79 resultados para Microemulsões
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Pós-graduação em Química - IQ
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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)
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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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A leishmaniose tegumentar é causada pela picada da fêmea dos insetos flebotomíneos. As lesões podem evoluir de pápulas para úlceras, que apresentam fundo granuloso e bordas infiltradas, as quais são indolores, podendo ser únicas ou múltiplas. Trata-se de uma doença negligenciada e o investimento em seu tratamento é desprezível. Até hoje, são empregados no tratamento medicamentos a base de antimonial pentavalente, além de outros fármacos como pentamidina, anfotericina B, paromomicina, imidazoquinolina, antifúngicos, como o fluconazol (FLU). As microemulsões (MEs) melhorarem a solubilidade e estabilidade dos fármacos, além de proporcionarem ação prolongada, vetorização diferenciada para determinados tecidos ou órgãos do organismo. Este trabalho teve como objetivos desenvolver e caracterizar MEs contendo FLU, caracterizar estruturalmente por meio de análises de microscopia de luz polarizada, análise do tamanho das gotículas, análise do perfil de textura e avaliação da bioadesão. Para o estudo de estabilidade foram empregados ensaios de avaliação visual e determinação do pH. Quanto aos ensaios biológicos in vitro, foram realizados ensaios colorimétricos das amostras visando verificar se o sistema desenvolvido permite a potencialização do poder leishmanicida do FLU contra as formas promastigotas da Leishmania amazonensis. Pelo diagrama de fases observou fases líquido-cristalinas confirmadas pela microscopia de luz polarizada, e foram selecionadas três formulações: uma SLT e duas SVT. Todos os ensaios de caracterização estrutural para a F2 sofreu variação quando acrescentou o fármaco, exceto para o potencial zeta, difração de raios X e bioadesão. Não houve alteração no ensaio estabilidade físico-química no período analisado. Os ensaios biológicos in vitro evidenciaram, nas condições metodológicas, inefetividade do sistema contra as formas promastigotas de L. amazonensis
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Surfactants are versatile organic compounds that have, in a single molecule, double chemical affinity. The surfactant molecule is composed by a hy drophobic tail group, a hydrocarbon chain (linear, branched, or mixed), and by a hydrophilic head group, which contains polar groups that makes it able to be applied in the organophilization process of natural clays. Microemulsions are microheterogeneous b lends composed by: a surfactant, an oily phase (non - polar solvent), an aqueous phase, and, sometimes, a co - surfactant (short - chain alcohol). They are systems with thermodynamic stability, transparent, and have high solubility power. Vermiculite is a clay m ineral with an expandable crystalline structure that has high cation exchange capacity. In this work vermiculite was used to obtain organoclays. The ionic surfactants dodecyl ammonium chlori de (DDAC) and cetyltrimethylammonium bromide (C 16 TAB) were used in the organophilization process. They were used as surfactant aqueous solutions and, for DDAC, as a microemulsion system. The organoclays were used to promote the separation of binary mixtures of xylene isomers (ortho - and meta - xylene). Dif ferent analytical techniques were used to characterize microemulsion systems and also the nanoclays. It was produced a water - rich microemulsion system with 0.92 nm droplet average diameter. The vermiculite used in this work has a cationic exchange capacity of 172 meq/100g and magnesium as main cation (24.25%). The basal spacing of natural vermiculite and organo - vermiculites were obtained by X - ray Diffraction technique. The basal spacing was 1.48nm for natural vermiculite, 4.01nm for CTAB - vermiculite (CTAB 4 ) , and 3.03nm for DDAC - vermiculite (DDAC M1A), that proves the intercalation process. Separation tests were carried out in glass columns using three binary mixtures of xylene (ortho - xylene and meta - xylene). The results showed that the organovermiculite pre sented an enhanced chemical affinity by the mixture of hydrocarbons, when compared with the natural vermiculite, and also its preference by ortho - xylene. A factorial experimental design 2 2 with triplicate at the central point was used to optimize the xylen e separation process. The experimental design revealed that the initial concentration of isomers in the mixture and the mass of organovermiculite were the significant factors for an improved separation of isomers. In the experiments carried out using a bin ary mixture of ortho - xylene and meta - xylene (2:1), after its percolating through the organovermiculite bed (DDAC M1), it was observed the preference of the organoclay by the ortho - xylene isomer, which was retained in greater quantity than the meta - xylene o ne. At the end of the treatment, it was obtained a final concentration in meta - xylene of 47.52%.
