999 resultados para Electrophoresis, Starch Gel


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In this work we obtained microporous and mesoporous silica membranes by sol-gel processing. Tetraethylortosilicate (TEOS) was used as precursor. Nitric acid was used as catalyst. In order to study the affect of N,N-dimethylformamide (NDF) as drying additive, we used a molar ratio TEOS/NDF of 1/3. The performance of N,N-dimethylformamide was evaluated through monolithicity measurements. The structural evolutions occurring during the sol-gel transition and in the interconnected network of the membranes during thermal treatment were monitored by Fourier transform infrared spectroscopy (FTIR), thermogravimetric analyses and nitrogen sorption. We noted that in the presence of N,N-dimethylformamide, polymerization goes through a temporary stabilization of oligomers. The Si-O(H) bonds are stronger and belong to a more cross-linked structure for the N,N-dimethylformamide containing sol. The membranes obtained in the presence of N,N-dimethylformamide have larger surface area and its pore structure is in the range of mesoporous. The membranes obtained without additive have pore structure in the range of microporous.

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Titania powders were synthesized by a sol-gel process using titanium tetrabutoxide as precursor. The syntheses were performed in water or in solutions of dimethylformamide (dmf) or dimethylsulfoxide (dmso). It is demonstrated, by X-ray diffraction patterns of the synthesized powders, that the samples obtained in dmf or dmso solutions are crystalline (anatase phase) with some minor amount of brookite phase, whereas the sample synthesized in water is amorphous. The anatase phase can be obtained independently of any previous or further treatment of the synthesized powder, such as hydrothermal or heat treatment, providing a new, simple, quick and inexpensive route to synthesize anatase powders. From the peak broadening of the anatase (101) diffraction, the crystallite sizes were calculated as 6 nm.

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This article reports the phase behavior determi- nation of a system forming reverse liquid crystals and the formation of novel disperse systems in the two-phase region. The studied system is formed by water, cyclohexane, and Pluronic L-121, an amphiphilic block copolymer considered of special interest due to its aggregation and structural proper- ties. This system forms reverse cubic (I2) and reverse hexagonal (H2) phases at high polymer concentrations. These reverse phases are of particular interest since in the two-phase region, stable high internal phase reverse emulsions can be formed. The characterization of the I2 and H2 phases and of the derived gel emulsions was performed with small-angle X-ray scattering (SAXS) and rheometry, and the influence of temperature and water content was studied. TheH2 phase experimented a thermal transition to an I2 phase when temperature was increased, which presented an Fd3m structure. All samples showed a strong shear thinning behavior from low shear rates. The elasticmodulus (G0) in the I2 phase was around 1 order of magnitude higher than in theH2 phase. G0 was predominantly higher than the viscousmodulus (G00). In the gel emulsions,G0 was nearly frequency-independent, indicating their gel type nature. Contrarily to water-in-oil (W/O) normal emulsions, in W/I2 and W/H2 gel emulsions, G0, the complex viscosity (|η*|), and the yield stress (τ0) decreased with increasing water content, since the highly viscous microstructure of the con- tinuous phase was responsible for the high viscosity and elastic behavior of the emulsions, instead of the volumefraction of dispersed phase and droplet size. A rheological analysis, in which the cooperative flow theory, the soft glass rheology model, and the slip plane model were analyzed and compared, was performed to obtain one single model that could describe the non-Maxwellian behavior of both reverse phases and highly concentrated emulsions and to characterize their microstructure with the rheological properties.

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Silica gel is widely used as adsorbent for isolating and purifying natural compounds. Intensive use and high cost make this process expensive and generate solid residues contaminated with many different organic compounds. In the present work a simple method for recycling silica was investigated, by using Advanced Oxidative Processes. Silica gel was treated with H2O2/solar light and compared with a sample treated by conventional methods (high temperature and oxidation with KMnO4). High temperature treatment changes the structure of the silica and, consequently, the separation efficiency. Oxidation by using KMnO4 requires multiple steps and produces residues, including manganese and oxalic acid. The method using H2O2/solar light to recuperate silica gel does not modify its separation efficiency and is less expensive than the traditional methods. Additionally, HPLC and GC-MS analysis indicate that H2O2/solar light eliminates all residues of the silica gel.

