992 resultados para SBA-15. RAT. Pirólise térmica e catalítica. Termogravimetria. Energia de ativação aparente


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A calorimetria exploratória diferencial (DSC) foi utilizada na caracterização do acetato de dexametazona (princípio ativo), álcool cetílico, emulgin, polawax, nipagim-M (excipientes). O princípio ativo também foi investigado utilizando-se a termogravimetria (TG) e espectroscopia de absorção na região do ultravioleta e visível (UV-VIS). Os resultados obtidos permitiram verificar a estabilidade térmica e o ponto de fusão do princípio ativo, bem como o ponto de fusão dos excipientes utilizados na fabricação do creme de dexametazona.

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Complexos de percloratos à base de terras raras com a 2-azaciclononanona (AZA) foram obtidos a partir da reação entre os respectivos sais hidratados com a AZA (proporção molar 1:8) pelo método de difusão de vapor e caracterizados por titulação complexiométrica com EDTA, microanálise (CHN), espectroscopia vibracional na região do IV, termogravimetria em atmosfera de ar e N2 e calorimetria exploratória diferencial (DSC) em atmosfera de N2. O estudo cinético desse trabalho foi realizado utilizando um software em QBASIC que faz a simulação dos dados termogravimétricos a partir de um conjunto dado de parâmetros cinéticos.

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Neste trabalho, o complexo (carbonil)[tetrakis(5,10,15,20-ortobromofenil)porfirinato]rutênio(II) foi sintetizado e estudado como catalisador na oxidação de cicloexano por iodosilbenzeno. Em tal estudo variou-se as condições do sistema a fim de se verificar o melhor tempo e meio de agitação (mecânica e/ou sonicação). Os resultados demonstram boa eficiência, seletividade e regeneração do catalisador quando se utiliza um sistema misto de agitação.

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Os peixes são uma fonte rica em ácidos graxos poliinsaturados ômega 3 e esses ácidos fornecem benefícios para a saúde humana além da nutrição básica. Por essa razão muitos estudos têm sido feitos enfocando a análise do teor das substâncias que compõem os alimentos e também aos efeitos dos processamentos a que esses alimentos são submetidos. Esses estudos têm se estendido aos recursos pesqueiros. Vários estudos sobre a estabilidade térmica e/ou oxidativa e sobre o comportamento cinético de óleos vegetais têm sido realizados por Termogravimetria (TG), Análise Térmica Diferencial (DTA) e Calorimetria Exploratória Diferencial (DSC). No entanto, ainda são escassos os estudos sobre o comportamento térmico de óleos e gorduras de origem animal. Assim, avaliou-se a estabilidade térmica de cinco espécies de peixes do rio Araguaia (Goiás - Brasil) em atmosfera de nitrogênio por TG/DTG. Os resultados mostraram perdas de massa entre 235°C e 490°C e apontaram uma equivalência de comportamento termogravimétrico entre os óleos das cinco espécies e também entre esses óleos e alguns óleos vegetais, tais como, os óleos de araticum, buriti e dendê.

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Dez amostras de cálculos renais foram estudadas por Análise Elementar de CHN (EA), Espectroscopia de Absorção no Infravermelho (IV) e Difração de raios X pelo método de Pó (XRD). O comportamento térmico das amostras foi estudado por Termogravimetria/Termogravimetria Derivada (TG/DTG) e por Calorimetria Exploratória Diferencial (DSC). Os resultados de EA, Espectroscopia de Absorção IV e XRD mostraram a presença de estruvita [NH4Mg(PO4).6H2O], apatita, oxalato de cálcio monohidratado e oxalato de cálcio dihidratado. As curvas TG e DSC permitiram classificar as amostras em dois grupos diferentes: Grupo I mostrando comportamento térmico típico de estruvita e Grupo II apresentando um perfil termoanalítico característico de mistura de oxalatos.