Estudo de alguns esfeitos na precipitação de partículas esféricas de sílica via microemulsão inversa
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Partículas esféricas de sílica foram obtidas via microemulsão inversa em sistema AOT / Heptano / H2O, utilizando-se soluções de silicato de sódio como precursor. Variações de condições experimentais durante a precipitação levam à mudanças no tamanho e na forma das partículas. O objetivo deste trabalho é otimizar a obtenção de partículas de sílica com homogeneidade de forma e tamanho, variando-se a ordem de adição dos reagentes, a concentração da solução de silicato de sódio, a razão água/surfactante (W), a ordem de mistura dos reagentes e a purificação do produto obtido. As micrografias evidenciaram que para se obter partículas esféricas, com faixa estreita de tamanho, utiliza-se duas microemulsões inversas a partir das soluções de ácido nítrico e de silicato de sódio, sendo que a mistura destas deve ser feita adicionando-se a microemulsão contendo o silicato de sódio sobre a microemulsão contendo o ácido nítrico. A relação silicato de sódio:água mais adequada de para os objetivos do trabalho é de 1:10. A purificação mais eficiente é aquela feita em duas etapas, com etanol e com água quentes. A partir dos resultados obtidos, pode-se verificar também que quanto maior o W maior será o tamanho médio de partícula.
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Este trabalho consiste numa revisão bibliográfica sobre as novas estratégias de promoção da permeação transdérmica, descrevendo os seus mecanismos de ação e o interesse na sua utilização. As estratégias de permeação, permitem o transporte de fármacos através do tecido cutâneo, permitindo assim diversas vantagens terapêuticas, quando comparada com a administração de fármacos por via oral ou parentérica. Os sistemas transdérmicos apresentam características físico-químicas adequadas de forma a permitir a libertação do fármaco e a sua passagem pelo estrato córneo. O desenvolvimento desses sistemas é um desafio, uma vez que a pele é uma barreira natural contra todos os microrganismos e xenobióticos que a pretendam ultrapassar. Desta forma, o uso de promotores de permeação transdérmica é uma ferramenta fundamental na alteração da estrutura do estrato córneo, possibilitando assim uma permeação mais eficaz das substâncias ativas pretendidas. Estes promotores são classificados de acordo com o seu mecanismo de ação, em promotores de permeação químicos ou físicos. Os promotores químicos causam, alterações cutâneas a nível da sua composição, propriedades físico-químicas, e na organização lipídica e proteica intercelular e intracelular do estrato córneo. Os promotores químicos descritos são os álcoois, amidos, ésteres, ácidos gordos, glicóis, pirrolidonas, sulfóxidos, sulfactantes, terpenos e as ciclodextrinas. Os promotores físicos, permitem a permeação recorrendo a técnicas de libertação de fármacos através da pele e/ou alteração por meios físicos das suas propriedades barreira. São exemplos destas técnicas, a aplicação de ultrassons na barreira cutânea pela técnica de sonoforese, de corrente elétrica na iontoforese, ou mesmo o uso de microagulhas ou microdermoabrasão. Outras técnicas físicas de permeação existentes são: a eletroporação, os injetores de jacto líquido, os injetores de pó, e a ablação térmica. Os sistemas coloidais são também utilizados como transportadores de fármacos, devido à sua capacidade em aumentar a permeação de fármacos através da pele, como é o caso dos lipossomas, niossomas, transfersomas, nanopartículas e microemulsões. O objetivo desta revisão consiste em analisar todos os promotores de permeação que permitem a passagem do princípio ativo através do estrato córneo.
