211 resultados para Nanopartículas


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The gastrointestinal tract is the main route of nutrients absorption and drugs delivery. Is important to know the parameters related to the tract, like gastric emptying and gastrointestinal transit, in order to better understand the behavior of different kind of meals or drugs passing through the GIT. Many techniques are used to study these parameters, such as manometry, scintigraphy, phenol red, activated charcoal and carbon-13 reading. However, these methods use radiation, are invasive and require animal sacrifice. As an alternative proposal, the Alternate Current Biosusceptometry (ACB), a magnetic technique, has proved to be effective for these studies with small animals, in a noninvasive way, low cost, radiation free and avoiding the animal death. Associating the ACB to magnetic micro or nanoparticles used as tracers, it is possible to observe the meal behavior inside of the GIT. Focusing meanly on liquid meals digestion, this paper had the objective to evaluate the efficiency of the ACB technique in gastric emptying and gastrointestinal transit evaluation of liquid meals in rats. To perform the experiments, magnetic nanoparticles (ferrite, MgFe2O4) were used on a 1,5 ml solution introduced by gavage on similar weight and age rats. The sensor made by 2 pairs of coils, capable of generating and detecting magnetic fields, creates a field on the interest place and when this field is in contact with the marked meal, it changes, resulting on a variation of the measured voltage. The voltage variation is analyzed and is obtained a particle concentration on the interest region. The results showed that is possible to apply the ACB technique on the GIT evaluation of liquid particles digestion, gastric emptying and meal cecum arrival time curves were obtained and from that, is possible to observe a pattern of gastrointestinal transit. Both mean process time values were acquired, proving the technique capability of ...

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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A ideia de uma nutrição que, além de suprir as necessidades nutricionais básicas do organismo também tem como objetivo a prevenção de doenças, ganha cada vez mais ênfase sobre a égide dos alimentos funcionais e dos nutracêuticos. Nesse contexto a curcumina, um pigmento amarelo-alaranjado extraído do rizoma da planta Curcuma longa L. se destaca como um promissor nutracêutico, apresentando um amplo potencial terapêutico e a cada dia encontra maior embasamento científico com a elucidação de seus mecanismos de ação sobre vários alvos moleculares importantes para a fisiopatologia de diversas doenças. A curcumina é bastante conhecida e explorada pela medicina asiática tradicional, principalmente pelas medicinas Ayurvédica e Chinesa. Utilizando o Pubmed e o Scielo como banco de dados para a pesquisa de trabalhos científicos, foi elaborada uma revisão bibliográfica com a compilação de estudos com diversos enfoques em relação à curcumina, a saber: i) características físico-químicas da curcumina; ii) propriedades anti-inflamatória, antioxidante, antidiabética, antitumoral, antiviral, antibacteriana, antiparasitária e antifúngica; iii) estratégias recentemente utilizadas para melhorar sua biodisponibilidade, tais como co-admnistração da piperina, síntese de análogos moleculares e sistemas inovadores de entrega como os sistemas coloidais (lipossomas e nanopartículas) e a complexação com ciclodextrina.

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This work has main aim of is to propose the synthesis and characterization of nanostructured materials for oxidation of carbohydrates such as glucose, with non-enzymatic catalysis. The proposed pathway of synthesis of metal catalysts is the polyol method and techniques of physical characterization proposals for analysis of prepared catalyst pass through diffraction technique of ray-x (DRX), scanning electron microscopy (SEM) and Energy Dispersive Spectroscopy ray-x (EDX). Technical proposals for the electrochemical characterization of the synthesized catalysts are Cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The prospects of this work are compared by the catalytic activity of the sensor designed with non-enzymatic sensors and biosensors also known in the literature

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From the last decade of the twentieth century, the rapid growth of nanotechnology has resulted in the discovery of a number of forms of nanoparticles and nanoclusters. We can cite as an example: nanotubes, nanowires, nanobelts, and nanoconesnanoclusters which have a wide range of applications, particularly as catalysts magnetic material nanodevices, chemical sensors, degradation of toxic chemicals, or even as possible carriers for the isotope medical applications.. The first step is the production and characterization of nanowires multithreaded using different types of metals (nickel, silver, gold) and polymers (pyrrole), which are prepared by electrochemical deposition process. Will be held by the characterization of the same images of scanning electron microscopy (SEM) and transmission electron microscopy (TEM)

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Pós-graduação em Biociências - FCLAS

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Pós-graduação em Química - IQ

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Pós-graduação em Química - IQ