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A mancha-amarela do trigo, causada pelo fungo Drechslera tritici-repentis, é de ocorrência mundial e uma das principais doenças da cultura. No Brasil, a mesma está presente em todas as safras e pode reduzir o rendimento de grãos em mais de 40%. A sua ampla adaptabilidade a ambientes diversos pode estar relacionada à capacidade dos esporos germinarem sob diferentes temperaturas, assunto que foi examinado neste experimento conduzido na UPF, em 2011. Suspensões de conídios (350 µL) foram depositadas em placas de Petri com meio ágar-água e incubadas em câmara tipo BOD, na presença e ausência de luz, a -5, 0, 5, 10, 15, 20, 25, 30, 35 e 40ºC, por 2, 4, 6, 8 e 10 horas. O trabalho foi conduzido duas vezes, em delineamento inteiramente casualizado, com quatro repetições. Os conídios germinaram tanto na presença como na ausência de luz. A germinação foi nula a -5ºC ou 40ºC. A mesma foi detectada após 2h e aumentou com o tempo de incubação. Através de polinômios de segundo grau estimou-se a máxima germinação a 19ºC e 9,5h de incubação. Houve predominância da germinação bipolar (frequência de 45,0%), seguida da intercalar (33,5%) e da unipolar (21,5%). Os resultados obtidos indicam grande amplitude térmica para germinação dos conídios de D. tritici-repentis, o que explica, parcialmente, sua ampla distribuição geográfica.

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Neste estudo, propôs-se avaliar a instrumentação térmica de fornos retangulares destinados à produção de carvão vegetal, denominados RAC220, com capacidade individual para produzir 30 toneladas de carvão por ciclo de carbonização. Os objetivos foram medir as temperaturas em pontos estratégicos do forno e identificar as relações entre temperatura e produção de carvão vegetal. Nesse sentido, este trabalho consistiu em instalar 22 sensores tipo PT100 por forno. Por meio de um sistema eletrônico supervisório conectado a uma rede sem fio, as temperaturas foram armazenadas e, via software com interface gráfica, visualizadas na forma de gráficos e tabelas. Ressalta-se que a concepção, desenvolvimento e montagem de todos os equipamentos eletrônicos foram de responsabilidade da Faculdade de Engenharia Mecânica da Universidade Federal de Uberlândia. O sistema atualmente está em fase de testes e permite analisar e comparar os históricos de ciclos de produção, bem como realizar interferências para corrigir os ciclos de carbonização em tempo real de produção. Tais informações guiam e auxiliam o carbonizador durante todos os estágios da produção de carvão vegetal. Por meio dos resultados, verificou-se que a instrumentação térmica de fornos destinados à produção de carvão vegetal permite, entre diversos fatores, reduzir o tempo de pirólise e resfriamento e minimizar as perdas e falhas de produção, além de aumentar a eficiência térmica dos fornos.

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Este trabalho teve como objetivo avaliar o perfil de decomposição térmica da madeira de oito espécies utilizando as técnicas de termogravimetria (TGA) e calorimetria diferencial exploratória (DSC), bem como a consistência desses métodos para decidir quais espécies devem ser indicadas para produção de energia e carvão vegetal, comparando-os com os rendimentos gravimétricos da carbonização obtidos a partir de carbonizações em mufla de laboratório. Para as análises por TGA e DSC, amostras de serragem foram aquecidas à taxa de 10 °C min-1, sob atmosfera de nitrogênio, em vazão de 50 ml min-1 até a temperatura final de 600 °C. Foram determinados os valores de densidade básica e poder calorífico superior da madeira. As carbonizações foram realizadas em mufla de laboratório à taxa de 50 °C h-1 até a temperatura máxima de 450 °C, obtendo-se os rendimentos em carvão vegetal. Também foram determinados os valores de densidade aparente do carvão das oito espécies após a carbonização. Os resultados das análises térmicas indicaram perfis de decomposição pirolítica das madeiras e evidenciaram aquelas mais estáveis à ação térmica. O comportamento da estabilidade térmica das madeiras das oito espécies foi confirmado pela análise dos rendimentos da carbonização em mufla, em comparação com a análise por TGA e DSC. As madeiras de Aspidosperma pyrifolium e Mimosa tenuiflora apresentaram maior estabilidade térmica e, portanto, maiores rendimentos em carvão vegetal, bem como maiores densidades aparentes. As técnicas de termogravimetria e calorimetria diferencial exploratória são satisfatórias para avaliação da decomposição térmica das madeiras e garantem consistência na escolha de madeiras que resultam em maior rendimento e maior qualidade do carvão vegetal.

