984 resultados para Ruminal incubation


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Human platelet lysate (PL) is a cost-effective and human source of autologous multiple and potent pro-angiogenic factors, such as vascular endothelial growth factor A (VEGF A), fibroblast growth factor b (FGF b) and angiopoietin-1. Nanocoatings previously characterized were prepared by layer-by-layer assembling incorporating PL with marine-origin polysaccharides and were shown to activate human umbilical vein endothelial cells (HUVECs). Within 20 h of incubation, the more sulfated coatings induced the HUVECS to the form tube-like structures accompanied by an increased expression of angiogenicassociated genes, such as angiopoietin-1 and VEGF A. This may be a cost-effective approach to modify 2D/3D constructs to instruct angiogenic cells towards the formation of neo-vascularization, driven by multiple and synergistic stimulations from the PL combined with sulfated polysaccharides. Statement of Significance The presence, or fast induction, of a stable and mature vasculature inside 3D constructs is crucial for new tissue formation and its viability. This has been one of the major tissue engineering challenges, limiting the dimensions of efficient tissue constructs. Many approaches based on cells, growth factors, 3D bioprinting and channel incorporation have been proposed. Herein, we explored a versatile technique, layer-by-layer assembling in combination with platelet lysate (PL), that is a cost-effective source of many potent pro-angiogenic proteins and growth factors. Results suggest that the combination of PL with sulfated polyelectrolytes might be used to introduce interfaces onto 2D/3D constructs with potential to induce the formation of cell-based tubular structures.

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OBJECTIVE: This study aims to evaluate the citotoxic activity of two commonly used anti-depressants: paroxetine and bupropion. We also evaluated the in vitro natural killer activity (NKA) after incubating the blood samples with the antidepressants. METHODS: Peripheral blood samples from 15 healthy volunteers were collected and the mononuclear cells (PBMCs) were isolated and incubated for 24h with (or without = control cells) paroxetine and bupropion, in concentrations of 30, 100 and 1000 ng/ml. After the incubation period in both groups, the amount of dead cells was calculated using trypam blue technique. NKA was evaluated using the classic51Cr release assay. CONCLUSIONS: PBMCs dead cells occurred in both groups and in proportion to all pharmacological concentrations. Nevertheless, the NKA was not affected, even with the reduction in the number of effective cells.

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Tese de Doutoramento em Biologia das Plantas - MAP BIOPLANT

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Fiber membranes prepared from jute fragments can be valuable, low cost, and renewable. They have broad application prospects in packing bags, geotextiles, filters, and composite reinforcements. Traditionally, chemical adhesives have been used to improve the properties of jute fiber membranes. A series of new laccase, laccase/mediator systems, and multi-enzyme synergisms were attempted. After the laccase treatment of jute fragments, the mechanical properties and surface hydrophobicity of the produced fiber membranes increased because of the cross-coupling of lignins with ether bonds mediated by laccase. The optimum conditions were a buffer pH of 4.5 and an incubation temperature of 60 °C with 0.92 U/mL laccase for 3 h. Laccase/guaiacol and laccase/alkali lignin treatments resulted in remarkable increases in the mechanical properties; in contrast, the laccase/2,2-azino-bis-(3-ethylthiazoline-6-sulfonate) (ABTS) and laccase/2,6-dimethoxyphenol treatments led to a decrease. The laccase/ guaiacol system was favorable to the surface hydrophobicity of jute fiber membranes. However, the laccase/alkali lignin system had the opposite effect. Xylanase/laccase and cellulase/laccase combined treatments were able to enhance both the mechanical properties and the surface hydrophobicity of jute fiber membranes. Among these, cellulase/laccase treatment performed better; compared to mechanical properties, the surface hydrophobicity of the jute fiber membranes showed only a slight increase after the enzymatic multi-step processes.

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Tese de Doutoramento em Biologia de Plantas MAP - Bioplant

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Fat, oils, and grease present in complex wastewater can be readily converted to methane, but the energy potential of these compounds is not always recyclable, due to incomplete degradation of long chain fatty acids (LCFA) released during lipids hydrolysis. Oleate (C18:1) is generally the dominant LCFA in lipid-containing wastewater, and its conversion in anaerobic bioreactors results in palmitate (C16:0) accumulation. The reason why oleate is continuously converted to palmitate without further degradation via β-oxidation is still unknown. In this work, the influence of methanogenic activity in the initial conversion steps of unsaturated LCFA was studied in 10 bioreactors continuously operated with saturated or unsaturated C16- and C18-LCFA, in the presence or absence of the methanogenic inhibitor bromoethanesulfonate (BrES). Saturated Cn-2-LCFA accumulated both in the presence and absence of BrES during the degradation of unsaturated Cn-LCFA, and represented more than 50\% of total LCFA. In the presence of BrES further conversion of saturated intermediates did not proceed, not even when prolonged batch incubation was applied. As the initial steps of unsaturated LCFA degradation proceed uncoupled from methanogenesis, accumulation of saturated LCFA can be expected. Analysis of the active microbial communities suggests a role for facultative anaerobic bacteria in the initial steps of unsaturated LCFA biodegradation. Understanding this role is now imperative to optimize methane production from LCFA.

