989 resultados para Viés de seleção


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A aceroleira (Malpighia emarginata DC.) é uma das principais espécies frutíferas cultivadas 9 no Submédio do Vale do São Francisco e representa uma atividade estratégica para pequenos e médios produtores familiares, uma vez que sua produção é bem distribuída ao longo do ano, permitindo até oito colheitas anuais. Desse modo, compreende-se que essa cultura tem destacado valor para o desenvolvimento social, considerando a sua capacidade de geração de empregos e renda. Estima-se que a área plantada com aceroleiras na região ocupe cerca de 1000 ha (SOUZA et al., 2013). As acerolas são excelentes fontes naturais de vitamina C, com teores de ácido ascórbico que podem alcançar mais de 4000 mg.100g-1 de polpa, nos frutos imaturos. Para efeito de comparação, registra-se que, em laranjas, o teor médio de vitamina C é de 60 mg.100g-1 (USDA, 2015). Além disso, a acerola é uma excelente fonte de vitamina A e outras substâncias antioxidantes importantes na prevenção de doenças relacionadas a processos degenerativos. Desde 2012, a Embrapa Semiárido mantém uma coleção de acessos de germoplasma de aceroleira oriundos de diferentes regiões do Brasil e desenvolve um programa de melhoramento, que tem como um de seus alvos a obtenção de clones que produzam acerolas com características organolépticas mais adequadas ao consumo in natura (SOUZA et al., 2013). Neste contexto, a avaliação dos genótipos disponíveis quanto à qualidade dos frutos é fundamental para a seleção de clones promissores. O presente trabalho objetivou selecionar genótipos de aceroleira, utilizando a técnica de agrupamento por variáveis canônicas, baseado em caracteres físico-químicos dos frutos.

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Ultrafast pump-probe spectroscopy is a conceptually simple and versatile tool for resolving photoinduced dynamics in molecular systems. Due to the fast development of new experimental setups, such as synchrotron light sources and X-ray free electron lasers (XFEL), new spectral windows are becoming accessible. On the one hand, these sources have enabled scientist to access faster and faster time scales and to reach unprecedent insights into dynamical properties of matter. On the other hand, the complementarity of well-developed and novel techniques allows to study the same physical process from different points of views, integrating the advantages and overcoming the limitations of each approach. In this context, it is highly desirable to reach a clear understanding of which type of spectroscopy is more suited to capture a certain facade of a given photo-induced process, that is, to establish a correlation between the process to be unraveled and the technique to be used. In this thesis, I will show how computational spectroscopy can be a tool to establish such a correlation. I will study a specific process, which is the ultrafast energy transfer in the nicotinamide adenine dinucleotide dimer (NADH). This process will be observed in different spectral windows (from UV-VIS to X-rays), accessing the ability of different spectroscopic techniques to unravel the system evolution by means of state-of-the-art theoretical models and methodologies. The comparison of different spectroscopic simulations will demonstrate their complementarity, eventually allowing to identify the type of spectroscopy that is best suited to resolve the ultrafast energy transfer.

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Texto problematiza que o processo de seleção de medicamentos deve ser fundamentado em critérios técnico-científicos e baseado em processos de busca de evidências de eficácia, segurança, conveniência para o paciente, qualidade e custo favorável. Descreve a importância da elaboração de listas de medicamentos e formulários terapêuticos para orientar a aquisição e prescrição dos medicamentos.

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Esta Unidade pretende demonstrar a importância do processo de seleção de medicamentos para a promoção do acesso e do uso racional de medicamentos. Para tanto, serão apresentados os responsáveis pela seleção de medicamentos no Brasil e no mundo, os critérios utilizados para a seleção de medicamentos essenciais, bem como as atribuições e o processo de trabalho da Comissão de Farmácia e Terapêutica (CFT). O final de conteúdo ainda permitirá ao especializando que reflita sobre a produção de informação sobre medicamentos e sobre a atuação do farmacêutico, além de discutir outras possíveis demandas da CFT, como a judicialização do direito à saúde, as pactuações da política de medicamentos e a implantação de novos serviços.

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O vídeo apresenta a entrevista realizada com a Dra. Lenita Wannmacher, membro do Comitê de Especialistas em Seleção e Uso de Medicamentos Essenciais da OMS. São abordados a definição de medicamentos essenciais, os princípios que devem ser aplicados para a seleção de medicamentos, algumas vantagens na elaboração de lista de medicamentos essenciais e o papel do Comitê de Seleção e Uso de Medicamentos da OMS. Discutem-se as finalidades para as quais são elaboradas ou organizadas as listas de medicamento de diferentes âmbitos, como na OMS, no Brasil, em municípios e em hospitais; e o conceito de evidência em saúde.