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Background: Maternal diabetes affects many fetal organ systems, including the vasculature and the lungs. The offspring of diabetic mothers have respiratory adaptation problems after birth. The mechanisms are multifactorial and the effects are prolonged during the postnatal period. An increasing incidence of diabetic pregnancies accentuates the importance of identifying the pathological mechanisms, which cause the metabolic and genetic changes that occur in offspring, born to diabetic mothers. Aims and methods: The aim of this thesis was to determine changes both in human umbilical cord exposed to maternal type 1 diabetes and in neonatal rat lungs after streptozotocin-induced maternal hyperglycemia, during pregnancy. Rat lungs were used as a model for the potential disease mechanisms. Gene expression alterations were determined in human umbilical cords at birth and in rat pup lungs at two week of age. During the first two postnatal weeks, rat lung development was studied morphologically and histologically. Further, the effect of postnatal hyperoxia on hyperglycemia-primed rat lungs was investigated at one week of age to mimic the clinical situation of supplemental oxygen treatment. Results: In the umbilical cord, maternal diabetes had a major negative effect on the expression of genes involved in blood vessel development. The genes regulating vascular tone were also affected. In neonatal rat lungs, intrauterine hyperglycemia had a prolonged effect on gene expression during late alveolarization. The most affected pathway was the upregulation of extracellular matrix proteins. Newborn rat lungs exposed to intrauterine hyperglycemia had thinner saccular walls without changes in airspace size, a smaller relative lung weight and lung total tissue area, and increased cellular apoptosis and proliferation compared to control lungs, possibly reflecting an aberrant maturational adaptation. At one and two weeks of age, cell proliferation and secondary crest formation were accelerated in hyperglycemia-exposed lungs. Postnatal hyperoxic exposure, alone caused arrested alveolarization with thin-walled and enlarged alveoli. In contrast, the dual exposure of intrauterine hyperglycemia and postnatal hyperoxia resulted in the phenotype of thick septa together with arrested alveolarization and decreased number of small pulmonary arteries. Conclusions: Maternal diabetic environment seems to alter the umbilical cord gene expression profile of the regulation of vascular development and function. Fetal hyperglycemia may additionally affect the genetic regulation of the postnatal lung development and may actually induce prolonged structural alterations in neonatal lungs together with a modifying effect on the deleterious pulmonary exposure of postnatal hyperoxia. This, combined with the novel human umbilical cord gene data could serve as stepping stones for future therapies to curb developmental aberrations.

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We studied the synergistic effect of glucose and prolactin (PRL) on insulin secretion and GLUT2 expression in cultured neonatal rat islets. After 7 days in culture, basal insulin secretion (2.8 mM glucose) was similar in control and PRL-treated islets (1.84 ± 0.06% and 2.08 ± 0.07% of the islet insulin content, respectively). At 5.6 and 22 mM glucose, insulin secretion was significantly higher in PRL-treated than in control islets, achieving 1.38 ± 0.15% and 3.09 ± 0.21% of the islet insulin content in control and 2.43 ± 0.16% and 4.31 ± 0.24% of the islet insulin content in PRL-treated islets, respectively. The expression of the glucose transporter GLUT2 in B-cell membranes was dose-dependently increased by exposure of the islet to increasing glucose concentrations. This effect was potentiated in islets cultured for 7 days in the presence of 2 µg/ml PRL. At 5.6 and 10 mM glucose, the increase in GLUT2 expression in PRL-treated islets was 75% and 150% higher than that registered in the respective control. The data presented here indicate that insulin secretion, induced by different concentrations of glucose, correlates well with the expression of the B-cell-specific glucose transporter GLUT2 in pancreatic islets