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In general, among the corrosion inhibitors surfactants are the most commonly used compounds, because they are significantly effective by forming protective films on anodic and cathodic areas. In this study, microemulsions containing he biodegradable saponified coconut oil as surfactant (SME-OCS) was used as green corrosion inhibitors. With this purpose, methanolic extracts of Ixora coccinea Linn (IC) and a polar fraction rich in alkaloids (FA) obtained from Croton cajucara Benth solubilized in the SME-OCS system were examined in the presence of AISI 1020 carbon steel, in saline solution (NaCl 3,5 %). The efficiency of corrosion inhibition of IC and FA were evaluated in the following microemulsions: SME-OCS-IC and SME-OCS-FA. The microemulsion system SME-OCS in the presence and absence of IC and FA was assessed by measurements of weight loss and the electrochemical method of polarization resistance, with variation in the concentration of IC and FA (50 - 400 ppm), showing significant results of corrosion inhibition (83,6 % SME-OCS; 92,2 % SME-OCS-FA; and 95,3 % SME-OCS-IC)
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Stimulation operations have with main objective restore or improve the productivity or injectivity rate in wells. Acidizing is one of the most important operations of well stimulation, consist in inject acid solutions in the formation under fracture formation pressure. Acidizing have like main purpose remove near wellbore damage, caused by drilling or workover operations, can be use in sandstones and in carbonate formations. A critical step in acidizing operation is the control of acid-formation reaction. The high kinetic rate of this reaction, promotes the consumed of the acid in region near well, causing that the acid treatment not achive the desired distance. In this way, the damage zone can not be bypassed. The main objective of this work was obtain stable systems resistant to the different conditions found in field application, evaluate the kinetic of calcite dissolution in microemulsion systems and simulate the injection of this systems by performing experiments in plugs. The systems were obtained from two non ionic surfactants, Unitol L90 and Renex 110, with sec-butanol and n-butanol like cosurfactants. The oily component of the microemlsion was xilene and kerosene. The acqueous component was a solution of HCl 15-26,1%. The results shown that the microemulsion systems obtained were stable to temperature until 100ºC, high calcium concentrations, salinity until 35000 ppm and HCl concentrations until 25%. The time for calcite dissolution in microemulsion media was 14 times slower than in aqueous HCl 15%. The simulation in plugs showed that microemulsion systems promote a distributed flux and promoted longer channels. The permeability enhancement was between 177 - 890%. The results showed that the microemulsion systems obtained have potential to be applied in matrix acidizing
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Boron is a semi-metal present in certain types of soils and natural waters. It is essential to the healthy development of plants and non-toxic to humans, depending on its concentration. It is used in various industries and it s present in water production coming from oil production. More specifically in Rio Grande do Norte, one of the largest oil producers on shore of Brazil, the relationship water/oil in some fields becomes more than 90%. The most common destination of this produced water is disposal in open sea after processing to meet the legal specification. In this context, this research proposes to study the extraction of boron in water produced by microemulsion systems for industrial utilization. It was taken into account the efficiency of extraction of boron related to surfactant (DDA and OCS, both characterized by FT-IR), cosurfactant (butanol and isoamyl alcohol), organic phase (kerosene and heptanes) and aqueous phase (solution of boron 3.6 ppm in alkaline pH). The ratio cosurfactant/ surfactant used was four and the percentage of organic phases for all points of study was set at 5%. It was chosen points with the highest percentage of aqueous phase. Each system was designed for three points of different compositions in relation to the constituents of a pseudoternary diagram. These points were chosen according to studies of phase behavior in pseudoternary diagrams made in previous studies. For this research, points were chosen in the Winsor II region. The excess aqueous solution obtained in these systems was separated and analyzed by ICP OES. For the data set obtained, the better efficiency in the extraction of boron was obtained using the system with DAC, isoamyl alcohol and heptanes, which extracted 49% in a single step. OCS was not viable to the extraction of boron by microemulsion system in the conditions defined in this study
