainable, yet little is spoken about it in the mainstream media. The result is that, by the analysis, little is said about the pequi media and its focus, is principally, cultural journalism, in culinary.

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We studied the physical and chemical characteristics of methyl and ethyl esters (biodiesel) produced by transesterification of pequi oil (Caryocar brasiliensis Camb.) in the presence of potassium hydroxide. The oil extracted from pequi seed comprises 60% of the fruit content. Such characteristics as density, acidity, viscosity, and carbon residue of the biodiesel meet ANP (Brazilian National Petroleum Agency) standards. Our tests demonstrated the feasibility of utilizing pequi oil for biodiesel production.