941 resultados para ex-prisoner reintegration


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The international energy situation indicates to the depletion of oil reserves in the short term. Brazil, considering its potential, has sought through public policy, encourage the study of alternative forms of energy. Many of these forms are based on sub-products and agricultural products, especially the ethanol industry for fuel purposes. Another alternative of vegetable origin, most recently discussed, would be the production of fuel oil called biodiesel. The study aimed to extract and measure the pulp oil production of macaúba palm [Acrocomia aculeata (Jacq) Lodd. ex Mart], collected in Botucatu (SP). In addition, the qualitative analysis of the pulp and almond oil are determined. The results showed low productivity in oils, compared to the reported for macauba natural populations of Minas Gerais. The qualitative analysis of the macauba pulp shows to be rich in long chain fatty acids, while the almond have significant amounts of lauric acid.

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Pós-graduação em Agronomia - FEIS

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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A doença de Chagas é uma doença parasitária causada pelo protozoário Trypanosoma cruzi (T. cruzi), que acomete o sistema digestivo e, principalmente, o cardíaco. É uma doença endêmica principalmente nos países da América Latina. A busca por novos fármacos para o tratamento dessa doença é de suma importância já que os existentes podem causar severos efeitos adversos e são efetivos somente na fase aguda. A molécula tiazolilhidrazona-9 (TZH-9) tem se destacado como uma excelente candidata a fármaco para tratamento da doença de Chagas e a continuidade de seu desenvolvimento deve envolver estudos de farmacocinética e metabolismo. Para a realização destes estudos é necessário o desenvolvimento e validação de um método bioanalítico para a determinação do composto em plasma, assim como avaliar a estabilidade do fármaco nesta matriz biológica com o intuito de verificar a ação de enzimas plasmáticas. Neste trabalho, foi desenvolvido e validado o método bioanalítico para quantificar o TZH-9 em plasma de ratos e humano que apresentou limites de confiança adequados. Também, avaliou-se a estabilidade do TZH-9 nessas matrizes biológicas, em plasma de ratos, o composto apresentou instabilidade após 2 horas na concentração inferior, sugerindo ação de enzimas plasmáticas no seu metabolismo; e em plasma de humanos, apresentou instabilidade após 15 minutos em ambas concentrações, sugerindo a susceptibilidade a ação das enzimas plasmáticas

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Resumo: O presente estudo procura analisar sob as lentes da antropologia, a forma como as lideranças religiosas Mbya, cumprem os sonhos recebidos de Nhanderú Ete, iniciando a caminhada em direção a terra sem mal, a yvy marãe‟y; retornam ao local de ocupação antiga ou a indicada por Nhanderú, terra com a qual mantém laços históricos de luta. Os conflitos se intensificam com a demarcação/ampliação dos territórios ou de terra para o Guarani Mbya, como no caso do Pará, que andaram por cerca de cem anos até encontrar a terra onde exercitar o modo correto de se viver; o dissenso potencializa o etnocentrismo, a discriminação, o racismo, o estigma de ser índio, bugre, preguiçoso, alcoólatra, “raça inferior”. A pesquisa versa sobre o modo como "escolhem”, “adotam,” “retomam,” ressignificam, reterritorializam, guaranizam a terra onde pausaram a caminhada.

