300 resultados para Iodide Peroxidase


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Wood is the main raw material used in the pulp and paper industry. It is a material that presents heterogeneous structure and complex composition, which results in a relatively resistant material to the biodegradation process. In the present review, we attempted to summarize the structural characteristics of wood and describe the chemical nature of its major components to, afterwards, comment about its biodegradation. The role of the enzyme manganese peroxidase in the lignin degradation by a selective white-rot fungus, Ceriporiopsis subvermispora, was highlighted.

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This paper describes the antioxidant effects of thirteen phenolic compounds isolated from plants of the genus Lychnophora. Two assays were performed to evaluate these effects: a cellular test that measured the luminol-enhanced chemiluminescence produced by neutrophils stimulated with opsonized zymosan and a cell-free test involving horseradish peroxidase-H2O2-luminol. In both assays, the antioxidant activity of the phenolic compounds was dependent on their concentration and chemical structure. Our results suggest that the ability of phenolic compounds from Lychnophora species to scavenge and inhibit the generation of ROS may be a mechanism underlying the anti-inflammatory activity of extracts from Lychnophora spp.

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We report the development of two copolymers based on 2-vinylpyridine, styrene and divinylbenzene (2Vpy-Sty-DVB) with different porosity degrees. The copolymers were subsequently quaternized with methyl iodide. To prepare charge transfer complexes, the unmodified copolymers and their derivatives quaternized with methyl iodine were impregnated with iodine. The antibacterial properties of the polymers were evaluated in dilutions ranging from 10² to 10(7) cells/mL of the auxotrophic OHd5-K12 Escherichia coli strain. It was possible to obtain materials with complete antibacterial activity even in the highest cell concentrations tested.

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Iodide potassium incorporated on mesoporous molecular sieves (SBA-15 and MCM-41) was used as heterogeneous catalysts in the transesterification of sunflower oil under different conditions of reaction time and ratio catalyst/oil (w/w). The results have showed that the system supported in SBA-15 has been more active than the supported in MCM-41, promoting a conversion to methyl esters of 84.98%.

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This work presents simple routes to recover iodine compounds from oxidized laboratory chemicals and aqueous solutions (HI and KI) used in laboratory chemistry classes. These routes are based on the oxidation of iodide ions (I-) to iodine (I2) by an oxidant (H2O2) or reduction of oxidized iodine by red phosphorus or hydrazine. Both routes presented high yields. The oxidative route is of general use whereas the reductive one is appropriate for restoring original iodine reagents. Final wastes were generated in low amounts. This work is appropriate for teaching many laboratory techniques (e.g., distillation, titration and filtration) in the chemical laboratory.

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A method based on enzymatic activities was developed using three enzymes (glycerokinase, glycerol-3-phosphate oxidase and peroxidase) and colorimetric detection for the determination of glycerol in biodiesel. The enzymatic conversion of glycerol produces H2O2 that is eliminated by the action of peroxidase, an oxygen acceptor and 4- aminoantipirine, producing water and a colored compound, which was analyzed. This method showed good linear correlation coefficient (r = 0.9937) in the concentration range of 4.95 x 10-5 to 3.96 x 10-4% (w/w) and had experimental limits of detection and quantitation of 7.10 x 10-6 and 2.10 x 10-5% (w/w), respectively.

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An optical chemical sensor for the determination of nitrite based on incorporating methyltrioctylammonium chloride as an anionic exchanger on the triacetylcellulose polymer has been reported. The response of the sensor is based on the redox reaction between nitrite in aqueous solution and iodide adsorbed on sensing membrane using anion exchange phenomena. The sensing membrane reversibly responses to nitrite ion over the range of 6.52×10-6 - 8.70×10-5 mol L-1 with a detection limit of 6.05×10-7 mol L-1 (0.03 µg mL-1) and response time of 6 min. The relative standard deviation for eight replicate measurements of 8.70×10-6 and 4.34×10-5 mol L-1 of nitrite was 4.4 and 2.5 %, respectively. The sensor was successfully applied for determination of nitrite in food, saliva and water samples.

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Enzymes are biological catalysts that offer great potential for use in the synthesis and modification of polymers, being more specific and greener than chemical catalysts. In this work, enzymes from the classes of hydrolases (lipase, cutinase and protease) and of oxidoreductases (horseradish peroxidase, manganese peroxidase and laccase) were identified as the main biocatalysts responsible for the synthesis of polymers. Biocatalysis can potentially be part of the life cycle of several polymers, including polyesters, polyurethanes, polycarbonates, polyamides, functionalized polysaccharides and polystyrene, allowing the synthesis of specialty macromolecules for fine applications and with higher added-value than commodity polymers.