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Este Módulo está organizado em 2 unidades de aprendizagem: O uso de ferramentas da epidemiologia na assistência farmacêutica e Seleção de medicamentos. Aborda temas como: Usos e aplicações da epidemiologia; Medidas de frequência de doenças; Indicadores de saúde; Informações em saúde; Sistemas de informação em saúde; Importância da seleção de medicamentos; Construção de lista de medicamentos; Informação sobre medicamentos; Evidência como norteadora de conduta; Formas de conduzir o processo de seleção de medicamentos; e Formalização do processo de seleção de medicamentos no âmbito público.

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O conteúdo abordado demonstrou a importância do processo de seleção de medicamentos para a promoção do acesso e do uso racional de medicamentos. Para tanto, são apresentados os responsáveis pela seleção de medicamentos no Brasil e no mundo, os critérios utilizados para a seleção de medicamentos essenciais, bem como as atribuições e o processo de trabalho da Comissão de Farmácia e Terapêutica (CFT). O final de conteúdo ainda permitirá que o estudante reflita sobre a produção de informação sobre medicamentos e sobre a atuação do farmacêutico, além de discutir outras possíveis demandas da CFT, como a judicialização do direito à saúde, as pactuações da política de medicamentos e a implantação de novos serviços.

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Esta videoaula (aula 2) apresenta o risco de viés nos estudos de tratamento.

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The present paper describes a novel, simple and reliable differential pulse voltammetric method for determining amitriptyline (AMT) in pharmaceutical formulations. It has been described for many authors that this antidepressant is electrochemically inactive at carbon electrodes. However, the procedure proposed herein consisted in electrochemically oxidizing AMT at an unmodified carbon nanotube paste electrode in the presence of 0.1 mol L(-1) sulfuric acid used as electrolyte. At such concentration, the acid facilitated the AMT electroxidation through one-electron transfer at 1.33 V vs. Ag/AgCl, as observed by the augmentation of peak current. Concerning optimized conditions (modulation time 5 ms, scan rate 90 mV s(-1), and pulse amplitude 120 mV) a linear calibration curve was constructed in the range of 0.0-30.0 μmol L(-1), with a correlation coefficient of 0.9991 and a limit of detection of 1.61 μmol L(-1). The procedure was successfully validated for intra- and inter-day precision and accuracy. Moreover, its feasibility was assessed through analysis of commercial pharmaceutical formulations and it has been compared to the UV-vis spectrophotometric method used as standard analytical technique recommended by the Brazilian Pharmacopoeia.

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Yellowing is an undesirable phenomenon that is common in people with white and grey hair. Because white hair has no melanin, the pigment responsible for hair colour, the effects of photodegradation are more visible in this type of hair. The origin of yellowing and its relation to photodegradation processes are not properly established, and many questions remain open in this field. In this work, the photodegradation of grey hair was investigated as a function of the wavelength of incident radiation, and its ultrastructure was determined, always comparing the results obtained for the white and black fibres present in grey hair with the results of white wool. The results presented herein indicate that the photobehaviour of grey hair irradiated with a mercury lamp or with solar radiation is dependent on the wavelength range of the incident radiation and on the initial shade of yellow in the sample. Two types of grey hair were used: (1) blended grey hair (more yellow) and (2) grey hair from a single-donor (less yellow). After exposure to a full-spectrum mercury lamp for 200 h, the blended white hair turned less yellow (the yellow-blue difference, Db(*) becomes negative, Db(*)=-6), whereas the white hair from the single-donor turned slightly yellower (Db(*)=2). In contrast, VIS+IR irradiation resulted in bleaching in both types of hair, whereas a thermal treatment (at 81 °C) caused yellowing of both types of hair, resulting in a Db(*)=3 for blended white hair and Db(*)=9 for single-donor hair. The identity of the yellow chromophores was investigated by UV-Vis spectroscopy. The results obtained with this technique were contradictory, however, and it was not possible to obtain a simple correlation between the sample shade of yellow and the absorption spectra. In addition, the results are discussed in terms of the morphology differences between the pigmented and non-pigmented parts of grey hair, the yellowing and bleaching effects of grey hair, and the occurrence of dark-follow reactions.

