1000 resultados para Alta administração


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The drug targeting has been the subject of extensive studies in order to develop site-specific treatments that minimize side effects and become more effective anticancer therapy. Despite considerable interest in this class, drugs like antibiotics also have limitations, and have been neglected. Using new pharmaceutical technologies, the use of magnetic vectors appear as promising candidate for drug delivery systems in several studies. Small magnetic particles bound to the drug of interest can be modulated according to the orientation of a magnet outside the body, locating and holding in a specific site. In this work, we propose the use of High Energy Milling (HEM) for synthesis of a magnetic vector with characteristics suitable for biomedical applications by intravenous administration, and for the formation of an oxacillin-carrier complex to obtain a system for treating infections caused by Staphylococcus aureus. The results of the variation of milling time showed that the size and structural properties of the formed material change with increasing milling time, and in 60 hours we found the sample closest to the ideal conditions of the material. The vector-drug system was studied in terms of structural stability and antimicrobial activity after the milling process, which revealed the integrity of the oxacillin molecule and its bactericidal action on cultures of Staphylococcus aureus ATCC

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Inflammatory bowel disease (IBD) is a chronic and relapsing disease caused by exaggerated response of the immune system. It represents a significant health problem by limiting the quality of life and being the main risk factor for colorectal cancer. Despite of its importance, the high worldwide incidence and being the object of research for several decades, the etiology remains unknown. Studies indicates an interaction between genetic and environmental factors which together with the intestinal microbiota, leads to an uncontrolled immune response. One of the aggravating environmental factors often discussed is stress, as the daily life of the population in general is increasingly rushed. In order to demonstrate the influence of stress on IBD, this study aimed to standardize an experimental model of colitis induced by instillation of a trinitrobenzene sulfonic acid (TNBS) noninflammatory concentration plus exposure to stress that intensify the inflammation. Therefore, an experiment was done to determine what would be the noninflammatory concentration. In this step, four different concentrations of TNBS (1, 6, 12.5 or 40mg/ml) were tested and the lowest concentration capable of inducing a noninflammatory response in the gut was defined as 1 mg/ml. Then, a second experiment was performed which induced colitis and exposed the animals to restraint stress. The results, however, showed that this stimulus was not enough to exacerbate the damage caused by the 1 mg/ml concentration of TNBS in the colon. With some changes in the protocol, the third experiment associated cold and restraint, as well as changes on the day of euthanasia, which occurred immediately after the stress session. The results of myeloperoxidase activity measurement were unexpected due to the noninflammatory concentration of TNBS caused an intestinal inflammation similar to the concentration of 40 mg/ml. However, the results of glutathione quantification and the corticosterone ...

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

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O fluconazol (FLU) é um antifúngico muito utilizado no tratamento de dermatomicoses devido à sua eficácia e segurança. No entanto, este pode apresentar perfil farmacocinético muitas vezes inadequado, promovendo recorrência da doença ou resistência do fungo, apresentando uma série de efeitos colaterais além de alta toxicidade. Por esta razão, há uma busca contínua de novos medicamentos antifúngicos mais potentes, mas, sobretudo, mais seguros que os existentes. Os carreadores lipídicos nanoestruturados (NLCs) são compostos por uma matriz contendo lipídio liquido e sólido, e possui como uma de suas vantagens a alta capacidade de encapsulamento. O objetivo do trabalho foi desenvolver e caracterizar NLCs para administração cutânea de fluconazol. A solubilidade do FLU foi avaliada em ácido oleico (AO) e monoestearato de glicerila (GMS) e observou-se uma maior incorporação de FLU na mistura desses lipídios do que nos compostos isolados. Os NLCs contendo AO, GMS, poloxamer-407, fosfatidilcolina de soja (PC) e FLU foram desenvolvidos empregando o método de homogeneização em alta velocidade de cisalhamento à quente. A caracterização foi realizada por espectroscopia de correlação de fótons e os resultados de diâmetro médio, índice de polidispersidade e potencial zeta foram de 218,63 e 314,1nm, 0,417 e 0,640 e -28,4 e -25,8mV para os NLCs com (NLC_FLU) e sem o FLU (NLC) respectivamente. No estudo de estabilidade, as formulações NLC e NLC_FLU foram armazenados à 8ºC e à temperatura ambiente e os resultados mostraram maior estabilidade durante os seis meses para os NLC_FLU armazenada à 8ºC. A morfologia dos NLCs foi determinada por microscopia eletrônica de varredura de efeito de campo na qual os NLCs apresentaram morfologia esférica e escala nanométrica. Uma metodologia foi validada por espectrofotometria na região do ultravioleta para a determinação da eficiência de encapsulação (EE) do fármaco que foi ...