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To study the effect of halothane as a cardioplegic agent, ten Wistar rats were anesthetized by ether inhalation and their hearts were perfused in a Langendorff system with Krebs-Henseleit solution (36oC; 90 cm H2O pressure). After a 15-min period for stabilization the control values for heart rate, force (T), dT/dt and coronary flow were recorded and a halothane-enriched solution (same temperature and pressure) was perfused until cardiac arrest was obtained. The same Krebs-Henseleit solution was reperfused again and the parameters studied were recorded after 1, 3, 5, 10, 20 and 30 min. Cardiac arrest occurred in all hearts during the first two min of perfusion with halothane-bubbled solution. One minute after reperfusion without halothane, the following parameters reported in terms of control values were obtained: 90.5% of control heart rate (266.9 ± 43.4 to 231.5 ± 71.0 bpm), 20.2% of the force (1.83 ± 0.28 to 0.37 ± 0.25 g), 19.8% of dT/dt (46.0 ± 7.0 to 9.3 ± 6.0 g/s) and 90.8% of coronary flow (9.9 ± 1.5 to 9.4 ± 1.5 ml/min). After 3 min of perfusion they changed to 99.0% heart rate (261.0 ± 48.2), 98.9% force (1.81 ± 0.33), 98.6 dT/dt (45.0 ± 8.2) and 94.8% coronary flow (9.3 ± 1.4). At 5 min 100.8% (267.0 ± 40.6) heart rate, 105.0% (1.92 ± 0.29) force and 104.4% (48.2 ± 7.2) dT/dt were recorded and maintained without significant differences (P>0.01) until the end of the experiment. These data demonstrate that volatile cardioplegia with halothane is an effective technique for fast induction of and prompt recovery from normothermic cardiac arrest of the rat heart

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Cytokines are a heterogeneous group of molecules that have been associated with several functions in the nervous system, such as survival and differentiation of neuronal and glial cells. In the present study, we demonstrated that conditioned medium from spleen cells activated with concanavalin A increased neuritogenesis and survival of retinal cells, as measured by biochemical and morphological criteria. Our data showed that conditioned medium induced a five-fold increase in the amount of protein after 120 h in vitro. This effect was not inhibited by the blockade of voltage-dependent L-type calcium channels with 5.0 µM nifedipine. However, the use of an intracellular calcium chelator (15.0 µM BAPTA-AM) inhibited this effect. Our results support the idea that factors secreted by activated lymphocytes, such as cytokines, can modulate the maintenance and the differentiation of rat retinal cells in vitro, indicating a possible role of these molecules in the development of retinal cells, as well as in its protection against pathological conditions

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ß-Myrcene (MYR) is a monoterpene found in the oils of a variety of aromatic plants including lemongrass, verbena, hop, bay, and others. MYR and essential oils containing this terpenoid compound are used in cosmetics, household products, and as flavoring food additives. This study was undertaken to investigate the effects of MYR on fertility and general reproductive performance in the rat. MYR (0, 100, 300 and 500 mg/kg) in peanut oil was given by gavage to male Wistar rats (15 per dose group) for 91 days prior to mating and during the mating period, as well as to females (45 per dose group) continuously for 21 days before mating, during mating and pregnancy, and throughout the period of lactation up to postnatal day 21. On day 21 of pregnancy one-third of the females of each group were submitted to cesarean section. Resorption, implantation, as well as dead and live fetuses were counted. All fetuses were examined for external malformations, weighed, and cleared and stained with Alizarin Red S for skeleton evaluation. The remaining dams were allowed to give birth to their offspring. The progeny was examined at birth and subsequently up to postnatal day 21. Mortality, weight gain and physical signs of postnatal development were evaluated. Except for an increase in liver and kidney weights, no other sign of toxicity was noted in male and female rats exposed to MYR. MYR did not affect the mating index (proportion of females impregnated by males) or the pregnancy index (ratio of pregnant to sperm-positive females). No sign of maternal toxicity and no increase in externally visible malformations were observed at any dose level. Only at the highest dose tested (500 mg/kg) did MYR induce an increase in the resorption rate and a higher frequency of fetal skeleton anomalies. No adverse effect of MYR on postnatal weight gain was noted but days of appearance of primary coat, incisor eruption and eye opening were slightly delayed in the exposed offspring. On the basis of the data presented in this paper the no-observed-adverse-effect level (NOAEL) for toxic effects on fertility and general reproductive performance can be set at 300 mg of ß-myrcene/kg body weight by the oral route.