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An overview about the role of alkoxides in the most recent uses of the sol-gel process in the synthesis of new materials is presented. Special attention is focused on the uses of silicon, aluminum, zirconium and titanium alkoxides. This review shows that the alkoxides enable the synthesis of new matrices with controlled surface area, acidity and porosity, as well as some unusual properties. The property associated with the solubility of metal alkoxides opens enormous possibilities of combining them for the synthesis films of powders with a very large range of metal compositions.

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This paper describes the analytical methods for determination of total chlorogenic acid (CGA) and their individual isomers. Spectrofotometric methods are adequate for total CGA analysis in green coffee but they can provide inflated results for coffee products. High pressure liquid chromatography (HPLC) with gel permeation column and ultraviolet (UV) monitoring is adequate for the simultaneous analysis of total CGA, alkaloids and sugars in coffee products. HPLC-UV-reversed phase is a simple, rapid and precise method for the determination of the individual isomers of CGA. Gas chromatography (GC) also is applied to the analysis of the individual isomers but phenolic acids need to be derivatized before analysis. Both HPLC- and GC-mass spectrometry provide an unequivocal identification of the individual isomers. The capillary electrophoresis method is simple, rapid and adequate to the simultaneous analysis of polyphenols and xanthines. Advantages and limitations of each method are discussed throughout the text.

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The silica gel was obtained from sand and its surface was modified with POCl3 to produce Si-Cl bonds on the silica surface. Ethylenediamine was covalently bonded onto the chlorinated silica surface. The adsorption of the chlorides of divalent cobalt, nickel and copper was qualitatively studied to show that the bonding of ethylenediamine onto the silica gel surface produces a solid base capable of chelating metal ions from solution. The experiments illustrate the extraction of silica gel, its reactivity, the development of modified surfaces and its application in removing metal ions from water and are deigned for undergraduate inorganic chemistry laboratories.

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Maltodextrin was produced from cassava and corn starch by enzymatic hydrolysis with alpha-amylase. The cassava starch hydrolysis rate was higher than that of corn starches in maltodextrin production with shorter dextrose equivalent (DE). DE values do not show directly the nature of the obtained oligosaccharides. Maltodextrin produced from cassava and corn starch was analysed by high performance liquid chromatography (HPLC), and the analysis showed that maltodextrin production differs according to the source of the starch. This is important in defining the application of the maltodextrin, according to its desired function.

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Though there has been a great deal of work concerning the development of natural fibers in reinforced starch-based composites, there is still more to be done. In general, cellulose fibers have lower strength than glass fibers; however, their specific strength is not far from that of fiberglass. In this work, alpha-fibers were obtained from alpha-grass through a mild cooking process. The fibers were used to reinforce a starch-based biopolymer. Composites including 5 to 35% (w/w) alpha-grass fibers in their formulation were prepared, tested, and subsequently compared with those of wood- and fiberglass-reinforced polypropylene (PP). The term “high-performance” refers to the tensile strength of the studied composites and is mainly due to a good interphase, a good dispersion of the fibers inside the matrix, and a good aspect ratio. The tensile strength of the composites showed a linear evolution for fiber contents up to 35% (w/w). The strain at break of the composites decreased with the fiber content and showed the stiffening effects of the reinforcement. The prepared composites showed high mechanical properties, even approaching those of glass fiber reinforced composites

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Gravimetric and Bailey-Andrew methods are tedious and provide inflated results. Spectrofotometry is adequate for caffeine analysis but is lengthy. Gas chromatography also is applied to the caffeine analysis but derivatization is needed. High performance liquid chromatography with ultraviolet detection (HPLC-UV) and reversed phase is simple and rapid for xanthine multianalysis. In HPLC-UV-gel permeation, organic solvents are not used. HPLC-mass spectrometry provides an unequivocal structural identification of xanthines. Capillary electrophoresis is fast and the solvent consumption is smaller than in HPLC. Chemometric methods offer an effective means for chemical data handling in multivariate analysis. Infrared spectroscopy alone or associated with chemometries could predict the caffeine content in a very accurate form. Electroanalytical methods are considered of low cost and easy application in caffeine analysis.