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The program PROBIODIESEL from the Ministry of Science and Technology has substantially increased glycerine, obtained as a sub-product of biodiesel production process, making it necessary to seek alternatives for the use of this co-product. On the other hand, herbicides although play a role of fundamental importance in the agricultural production system in force, have been under growing concern among the various segments of society because of their potential environmental risk. In this work, we used glycerin in microemulsion systems for application of herbicides, to improve efficiency and lower environmental pollution caused by the loss of those products to the environment. To obtain the systems of microemulsinados were used Unitol L90 NP and Renex 40 as surfactants, butanol as co-surfactant, coconut oil as oil phase and aqueous phase as we used solutions of glycerin + water. Through the determination of phase diagrams, the microemulsion region was found in the system E (L90 Unitol, coconut oil and glycerin + water 1:1). Three points were chosen to the aqueous phase rich in characterization and application in the solubilization of glyphosate and atrazine. Three experiments were performed in Horta, Department of Plant Sciences, Plant Science Sector, UFERSA, Mossoró-RN. The first experiment was conducted in randomized complete blocks with 20 treatments and four replications. The treatments consisted of five doses of the herbicide glyphosate (0.0, 0.45, 0.9, 1.35 and 1.8 L ha-1) diluted with four sauces: C1, C2, C3 (microemulsions) and C4 (water). The phytotoxicity of Brachiaria brizantha was measured at 7, 14, 28 and 60 DAA (days after application). At 60 DAA, we evaluated the biomass of plants. The second experiment was developed in randomized complete blocks with 20 treatments and four repetitions. The treatments consisted of five doses of the herbicide atrazine (0.0, 0.4, 0.8, 1.6 and 2.4 L ha-1) diluted with four sauces: C1, C2, C3 (microemulsions) and C4 (water). The phytotoxicity on Zea mays and Talinum paniculatum was evaluated at 2, 7, 20 DAA. The experiment III was developed in randomized complete blocks with 16 treatments and three repetitions. The treatments consisted of 16 combinations among the constituents of the microemulsion: Unitol L90 surfactant (0.0, 1.66, 5.0, 15 %) and glycerin (0.0, 4.44, 13.33 and 40.0 %). The phytotoxicity on Zea mays was evaluated at 1, 7 and 14 DAA. At 14 DAA, we evaluated the biomass of plants. The control plants using the microemulsions was lower than in the water due to the poisoning caused by the initial microemulsions in the leaves of the plants, a fact that hinders the absorption and translocation of the herbicide. There was no toxicity in Zea mays plants caused by the herbicide, however, were highly intoxicated by microemulsions. T. paniculatum was better controlled in spraying with the microemulsions, regardless of the dose of the herbicide. The glycerine did not cause plant damage. Higher poisoning the plants are caused by tensoactive Unitol L90 and higher rates occur with the use of higher concentrations of surfactant and glycerin, or microemulsion. The microemulsions used hampered the action of glyphosate in controlling B. brizantha and caused severe poisoning in corn, and these poisonings attributed mainly to the action of surfactant
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Several pharmaceutical products have been developed in recent years aiming to enhance the treatment of diseases by increasing the effectiveness of drugs. Many of these new products are based on new drug delivery systems. Among these, microemulsions, which were first studied in 1943 by Hoar and Schulman, is of great interest. Microemulsion can be defined as a thermodynamically stable, isotropic, translucent and transparent system of two immiscible liquids stabilized by a surfactant film located in the oil / water interface. The aim os this work was the incorporation of Amphotericin B and Simvasatin to a microemulsion system and analyzes its physicochemical properties and their therapeutical activity when incorporated into this system. Some very promising results were achieved as the reduction of the toxicity and maintenance of the efficacy of the Amphotericin B incorpored into a microemulsion, which was demonstrated in the in vitro pharmacotoxicological study. As for the incorporation of Simvastatin in microemulsion, it was observed a significant improvement in the potential antiinflammatory and anti-infective properties when the system was use to treat infected wounds (simvastatin pleiotropic effects). Therefore, it can be concluded that the incorporation of these drugs into microemulsion system reveal the potential of microemulsions as a promising and novel dosage form, qualifying them for future trials in order to make them available in the pharmaceutical market