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In the present study, histopathological analysis of rat mesentery was used to quantify the effect of two anti-inflammatory agents, dexamethasone (Dex) and pertussis toxin (Ptx), on leukocyte migration. The intravenous injection of Dex (1 mg/kg) and Ptx (1,200 ng) 1 h prior to the intraperitoneal injection of the inflammatory stimuli lipopolysaccharide (LPS) or formyl-methionyl-leucyl-phenylalanine (fMLP) significantly reduced the neutrophil diapedesis (LPS: Ptx = 0.86 ± 0.19 and Dex = 0.35 ± 0.13 vs saline (S) = 2.85 ± 0.59; fMLP: Ptx = 0.43 ± 0.09 and Dex 0.01 ± 0.01 vs S = 1.08 ± 0.15 neutrophil diapedesis/field) and infiltration (LPS: Ptx = 6.29 ± 1.4 and Dex = 3.06 ± 0.76 vs S = 15.94 ± 3.97; fMLP: Ptx = 3.85 ± 0.56 and Dex = 0.40 ± 0.16 vs S = 7.15 ± 1.17 neutrophils/field) induced by the two agonists in the rat mesentery. The inhibitory effect of Dex and Ptx was clearly visible in the fields nearest the venule (up to 200 µm), demonstrating that these anti-inflammatory agents act preferentially in the transmigration of neutrophils from the vascular lumen into the interstitial space, but not in cell movement in response to a haptotactic gradient. The mesentery of rats pretreated with Dex showed a decreased number of neutrophils within the venules (LPS: Dex = 1.50 ± 0.38 vs S = 4.20 ± 1.01; fMLP: Dex = 0.25 ± 0.11 vs S = 2.20 ± 0.34 neutrophils in the lumen/field), suggesting that this inhibitor may be acting at a step that precedes neutrophil arrival in the inflamed tissue. In contrast to that observed with Dex treatment, the number of neutrophils found in mesenteric venules was significantly elevated in animals pretreated with Ptx (LPS: Ptx = 9.85 ± 2.25 vs S = 4.20 ± 1.01; fMLP: Ptx = 4.66 ± 1.24 vs S = 2.20 ± 0.34 neutrophils in the lumen/field). This discrepancy shows that Ptx and Dex act via different mechanisms and suggests that Ptx prevents locomotion of neutrophils from the vascular lumen to the interstitial space. In conclusion, the method described here is useful for quantifying the inflammatory and anti-inflammatory effect of different substances. The advantage of this histopathological approach is that it provides additional information about the steps involved in leucocyte migration.

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Microcystin is a hepatotoxic peptide which inhibits protein phosphatase types 1 and 2A. The objective of the present study was to evaluate the physiopathologic effects of microcystin-LR in isolated perfused rat kidney. Adult Wistar rats (N = 5) of both sexes (240-280 g) were utilized. Microcystin-LR (1 µg/ml) was perfused over a period of 120 min, during which samples of urine and perfusate were collected at 10-min intervals to determine the levels of inulin, sodium, potassium and osmolality. We observed a significant increase in urinary flow with a peak effect at 90 min (control (C) = 0.20 ± 0.01 and treated (T) = 0.32 ± 0.01 ml g-1 min-1, P<0.05). At 90 min there was a significant increase in perfusate pressure (C = 129.7 ± 4.81 and T = 175.0 ± 1.15 mmHg) and glomerular filtration rate (C = 0.66 ± 0.07 and T = 1.10 ± 0.04 ml g-1 min-1) and there was a significant reduction in fractional sodium tubular transport at 120 min (C = 78.6 ± 0.98 and T = 73.9 ± 0.95%). Histopathologic analysis of the perfused kidneys showed protein material in the urinary space, suggestive of renal toxicity. These data demonstrate renal vascular, glomerular and urinary effects of microcystin-LR, indicating that microcystin acts directly on the kidney by probable inhibition of protein phosphatases.