957 resultados para Bio-informatique
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No presente estudo foram analisados possíveis fatores bio-sócio-ambientais interferentes na exposição ao mercúrio em crianças ribeirinhas. Participaram 103 crianças das regiões do rio Tapajós, rio Acará e ilha do Marajó. O tipo de estudo foi seccional analítico. Foram colhidas amostras de cabelo para análise dos teores de Hgtotal, de sangue (análise de hemoglobina e hematócrito) e fezes. Foram utilizados índices antropométricos na análise do crescimento das crianças. Na avaliação do desenvolvimento neuropsicomotor foi aplicado o teste de triagem Denver II modificado. A maior média dos teores de Hgtotal em amostras de cabelo das crianças foi na região do Tapajós (5,58 μg/g) e 0,65 μg/g nas demais localidades. A prevalência de Hgtotal >10 μg/g foi 25% e 7,5% em São Luiz do Tapajós e Barreira. O consumo diário de peixes pelas famílias das crianças quando relacionado com teores de Hgtotal p(valor) foi < 0,05. A prevalência do tempo de amamentação das crianças nos grupos com menos de 12 meses e maior de 6 meses para as localidades do rio Tapajós, quando relacionadas com teores de Hgtotal no cabelo das crianças apresentou p(valor) <0,05. A prevalência de anemia nas crianças da região Tapajós era de 46,7% e quando relacionada com teores de Hgtotal p(valor) <0,0001.Os exames coproscópicos indicaram que 68,3% eram poliparasitadas, quando relacionadas com Hgtotal p(valor) <0,05. O perfil do crescimento observado através dos indicadores do estado nutricional era 82,6% com peso adequado para idade e 14,5% com peso muito baixo e baixo. O desempenho neuropsicomotor examinado pelo teste de triagem Denver II modificado apresentou cinco crianças como suspeitas de atraso no desenvolvimento. Concluiu-se que localidades no entorno de atividades garimpeira as crianças ribeirinhas são expostas ao risco de contaminação mercurial. Fatores bio-sócio-ambientais interferentes na exposição ao mercúrio tais como consumo diário de peixes, tempo de amamentação, anemia, enteroparasitoses apresentaram relações estatísticas significativas com o Hgtotal no cabelo das crianças.
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Pós-graduação em Serviço Social - FCHS
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Bio-molecular computing, 'computations performed by bio-molecules', is already challenging traditional approaches to computation both theoretically and technologically. Often placed within the wider context of ´bio-inspired' or 'natural' or even 'unconventional' computing, the study of natural and artificial molecular computations is adding to our understanding of biology, physical sciences and computer science well beyond the framework of existing design and implementation paradigms. In this introduction, We wish to outline the current scope of the field and assemble some basic arguments that, bio-molecular computation is of central importance to computer science, physical sciences and biology using HOL - Higher Order Logic. HOL is used as the computational tool in our R&D work. DNA was analyzed as a chemical computing engine, in our effort to develop novel formalisms to understand the molecular scale bio-chemical computing behavior using HOL. In our view, our focus is one of the pioneering efforts in this promising domain of nano-bio scale chemical information processing dynamics.
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Studies using bio(muco)adhesive drug delivery systems have recently gained great interest, which can promote drug targeting and more specific contact of the drug delivery system with the various absorptive membranes of the body. This technological platform associated with nanotechnology offers potential for controlling drug delivery; therefore, they are excellent strategies to increase the bioavailability of drugs. The objective of this work was to study nanotechnology-based polymeric bio(muco)adhesive platforms for controlling drug delivery, highlighting their properties, how the bio(muco)adhesion can be measured and their potential applications for different routes of administration.
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Pós-graduação em Reabilitação Oral - FOAR
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Mass spectrometry is an analytical technique widely used in several areas of academic research. It allows the knowledge of the information about the micro-world of atoms leading to significant advances in science today. The analysis of stable isotopes of carbon, hydrogen, oxygen, nitrogen and sulfur, also known as bio-elements, shows itself as a major area of interest in using the proposed method. The development of techniques and equipment coupled with mass spectrometry promises to deliver even greater progress in this field, in particular, for the biological sciences and related areas. The pyrolytic method in reduction of organic compounds at high temperatures provides simultaneous isotopic analysis of bio-elements H and O, by the gases released, H2 and CO after the pyrolitic process, significantly reducing analysis time and the amount of material to sample. This paper presents a review of mass spectrometry with its basic principles of operation, and pyrolytic method for reducing compounds at temperatures above 1400 ° C for isotopic analysis of bio-elements
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
Imunomarcação da OPG e RANKL no reparo ósseo após a cirurgia de elevação do seio maxilar com Bio-Oss
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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The anticancer drug paclitaxel was encapsulated into a bio-nanocomposite formed by magnetic nanoparticles, chitosan and apatite. The aim of this drug carrier is to provide a new perspective against breast cancer. The dynamics of the pure and encapsulated drug were investigated in order to verify possible molecular changes caused by the encapsulation, as well as to follow which interactions may occur between paclitaxel and the composite. Fourier transformed infrared spectroscopy, thermal analysis, inelastic and quasi-elastic neutron scattering experiments were performed. These very preliminary results suggest the successful encapsulation of the drug.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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In uncemented Ti6Al4V hip implants, the bone-stem interface is subjected to cyclic loading motion driven by the daily activities of the patients, which may lead to the complete failure of the implant in the long term. It may also compromise the proliferation and differentiation processes of osteoblastic cells (bone-forming cells). The main objective of this work is to approach for the first time the role of these organic materials on the bio-tribocorrosion mechanisms of cultured Ti6Al4V alloys. The colonized materials with MG63 osteoblastic-like cells were characterized through cell viability/proliferation and enzymatic activity. Tribocorrosion tests were performed under a reciprocating sliding configuration and low contact pressure. Electrochemical techniques were used to measure the corrosion kinetics of the system, under free potential conditions. All tests were performed at a controlled atmosphere. The morphology and topography of the wear scar were evaluated. The results showed that the presence of an osteoblastic cell layer on the implant surface significantly influences the tribocorrosion behavior of Ti6Al4V alloy. It was concluded that the cellular material was able to form an extra protective layer that inhibits further wear degradation of the alloy and decreases its corrosion tendency.