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A novel type of heavy metal adsorbent was prepared by the covalent grafting of thioglycolic acid molecules on a silica gel surface previsiouly modified with 3-aminopropyltrimethoxysilane. The amount of thioglycolic acid immobilized was 1.03 mmol per gram of silica. This material displayed a chelating moiety containing nitrogen, sulfur, and oxygen basic centers which are potentially capable of extracting from aqueous solutions cations such as Cu(II), Ni(II), Co(II), influenced by pH and ionic strength. This process of extraction was carried out by the batch method when similar chemisorption isotherms were observed for all cations. A modified Langmuir equation describes the experimental data.

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In this work, we report the synthesis and the photoluminescence features of a Eu(III)-doped modified silica matrix obtained by the sol-gel method. The matrix was prepared by reaction between tetraethylorthosilicate and phenyltriethoxysilane alkoxide. The hydrolysis occurred using basic catalysis. The solids were treated at 100, 200 and 300 ºC during 4 h and the structure was determined by thermogravimetric analysis (TG/DTG), nuclear magnetic resonance (NMR 29Si and 13C), infrared spectroscopy (IR) and photoluminescence (PL). The PL spectra display the Eu(III) lines characteristic of the ion, 5D0 -> 7F J (J=0, 1, 2, 3, 4), the blue emission as ascribed in the silica matrix. The NMR and TG showed the stability of hybrid silica.

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Samples of LDPE/modified starch blends 80/20 m/m before and after exposure to gamma rays were examined by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction. The effect of gamma radiation is clearly seen in the samples irradiated at a dose of 25 kGy. The main alteration in the polymeric material after exposure at the radiation range was a decrease in the mechanical properties, alterations in the chemical structure of the blend with an increase in the carbonyl and vinyl indices and the appearance of new crystalline symmetry generating a crystalline domain not existing before in the blend.

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Antecedentes: La exóstosis digital es una patología común que se presenta con frecuencia en las consultas de podología. A pesar del alto grado de incidencia es una entidad clínica muy poco estudiada. En la actualidad, los tratamientos propuestos para resolver esta patología son el tratamiento conservador mediante ortesis de silicona y el tratamiento quirúrgico consistente en la resección de la exostosis. Consideramos necesario otra alternativa de tratamiento como la infiltración de un gel de Poliacrilamida (PAAG) que presente mayores beneficios y menos inconvenientes a los pacientes que los tratamientos propuestos hasta el momento. Material y Métodos: Estudio realizado durante los meses de octubre de 2006 y febrero de 2009, sobre 54 pacientes (2 varones y 52 mujeres) de edades comprendidas entre 43 y 85 años afectados de exostosis digital. Se procede a la infiltración de un gel biocompatible en la zona de la exostosis para aislar la misma y evitar presiones según técnica de infiltración descrita. Todos los pacientes firman el documento de consentimiento informado. Los datos fueron recogidos de forma objetiva y subjetivamente en cada uno de los pacientes. La posterior evaluación de los datos y su tratamiento estadístico se llevó a cabo de forma disociada y anónima. El análisis estadístico se realizó con el paquete estadístico SPSS-PC 17.0. Resultados: El heloma interdigital en 4º espacio y 5º dedo se presentó en el 35,2% de los casos; el heloma en dorso del 5º dedo en el 29,6%; el heloma en dorso de dedo central en el 11,1% de los casos; heloma interdigital en 4º espacio y 4º dedo en el 9,3%; y el resto de lesiones primarias en un 14,9% del total de los casos. De cada uno de los casos se observó: tratamientos previos, cantidad de fármaco infiltrada, reacción al fármaco, controles y satisfacción del paciente al tratamiento. A un 57,4% de los pacientes no se les había realizado ningún tratamiento previo, mientras que a un 33,3% se le había realizado una ortesis de silicona. Analizando la cantidad de PAAG infiltrado en cada caso nos resultó una media de 0,542 cc con una desviación típica de 0,2237 cc. La cantidad mínima fue de 0,20 cc, hasta un máximo de 1,50 cc. La reacción observada al fármaco a las 24 y 48 horas de la infiltración fue prácticamente la misma que la del periodo inicial, observándose el habón en ambos tiempos de valoración. Se practicaron cuatro controles posinfiltración a la semana, al mes, a los tres meses y a los seis meses, en los que a seis meses pudimos concluir que en la mayoría de los casos ? 45 de 54 - persistió el habón de PAAG del inicio. La satisfacción se valora a la semana, al mes, a los tres meses y a los seis meses siendo a los 6 meses el grado de satisfacción de los pacientes del 98%. Conclusiones: El tratamiento del heloma provocado por exostosis digital mediante infiltración de gel de poliacrilamida según la técnica protocolizada en este estudio clínico es factible, reproductible y eficaz. Alcanzando el producto un alto nivel de tolerancia y adaptación a las estructuras anatómicas y disminuyendo los efectos secundarios, lo que nos hace afirmar que es una técnica segura con la que hemos obtenido óptimos resultados en lo que se refiere a efectividad del tratamiento y disminución del dolor. Podemos concluir que la infiltración de gel de poliacrilamida se convierte una nueva opción de tratamiento en el caso de exostosis digitales.