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In this work, an experimental design was used to analyze the influence of process parameters on the production of extracellular enzymes such as β-glucosidase and peroxidase, and their possible effect on the obtention of soluble and nanostructured silica from rice husk ash by the action of the fungus Fusarium oxysporum. Specifically, pH, fermentation time and glucose concentration in the culture medium were varied. Statistical analysis indicated that the silica synthesis in the aqueous medium was strongly dependent on pH and time. Although the glucose concentration does not exert a direct influence on the biosynthesis of silica, it is an important parameter in the production of extracellular enzymes. To prevent enzyme inhibition and provide higher dissolution of silica, it is recommended to work at a pH close to neutral with a glucose concentration of 3 g L-1 for at least 144 h.

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An interesting practical experiment about the preparation of dye–sensitized solar cells (DSSC) using natural dyes were carried out by the undergraduate students in the chemistry course at UNICAMP . Natural dyes were extracted from blueberries (Vaccinium myrtillus L.), jabuticabas (Myrciaria cauliflora), raw and cooked beets (Beta vulgaris L.), and annattos (Bixa orellana L.), which were used to sensitize TiO2 films that composed the photoanode in the DSSC. A polymer electrolyte containing an iodide/triiodide redox couple was used in lieu of the use of liquid solutions to prevent any leakage in the devices. A maximum solar-to-electric energy conversion of 0.26 ± 0.02% was obtained for the solar cell prepared with annatto extracts. This experiment was an effective way to illustrate to the undergraduate students how to apply some of the chemical concepts that they learned during their chemistry course to produce electric energy from a clean and renewable energy source. Teachers could also exploit the basics of the electronic transitions in inorganic and organic compounds (e.g., metal-to-ligand charge transfer and ϖ-ϖ* transitions), thermodynamics (e.g., Gibbs free energy), acid–base reactions in the oxide solid surface and electrolyte, and band theory (i.e., the importance of the Fermi level energy).

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Os níveis de fenóis solúveis totais e a atividade das enzimas oxidativas polifenoloxidases e peroxidases foram estudados em tecidos foliares sadios dos clones de cacaueiro (Theobroma cacao) SCA 6, TSH 1188, TSH 565, TSH 516, EET 397, EET 62, TSA 641, SIAL 505, RIM 106, RIM 52, SIC 24 e UF 613, com o objetivo de estudar possível(is) mecanismo(s) de resistência de cacaueiro a Crinipellis perniciosa. Os níveis de fenóis solúveis totais foram mais elevados em clones de cacaueiro com resistência a C. perniciosa, e podem estar contribuindo na resposta de defesa contra o patógeno. A atividade de polifenoloxidases foi menor nos clones resistentes do que nos clones suscetíveis. A atividade de peroxidases em folhas maduras foi menor nos clones resistentes, mas em folhas jovens não foi possível estabelecer uma relação da atividade de peroxidase com os clones resistentes. Os níveis de fenóis e a atividade das enzimas oxidativas correlacionaram-se de forma inversa na maioria dos clones estudados, o que pode indicar uma inibição das enzimas peroxidases e polifenoloxidases pelos compostos fenólicos.

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O efeito da indução de resistência promovido por acibenzolar-S-methyl foi avaliado em três cultivares de feijoeiro (Phaseolus vulgaris), com diferentes níveis de resistência à murcha-de-Curtobacterium, em dois ensaios distintos, sob condições de casa de vegetação. O primeiro ensaio visou avaliar a ação do acibenzolar-S-methyl na indução de resistência à murcha-de-Curtobacterium e o segundo, objetivou avaliar a ação deste produto na atividade das enzimas peroxidase e polifenoloxidase e no nível de proteínas totais solúveis, em amostras de folhas e caule, sem inoculação do patógeno. Em ambos os ensaios o indutor foi pulverizado na dosagem de 100 µg i.a./ml, cinco dias após o transplante das plantas para vasos. O acibenzolar-S-methyl foi ineficiente, tanto para controlar a doença na cultivar suscetível (IAC Carioca), quanto para incrementar os níveis de resistência das cultivares resistentes (IAC Carioca Akytã e IAC Carioca Pyatã). A peroxidase apresentou maior atividade nas plantas pulverizadas com o indutor, tanto na folha, como no caule. A polifenoloxidase mostrou maior atividade apenas no caule das plantas pulverizadas. O nível de proteínas totais solúveis foi maior no caule das plantas pulverizadas do que nas não-pulverizadas, porém não diferiu na folha. As enzimas e proteínas avaliadas apresentaram maiores níveis na folha do que no caule das plantas de feijoeiro avaliadas.

