46 resultados para Suspensao : Particulas solidas


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Medicamentos manipulados são preparados nas farmácias ou nos serviços farmacêuticos hospitalares pelo profissional farmacêutico ou sob sua direta responsabilidade, a partir de prescrições médicas ou de fórmulas inscritas no Formulário Nacional ou Formulários Internacionais reconhecidos pela Anvisa. No Brasil, o consumo desses produtos mostra um crescimento importante no cenário da Saúde Pública. A finasterida é um fármaco representativo de uma grande parcela desse mercado por seu fácil acesso e alta eficácia. Contudo, a manipulação deste produto deve ser realizada com bastante cautela, por ser um medicamento de baixa dose. Nesse meio, a Farmácia-Escola “Prof. Dr. Antonio Alonso Martinez” conquista a confiança da população de Araraquara e região há muitos anos. A fim de se fundamentar essa confiança, o presente trabalho tem por objetivo analisar cápsulas de finasterida manipuladas na Farmácia Escola supracitada por Cromatografia Líquida de Alta Eficiência (CLAE), utilizando metodologia devidamente validada. Foram analisados parâmetros como teor e uniformidade de conteúdo das cápsulas, bem como teor da matéria-prima e da mistura de pós destinados ao preenchimento de cápsulas. Os resultados encontrados apresentam-se dentro dos critérios adotados pelas Farmacopeias Americana e Europeia, uma vez que a Farmacopeia Brasileira ainda não tem monografia inscrita da finasterida e dos respectivos medicamentos

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The Boron Neutron Capture Therapy (BNCT), based on the 10B(n,α)7Li reaction, represents a promising modality for the treatment of cancers that are resistents to conventional treatments. So, it is necessary to find drugs (boron compounds) with high selectivity for each type of cancer, the neutrons source should be well characterized and the rate of 10B(n,α)7Li reaction should be measured with great accuracy as possible. This study aimed to develop a method for manufacturing thin films of boron, for measure the 10B(n,α)7Li reaction, and analyze the uniformity of the films. Five thin films of boron were manufactured with three different concentrations of boric acid, heated to transform the acid in boron, irradiated with thermic neutrons coupled to CR-39 detectors, in BNCT line at the reactor IEA-R1 IPEN/CNEN, São Paulo. After the irradiation, the detectors were chemically attacked with NaOH to reveal the tracks. The methodology presented is effective because it resulted in deposition of boron as thin film enabling the quantitative analysis of 10B(n,α)7Li reaction. The analysis of the uniformity of density of the induced tracks in CR-39 shows that, in most of the films, there is no uniformity in surface distribution of boron, but when the film is divided, we obtain some uniform sectors

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The pharmaceutical innovations, such as the use of polymers to control drug release, create possibilities for a better action of the drug in the body, which causes a a more effective therapeutic effect and a safer treatment for the patient. In this work, were prepared and characterized matrix tablets of hydroxypropylmethylcellulose (HPMC) containing nimesulide as model drug to evaluate the performance as a controlled release system. HPMC, a cellulose ester, is a hydrophilic polymer that undergoes swelling, i.e., absorbs water and forms a gel layer controlling drug release. The characterization of powders was performed by analysis of particle size and morphology, density, compressibility index determination, flow properties and determination of swelling profile. The tablets were evaluated according to their physical parameters of quality and to the in vitro release of nimesulide, as well as the analysis of the mechanisms of drug release by appropriate mathematical models. The set of results showed that the HPMC/Nimesulide mixture exhibited satisfactory physical characteristics (size, shape, density and flow). The release profile demonstrated an effective control upon drug release in enteric environment and presented more correlation with Korsmeyer-Peppas’ and Weibull’s mathematical models, indicating that the release of nimesulide occurs through the relaxation of the polymer chains

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Cosmic radiation has been identi ed as one of the main hazard to crew, aircraft and sensitive equipments involved in long-term missions and even high-altitude commercial ights. Generally, shields are used in spatial units to avoid excessive exposure, by holding the incident radiation. Unfortunatelly, shielding in space is problematic, especially when high-energy cosmic particles are considered, due to the production of large number of secondary particles, mainly neutrons, protons and alpha particles, caused by spallation reactions and quasi-elastic processes of the corpuscular radiation with the shield. Good parameters for checking the secondary particle production at target material are diferential cross section and energy deposited in the shield. Addition experiments, some computer codes based on Monte Carlo method show themselves a suitable tool to calculate shield parameters, due to have evaluated nuclear data libraries implemented on the algorithm. In view of this, the aim of this work is determining the parameters evaluated in shielding materials, by using MCNPX code, who shows good agreement with experimental data from literature. Among the materials, Aluminium had lower emission and production of secondary particles

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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