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Antecedentes: La exóstosis digital es una patología común que se presenta con frecuencia en las consultas de podología. A pesar del alto grado de incidencia es una entidad clínica muy poco estudiada. En la actualidad, los tratamientos propuestos para resolver esta patología son el tratamiento conservador mediante ortesis de silicona y el tratamiento quirúrgico consistente en la resección de la exostosis. Consideramos necesario otra alternativa de tratamiento como la infiltración de un gel de Poliacrilamida (PAAG) que presente mayores beneficios y menos inconvenientes a los pacientes que los tratamientos propuestos hasta el momento. Material y Métodos: Estudio realizado durante los meses de octubre de 2006 y febrero de 2009, sobre 54 pacientes (2 varones y 52 mujeres) de edades comprendidas entre 43 y 85 años afectados de exostosis digital. Se procede a la infiltración de un gel biocompatible en la zona de la exostosis para aislar la misma y evitar presiones según técnica de infiltración descrita. Todos los pacientes firman el documento de consentimiento informado. Los datos fueron recogidos de forma objetiva y subjetivamente en cada uno de los pacientes. La posterior evaluación de los datos y su tratamiento estadístico se llevó a cabo de forma disociada y anónima. El análisis estadístico se realizó con el paquete estadístico SPSS-PC 17.0. Resultados: El heloma interdigital en 4º espacio y 5º dedo se presentó en el 35,2% de los casos; el heloma en dorso del 5º dedo en el 29,6%; el heloma en dorso de dedo central en el 11,1% de los casos; heloma interdigital en 4º espacio y 4º dedo en el 9,3%; y el resto de lesiones primarias en un 14,9% del total de los casos. De cada uno de los casos se observó: tratamientos previos, cantidad de fármaco infiltrada, reacción al fármaco, controles y satisfacción del paciente al tratamiento. A un 57,4% de los pacientes no se les había realizado ningún tratamiento previo, mientras que a un 33,3% se le había realizado una ortesis de silicona. Analizando la cantidad de PAAG infiltrado en cada caso nos resultó una media de 0,542 cc con una desviación típica de 0,2237 cc. La cantidad mínima fue de 0,20 cc, hasta un máximo de 1,50 cc. La reacción observada al fármaco a las 24 y 48 horas de la infiltración fue prácticamente la misma que la del periodo inicial, observándose el habón en ambos tiempos de valoración. Se practicaron cuatro controles posinfiltración a la semana, al mes, a los tres meses y a los seis meses, en los que a seis meses pudimos concluir que en la mayoría de los casos ? 45 de 54 - persistió el habón de PAAG del inicio. La satisfacción se valora a la semana, al mes, a los tres meses y a los seis meses siendo a los 6 meses el grado de satisfacción de los pacientes del 98%. Conclusiones: El tratamiento del heloma provocado por exostosis digital mediante infiltración de gel de poliacrilamida según la técnica protocolizada en este estudio clínico es factible, reproductible y eficaz. Alcanzando el producto un alto nivel de tolerancia y adaptación a las estructuras anatómicas y disminuyendo los efectos secundarios, lo que nos hace afirmar que es una técnica segura con la que hemos obtenido óptimos resultados en lo que se refiere a efectividad del tratamiento y disminución del dolor. Podemos concluir que la infiltración de gel de poliacrilamida se convierte una nueva opción de tratamiento en el caso de exostosis digitales.