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Detectar a presença da bactéria Leifsonia xyli subsp. xyli em material de propagação da cana-de-açúcar (Saccharum sp.) é importante para direcionar o controle do raquitismo-da-soqueira. Neste trabalho, objetivou-se produzir anticorpo policlonal específico contra Leifsonia xyli subsp. xyli (Lxx), visando utilizá-lo em método sorológico para detecção do patógeno. Para isso, o antígeno foi preparado a partir de células intactas, após lavagem por centrifugação de cultura-pura em tampão fosfato salino 0,01 M (PBS) e diálise em glutaraldeido 2% em PBS. O plano de imunização em coelho consistiu de duas injeções intramusculares da mistura 1:1 do antígeno com adjuvante Freund (completo e incompleto, a intervalos de 21 dias) e duas injeções subcutâneas do antígeno puro, a intervalos de dez dias. O anti-soro foi testado pelo método de Dot Blot com revelação por peroxidase para se determinar: (i) título do anticorpo e (ii) reação contra Lxx, Xanthomonas axonopodis pv. vesicatoria e bactérias endofíticas de cana-de-açúcar (Azospirillum brasilense, A. lipoferum, Herbaspirillum rubrisubalbicans, H. seropedicae e Gluconacetobacter diazotrophicus). A maior diluição analisada do anti-soro 1:20.000 mostrou reação fortemente positiva e específica contra Lxx e ausência de reação contra as demais bactérias. A purificação da fração IgG (Imunoglobulina G) não resultou em melhoria na reatividade e especificidade do anti-soro. Estimou-se o nível de detecção do método a partir de suspensão bacteriana em 2x10(6) células/ml.

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Com o objetivo de conhecer as alterações metabólicas promovidas pelo Soil-borne wheat mosaic virus (SBWMV), um dos vírus economicamente mais importantes da cultura do trigo (Triticum aestivum), foram analisados os níveis de proteínas solúveis e determinadas as atividades da peroxidase e da protease em quatro cultivares (BRS Guabiju, BRS 194, BRS 179, BR 23) e uma linhagem (PF 980524) de trigo com diferentes níveis de resistência ao vírus. Os dados obtidos foram submetidos à análise de variância, comparando-se as médias, pelo Teste de Duncan a 5%. Os níveis de proteínas solúveis foram mais elevados nas plantas sem sintomas, enquanto que as atividades da peroxidase e da protease foram maiores em plantas com sintoma de mosaico do que em plantas assintomáticas. Além disso, pode-se constatar que quanto maior a suscetibilidade do genótipo, maior o nível de atividade da protease. Estes resultados são promissores para estudos de inibição da protease para controle de viroses.

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Determination of the viability of bacteria by the conventional plating technique is a time-consuming process. Methods based on enzyme activity or membrane integrity are much faster and may be good alternatives. Assessment of the viability of suspensions of the plant pathogenic bacterium Clavibacter michiganensis subsp. michiganensis (Cmm) using the fluorescent probes Calcein acetoxy methyl ester (Calcein AM), carboxyfluorescein diacetate (cFDA), and propidium iodide (PI) in combination with flow cytometry was evaluated. Heat-treated and viable (non-treated) Cmm cells labeled with Calcein AM, cFDA, PI, or combinations of Calcein AM and cFDA with PI, could be distinguished based on their fluorescence intensity in flow cytometry analysis. Non-treated cells showed relatively high green fluorescence levels due to staining with either Calcein AM or cFDA, whereas damaged cells (heat-treated) showed high red fluorescence levels due to staining with PI. Flow cytometry also allowed a rapid quantification of viable Cmm cells labeled with Calcein AM or cFDA and heat-treated cells labeled with PI. Therefore, the application of flow cytometry in combination with fluorescent probes appears to be a promising technique for assessing viability of Cmm cells when cells are labeled with Calcein AM or the combination of Calcein AM with PI.