93 resultados para Superfície trativa


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Fucana é um termo que define uma família de hetero e homopolissacarídeos que contem L-fucose em sua estrutura. Neste trabalho uma hererofucan F 2,0v da alga Dictyota menstrualis foi avaliada como agente antinociceptivo e antiinflamatório. A fucana F 2,0v inibiu a migração de leucócitos em até 100% (20.0 mg/kg) para a cavidade peritoneal após estimulo químico, porém, não alterou a expressão das interleucinas IL-1β, IL-6 e de TNF-α. Com relação a sensação dolorosa a F 2,0v (20.0 mg/kg) possui atividade antinociceptiva periférica com potência semelhante à dipirona. Por outro lado não apresentou efeito no teste da placa quente. Análises de microscopia confocal e citometria de fluxo mostram que a F 2,0v se liga a superfície dos leucócitos. O conjunto de resultados apresentados pela fucana F 2,0v sugerem que o mecanismo de ação está relacionado com sua capacidade de inibir a migração de leucócitos para o local da injúria tecidual. Em resumo os dados mostram que F 2,0v apresenta grande potencial como composto antinociceptivo e antiinflamatório. Estudos futuros serão realizados para caracterizar melhor o mecanismo de ação da F 2,0v

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Recent years have seen a significant growth in surface modifications in titanium implants, resulting in shorter healing times in regions with low bone density. Among the different techniques, subtraction by chemical agents to increase oxidation has been applied for surface treatment of dental implants. However, this technique is generally unable to remove undesirable oxides, formed spontaneously during machining of titanium parts, raising costs due to additional decontamination stages. In order to solve this problem, the present study used plasma as an energy source to both remove these oxides and oxidize the titanium surface. In this respect, Ti disks were treated by hollow cathode discharge, using a variable DC power supply and vacuum system. Samples were previously submitted to a cleaning process using an atmosphere of Ar, H2 and a mixture of both, for 20 and 60 min. The most efficient cleaning condition was used for oxidation in a mixture of argon (60%) and oxygen (40%) until reaching a pressure of 2.2 mbar for 60 min at 500°C. Surfaces were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), atomic force microscopy (AFM), adhesion and cell proliferation. SEM showed less cell spreading and a larger number of projections orfilopodia in the treated samples compared to the control sample. AFM revealed surface defects in the treated samples, with varied geometry between peaks and valleys. Biological assays showed no significant difference in cell adhesion between treated surfaces and the control. With respect to cell proliferation, the treated surface exhibited improved performance when compared to the control sample. We concluded that the process was efficient in removing primary oxides as well as in oxidizing titanium surfaces

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This laboratory study involves the participation of a group with professionals from different areas that had contributed to the construction of a multidisciplinary knowledge, about biological response of titanium surfaces modified through thermochemical treatment by plasma. Thus, the crystalline phase was previously characterized in relation to the topography, roughness, molhability and nitrogen concentration in the samples surface. It s indispensable that materials implanted can influence in a good cellular response as well as promotes a bacteria action. Surfaces modified by plasma were exposed to different cultures such as: cellular (human osteoblastic) and bacteria (Staphylococcus epidermidis ATCC35984 and Pseudomonas aeruginosa ATCC 27853) in order to evaluate the biological response. It was evaluated the adhesion, proliferation, morphology and cellular preference of human ostheoblastic cells (HOST), as well as the formation of a biofilm and bacteria proliferation. It was still analyzed the bacteria selectivity ability in relation to the surfaces. The software Image Pro Plus was used to the counting of cells and bacteria adhered to the surface of disks. The results were submitted to the variance analysis (ANOVA), and then, by the Kruskal-Wallis test, using GraphPad Instat ® software, version 3.5 to Windows. The nitrided samples in spite of show a higher roughness and molhability showed a smaller bacteria growing and higher cellular proliferation, when compared to non treated samples, indicating that the treated material present a high efficiency to biomedical implants