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Dissertação de mestrado em Biofísica e Bionanossistemas

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Dissertação de mestrado em Genética Molecular

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Dissertação de mestrado em Genética Molecular

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Dissertação de mestrado em Bioengenharia

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Chlorine is the most commonly used agent for general disinfection, particularly for microbial growth control in drinking water distribution systems. The goals of this study were to understand the effects of chlorine, as sodium hypochlorite (NaOCl), on bacterial membrane physicochemical properties (surface charge, surface tension and hydrophobicity) and on motility of two emerging pathogens isolated from drinking water, Acinetobacter calcoaceticus and Stenotrophomonas maltophilia. The effects of NaOCl on the control of single and dual-species monolayer adhered bacteria (2 h incubation) and biofilms (24 h incubation) was also assessed. NaOCl caused significant changes on the surface hydrophobicity and motility of A. calcoaceticus, but not of S. maltophilia. Planktonic and sessile S. maltophilia were significantly more resistant to NaOCl than A. calcoaceticus. Monolayer adhered co-cultures of A. calcoaceticus-S. maltophilia were more resilient than the single species. Oppositely, dual species biofilms were more susceptible to NaOCl than their single species counterparts. In general, biofilm removal and killing demonstrated to be distinct phenomena: total bacterial viability reduction was achieved even if NaOCl at the higher concentrations had a reduced removal efficacy, allowing biofilm reseed. In conclusion, understanding the antimicrobial susceptibility of microorganisms to NaOCl can contribute to the design of effective biofilm control strategies targeting key microorganisms, such as S. maltophilia, and guarantying safe and high-quality drinking water. Moreover, the results reinforce that biofilms should be regarded as chronic contaminants of drinking water distribution systems and accurate methods are needed to quantify their presence as well as strategies complementary/alternative to NaOCl are required to effectively control the microbiological quality of drinking water.

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Supplementary data associated with this article can be found,in the online version, at http://dx.doi.org/10.1016/j.ijbiomac.2016.05.018.

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La ganadería argentina tiene como uno de sus principales componentes de la alimentación a las pasturas cultivadas, tanto anuales como perennes. La expansión agrícola determinó el desplazamiento de parte de la ganadería nacional hacia zonas con restricciones edáficas y/o climáticas, necesitadas de nuevas tecnologías en pasturas. La genética permite abordar estos desafíos a través del desarrollo de cultivares de especies forrajeras adaptados a diversos ambientes. Instituciones nacionales han desarrollado y difundido los cultivares mas exitosos de las principales especies templadas existentes en el mercado nacional. En el caso de las especies megatérmicas, no existen cultivares nacionales y las demandas de la región son abastecidas por introducciones foráneas a veces no seleccionadas en ambientes restrictivos. Esto pone en evidencia que el mejoramiento genético de especies megatérmicas es una clara vacancia de instituciones nacionales y privadas del país. En este contexto, el Proyecto del INTA AEFP 261821 PE Mejoramiento genético de especies forrajeras para ambientes diversos tiene como objetivo general incrementar la productividad, la calidad y/o la persistencia de las pasturas cultivadas a través del desarrollo de cultivares forrajeros adaptados a los distintos ambientes y sistemas de producción. En particular, a su vez, tiene como objetivo generar poblaciones o clones de Chloris gayana y Cenchrus ciliaris, mejorados por su tolerancia al estrés abiótico, mayor productividad y digestibilidad de la materia seca. Si bien la digestibilidad es de importancia central, no es el único factor de calidad que gobierna el producto animal. El valor nutritivo del forraje depende de sus constituyentes químicos, del consumo y la digestibilidad y la implementación de estrategias de selección para mejorar la calidad solo se logra si se comprende el rol de cada constituyente celular en la nutrición animal. Debido a la escasa disponibilidad de muestra, tipo de forrajeras (megatérmicas) y a la necesidad de realizar un screening comparativo se utilizará la técnica in situ (desaparición ruminal de la materia seca). En este proyecto el Laboratorio de Forrajes de la Facultad de Ciencias Agropecuarias de la UCC actuará como contraparte de la Institución Cooperante asumiendo la ejecución del objetivo de evaluar caracteres de calidad de las forrajeras estudiadas