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The World War II Prisoner of War collection consists of a World War II prisoner of war tag issued by the United State Printing Office in 1942.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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A doença de Chagas é uma doença parasitária causada pelo protozoário Trypanosoma cruzi (T. cruzi), que acomete o sistema digestivo e, principalmente, o cardíaco. É uma doença endêmica principalmente nos países da América Latina. A busca por novos fármacos para o tratamento dessa doença é de suma importância já que os existentes podem causar severos efeitos adversos e são efetivos somente na fase aguda. A molécula tiazolilhidrazona-9 (TZH-9) tem se destacado como uma excelente candidata a fármaco para tratamento da doença de Chagas e a continuidade de seu desenvolvimento deve envolver estudos de farmacocinética e metabolismo. Para a realização destes estudos é necessário o desenvolvimento e validação de um método bioanalítico para a determinação do composto em plasma, assim como avaliar a estabilidade do fármaco nesta matriz biológica com o intuito de verificar a ação de enzimas plasmáticas. Neste trabalho, foi desenvolvido e validado o método bioanalítico para quantificar o TZH-9 em plasma de ratos e humano que apresentou limites de confiança adequados. Também, avaliou-se a estabilidade do TZH-9 nessas matrizes biológicas, em plasma de ratos, o composto apresentou instabilidade após 2 horas na concentração inferior, sugerindo ação de enzimas plasmáticas no seu metabolismo; e em plasma de humanos, apresentou instabilidade após 15 minutos em ambas concentrações, sugerindo a susceptibilidade a ação das enzimas plasmáticas

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Thermal treatment (thermal rectification) is a process in which technological properties of wood are modified using thermal energy, the result of Which is often value-added wood. Thermally treated wood takes on similar color shades to tropical woods and offers considerable resistance to destructive microorganisms and climate action, in addition to having high dimensional stability and low hygroscopicity. Wood samples of Eucalyptus grandis were subjected to various thermal treatments, as performed in presence (140 degrees C; 160 degrees C; 180 degrees C) or in absence of oxygen (160 degrees C; 180 degrees C; 200 degrees C) inside a thermal treatment chamber, and then studied as to their chemical characteristics. Increasing the maximum treatment temperatures led to a reduction in the holocellulose content of samples as a result of the degradation and volatilization of hemicelluloses, also leading to an increase in the relative lignin content. Except for glucose, all monosaccharide levels were found to decrease in samples after the thermal treatment at a maximum temperature of 200 degrees C. The thermal treatment above 160 degrees C led to increased levels of total extractives in the wood samples, probably ascribed to the emergence of low molecular weight substances as a result of thermal degradation. Overall, it was not possible to clearly determine the effect of presence or absence of oxygen in the air during thermal treatment on the chemical characteristics of the relevant wood samples.

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Objective-Blood-sucking arthropods' salivary glands contain a remarkable diversity of antihemostatics. The aim of the present study was to identify the unique salivary anticoagulant of the sand fly Lutzomyia longipalpis, which remained elusive for decades. Methods and Results-Several L. longipalpis salivary proteins were expressed in human embryonic kidney 293 cells and screened for inhibition of blood coagulation. A novel 32.4-kDa molecule, named Lufaxin, was identified as a slow, tight, noncompetitive, and reversible inhibitor of factor Xa (FXa). Notably, Lufaxin's primary sequence does not share similarity to any physiological or salivary inhibitors of coagulation reported to date. Lufaxin is specific for FXa and does not interact with FX, Dansyl-Glu-Gly-Arg-FXa, or 15 other enzymes. In addition, Lufaxin blocks prothrombinase and increases both prothrombin time and activated partial thromboplastin time. Surface plasmon resonance experiments revealed that FXa binds Lufaxin with an equilibrium constant approximate to 3 nM, and isothermal titration calorimetry determined a stoichiometry of 1:1. Lufaxin also prevents protease-activated receptor 2 activation by FXa in the MDA-MB-231 cell line and abrogates edema formation triggered by injection of FXa in the paw of mice. Moreover, Lufaxin prevents FeCl3-induced carotid artery thrombus formation and prolongs activated partial thromboplastin time ex vivo, implying that it works as an anticoagulant in vivo. Finally, salivary gland of sand flies was found to inhibit FXa and to interact with the enzyme. Conclusion-Lufaxin belongs to a novel family of slow-tight FXa inhibitors, which display antithrombotic and anti-inflammatory activities. It is a useful tool to understand FXa structural features and its role in prohemostatic and proinflammatory events. (Arterioscler Thromb Vasc Biol. 2012;32:2185-2196.)