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Lawsonia inermis mediated synthesis of silver nanoparticles (Ag-NPs) and its efficacy against Candida albicans, Microsporum canis, Propioniabacterium acne and Trichophyton mentagrophytes is reported. A two-step mechanism has been proposed for bioreduction and formation of an intermediate complex leading to the synthesis of capped nanoparticles was developed. In addition, antimicrobial gel for M. canis and T. mentagrophytes was also formulated. Ag-NPs were synthesized by challenging the leaft extract of L. inermis with 1 mM AgNO₃. The Ag-NPs were characterized by Ultraviolet-Visible (UV-Vis) spectrophotometer and Fourier transform infrared spectroscopy (FTIR). Transmission electron microscopy (TEM), nanoparticle tracking and analysis sytem (NTA) and zeta potential was measured to detect the size of Ag-NPs. The antimicrobial activity of Ag-NPs was evaluated by disc diffusion method against the test organisms. Thus these Ag-NPs may prove as a better candidate drug due to their biogenic nature. Moreover, Ag-NPs may be an answer to the drug-resistant microorganisms.

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Retinal pigment epithelium cells, along with tight junction (TJ) proteins, constitute the outer blood retinal barrier (BRB). Contradictory findings suggest a role for the outer BRB in the pathogenesis of diabetic retinopathy (DR). The aim of this study was to investigate whether the mechanisms involved in these alterations are sensitive to nitrosative stress, and if cocoa or epicatechin (EC) protects from this damage under diabetic (DM) milieu conditions. Cells of a human RPE line (ARPE-19) were exposed to high-glucose (HG) conditions for 24 hours in the presence or absence of cocoa powder containing 0.5% or 60.5% polyphenol (low-polyphenol cocoa [LPC] and high-polyphenol cocoa [HPC], respectively). Exposure to HG decreased claudin-1 and occludin TJ expressions and increased extracellular matrix accumulation (ECM), whereas levels of TNF-α and inducible nitric oxide synthase (iNOS) were upregulated, accompanied by increased nitric oxide levels. This nitrosative stress resulted in S-nitrosylation of caveolin-1 (CAV-1), which in turn increased CAV-1 traffic and its interactions with claudin-1 and occludin. This cascade was inhibited by treatment with HPC or EC through δ-opioid receptor (DOR) binding and stimulation, thereby decreasing TNF-α-induced iNOS upregulation and CAV-1 endocytosis. The TJ functions were restored, leading to prevention of paracellular permeability, restoration of resistance of the ARPE-19 monolayer, and decreased ECM accumulation. The detrimental effects on TJs in ARPE-19 cells exposed to DM milieu occur through a CAV-1 S-nitrosylation-dependent endocytosis mechanism. High-polyphenol cocoa or EC exerts protective effects through DOR stimulation.

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TiO2 and TiO2/WO3 electrodes, irradiated by a solar simulator in configurations for heterogeneous photocatalysis (HP) and electrochemically-assisted HP (EHP), were used to remediate aqueous solutions containing 10 mg L(-1) (34 μmol L(-1)) of 17-α-ethinylestradiol (EE2), active component of most oral contraceptives. The photocatalysts consisted of 4.5 μm thick porous films of TiO2 and TiO2/WO3 (molar ratio W/Ti of 12%) deposited on transparent electrodes from aqueous suspensions of TiO2 particles and WO3 precursors, followed by thermal treatment at 450 (°)C. First, an energy diagram was organized with photoelectrochemical and UV-Vis absorption spectroscopy data and revealed that EE2 could be directly oxidized by the photogenerated holes at the semiconductor surfaces, considering the relative HOMO level for EE2 and the semiconductor valence band edges. Also, for the irradiated hybrid photocatalyst, electrons in TiO2 should be transferred to WO3 conduction band, while holes move toward TiO2 valence band, improving charge separation. The remediated EE2 solutions were analyzed by fluorescence, HPLC and total organic carbon measurements. As expected from the energy diagram, both photocatalysts promoted the EE2 oxidation in HP configuration; after 4 h, the EE2 concentration decayed to 6.2 mg L(-1) (35% of EE2 removal) with irradiated TiO2 while TiO2/WO3 electrode resulted in 45% EE2 removal. A higher performance was achieved in EHP systems, when a Pt wire was introduced as a counter-electrode and the photoelectrodes were biased at +0.7 V; then, the EE2 removal corresponded to 48 and 54% for the TiO2 and TiO2/WO3, respectively. The hybrid TiO2/WO3, when compared to TiO2 electrode, exhibited enhanced sunlight harvesting and improved separation of photogenerated charge carriers, resulting in higher performance for removing this contaminant of emerging concern from aqueous solution.