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La ganadería argentina tiene como uno de sus principales componentes de la alimentación a las pasturas cultivadas, tanto anuales como perennes. La expansión agrícola determinó el desplazamiento de parte de la ganadería nacional hacia zonas con restricciones edáficas y/o climáticas, necesitadas de nuevas tecnologías en pasturas. La genética permite abordar estos desafíos a través del desarrollo de cultivares de especies forrajeras adaptados a diversos ambientes. Instituciones nacionales han desarrollado y difundido los cultivares mas exitosos de las principales especies templadas existentes en el mercado nacional. En el caso de las especies megatérmicas, existe un cultivar y las demandas de la región son abastecidas por introducciones foráneas a veces no seleccionadas en ambientes restrictivos. Esto pone en evidencia que el mejoramiento genético de especies megatérmicas es una clara vacancia de instituciones nacionales y privadas del país. En este contexto, el Proyecto del INTA AEFP 261821 PE Mejoramiento genético de especies forrajeras para ambientes diversos tiene como objetivo general incrementar la productividad, la calidad y/o la persistencia de las pasturas cultivadas a través del desarrollo de cultivares forrajeros adaptados a los distintos ambientes y sistemas de producción. En particular, a su vez, tiene como objetivo generar poblaciones o clones de Chloris gayana Kunt y Cenchrus ciliaris L., mejorados por su tolerancia al estrés abiótico, mayor productividad y digestibilidad de la materia seca. Debido a la escasa disponibilidad de muestra, tipo de forrajeras (megatérmicas) y a la necesidad de realizar un screening comparativo se utilizará la técnica in situ (desaparición ruminal de la materia seca). En este proyecto el Laboratorio de Forrajes de la Facultad de Ciencias Agropecuarias de la UCC actuará como contraparte de la Institución Cooperante asumiendo la ejecución del objetivo de evaluar caracteres de calidad de las forrajeras estudiadas.

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The aim of this study was to investigate the effects of biosurfactants and organic matter amendments on the bioremediation of diesel contaminated soil. Two strains of Pseudomonas aeruginosa with the ability to produce biosurfactant were isolated from a water and soil sample in Co. Sligo. The first strain, Isolate A, produced a biosurfactant which contained four rhamnose containing compounds, when grown in proteose peptone glucose ammonium salts medium with glucose as the carbon source. Two of the components were identified as rhamnolipid 1 and 2 whilst the other two components were unidentified. The second strain, Isolate GO, when grown in similar conditions produced a biosurfactant which contained only rhamnolipid 2. The type of aeration system used had a significant effect on the abiotic removal of diesel from soil. Forced aeration at a rate of 120L 02/kg soil/ hour resulted in the greatest removal. Over a 112 day incubation period this type o f aeration resulted in the removal o f 48% o f total hexane extractable material. In relation to bioremediation of the diesel contaminated sandy soil, amending the soil with two inorganic nutrients, KH2PO4 and NÜ4N03, significantly enhanced the removal of diesel, especially the «- alkanes, when compared to an unamended control. The biosurfactant from Isolate A and a biosurfactant produced by Pseudomonas aeruginosa NCIMB 8628 (a known biosurfactant producer), when applied at a concentration of three times their critical micelle concentration, had a neutral effect on the biodégradation o f diesel contaminated sandy soil, even in the presence o f inorganic nutrients. It was deduced that the main reason for this neutral effect was because they were both readily biodegraded by the indigenous microorganisms. The most significant removal of diesel occurred when the soils were amended with two organic materials plus the inorganic nutrients. Amendment of the diesel contaminated soil with spent brewery grain (SBG) removed significantly more diesel than amendment with dried molassed sugar beet pulp (DMSBP). After a 108 day incubation period, amendment of the diesel contaminated soil with DMSBP plus inorganic nutrients and SBG plus inorganic nutrients resulted in 72 and 89% removal of diesel range organics (DRO), in comparison to 41% removal of DRO in an inorganic nutrient amended control. The first order kinetic model described the degradation of the different diesel components with high correlation and was used to calculate Vi lives. The V2 life, of the total «-alkanes in the diesel was reduced from 40 days in the control to 8.5 and 5.1 days in the presence of DMSBP and SBG, respectively. The V2 life o f the unresolved complex mixture (UCM) in the diesel contaminated soil was also significantly reduced in the presence o f the two organics. DMSBP and SBG addition reduced UCM V2 life to 86 and 43 days, respectively, compared to 153 days in the control. The component of diesel whose removal was enhanced the greatest through the organic material amendments was the isoprenoid, pristane, a compound which until recently was thought to be nonbiodegradable and was used as an inert biomarker in oil degradation studies. The V2 life of pristane was reduced from 533 days in the nutrient amended control to 49.5 and 19.5 days in DMSBP and SBG amended soils. These results indicate that the addition o f the DMSBP and SBG to diesel contaminated soil stimulated diesel biodégradation, probably by enhancing the indigenous diesel degrading microbial population to degrade diesel hydrocarbons, whilst the addition o f biosurfactants had no enhanced effect on the bioremediation process.