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OBJECTIVE: This study evaluated the performance of lungs that were preserved with different solutions (Celsior, Perfadex or saline) in an ex vivo rat lung perfusion system. METHODS: Sixty Wistar rats were anesthetized, anticoagulated and randomized into three groups (n = 20). The rats were subjected to antegrade perfusion via the pulmonary artery with Perfadex, Celsior, or saline, followed by 6 or 12 hours of ischemia (4 degrees C, n = 10 in each group). Respiratory mechanics, gas exchange and hemodynamics were measured at 10-minute intervals during the reperfusion of heart-lung blocks in an ex vivo system (IL2-Isolated Perfused Rat or Guinea Pig Lung System, Harvard Apparatus, Holliston, Massachusetts, USA; Hugo Sachs Elektronik, Germany) for 60 minutes. The lungs were prepared for histopathology and evaluated for edema following reperfusion. Group comparisons were performed using ANOVA and the Kruskal-Wallis test with a 5% level of significance. RESULTS: Gas exchange was not significantly different between lungs perfused with either Perfadex or Celsior at the same ischemic times, but it was very low in lungs that were preserved with saline. Airway resistance was greater in the lungs that were preserved for 12 hours. Celsior lungs that were preserved for 6 and 12 hours exhibited lower airway resistance (p = 0.01) compared to Perfadex lungs. Pulmonary artery pressure was not different between the groups, and no significant differences in histopathology and apoptosis were observed between the groups. CONCLUSIONS: Lungs that were preserved with Celsior or Perfadex exhibited similar gas exchange and histopathological findings. Airway resistance was slightly lower in the Celsior-preserved lungs compared with the Perfadex-preserved lungs.

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BACKGROUND: Only about 15% of donor lungs are considered suitable for transplantation (LTx). Ex vivo lung perfusion (EVLP) has been developed as a method to reassess and repair damaged lungs. We report our experience with EVLP in non-acceptable donor lungs and evaluate its ability to recondition these lungs. METHODS: We studied lungs from 16 brain-dead donors rejected for LTx. After harvesting, the lungs were stored at 4 degrees C for 10 hours and subjected to normothermic EVLP with Steen Solution (Vitro life, Goteborg, Sweden) for 60 minutes. For functional evaluation, the following variables were assessed: partial pressure of arterial oxygen (Pao(2)), pulmonary vascular resistance (PVR), and lung compliance (LC). For histologic assessment, lung biopsy was done before harvest and after EVLP. Tissue samples were examined under light microscopy. To detect and quantify apoptosis, terminal deoxynucleotide transferase-mediated deoxy uridine triphosphate nick-end labeling assay was used. RESULTS: Thirteen lima donors were refused for having impaired lung function. The mean Pao(2) obtained in the organ donor at the referring hospital was 193.7 mm Hg and rose to 489 mm Hg after EVLP. During EVLP, the mean PVR was 652.5 dynes/sec/cm(5) and the mean LC was 48 ml/cm H2O. There was no significant difference between the mean Lung Injury Score before harvest and after EVLP. There was a trend toward a reduction in the median number of apoptotic cells after EVLP. CONCLUSIONS: EVLP improved lung function (oxygenation capacity) of organs considered unsuitable for transplantation. Lung tissue structure did not deteriorate even after 1 hour of normothermic perfusion. J Heart Lung Transplant 2012;31:305-9 (C) 2012 International Society for Heart and Lung Transplantation. All rights reserved.

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The aim of this research was to evaluate the bioremediation of a soil contaminated with wastes from a plasticizers industry, located in Sao Paulo, Brazil. A 100-kg soil sample containing alcohols, adipates and phthalates was treated in an aerobic slurry-phase reactor using indigenous and acclimated microorganisms from the sludge of a wastewater treatment plant of the plasticizers industry (11gVSS kg(-1) dry soil), during 120 days. The soil pH and temperature were not corrected during bioremediation; soil humidity was corrected weekly to maintain 40%. The biodegradation of the pollutants followed first-order kinetics; the removal efficiencies were above 61% and, among the analyzed plasticizers, adipate was removed to below the detection limit. Biological molecular analysis during bioremediation revealed a significant change in the dominant populations initially present in the reactor.