993 resultados para Antifungal agents susceptibility


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In the Southern Pantanal, the hyacinth macaw (Anodorhynchus hyacinthinus), an endangered species, often chooses the manduvi tree (Sterculia apetala) as a nesting site, because of its physical properties. In addition, the chemical composition of the wood may also contribute to a nesting selection by the hyacinth macaws. The objective of this study was to determine the main chemical components of S. apetala bark for two seasons, and evaluate its fungicidal potential. Bark samples from S. apetala trees with and without nests of A. hyacinthinus were collected in January (wet season) and August (dry season) of 2012. The inhibition of mycelium growth (MGI) from tree samples with and without nests were assessed using a phytochemical analysis to evaluate their antifungal activity against Trichoderma sp. Phytochemical analysis confirmed the presence of phenolic compounds and flavonoids. In both seasons, samples obtained from nested trees had higher content of total phenols than those collected from non-nested trees. The average content of total flavonoids was higher in January for samples with nest and in August for samples without nest. All selected samples showed antifungal activity, and those with nest collected in August (peak of hyacinth macaw breeding) resulted in an MGI of 51.3%. Therefore, this percentage, related to the content of flavonoids and the presence of coumarins, may influence the reproductive success of hyacinth macaws and other species of birds, in this region. This is the first chemical study report with the stem bark of S. apetala.

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CdS nanoparticles (NPs) were synthesized using colloidal methods and incorporated within a diureasil hybrid matrix. The surface capping of the CdS NPs by 3-mercaptopropyltrimethoxysilane (MPTMS) and 3-aminopropyltrimethoxysilane (APTMS) organic ligands during the incorporation of the NPs within the hybrid matrix has been investigated. The matrix is based on poly(ethylene oxide)/poly(propylene oxide) chains grafted to a siliceous skeleton through urea bonds and was produced by sol–gel process. Both alkaline and acidic catalysis of the sol–gel reaction were used to evaluate the effect of each organic ligand on the optical properties of the CdS NPs. The hybrid materials were characterized by absorption, steady-state and time-resolved photoluminescence spectroscopy and High Resolution Transmission Electron Microscopy (HR-TEM). The preservation of the optical properties of the CdS NPs within the diureasil hybrids was dependent on the experimental conditions used. Both organic ligands (APTMS and MPTMS) demonstrated to be crucial in avoiding the increase of size distribution and clustering of the NPs within the hybrid matrix. The use of organic ligands was also shown to influence the level of interaction between the hybrid host and the CdS NPs. The CdS NPs showed large Stokes shifts and long average lifetimes, both in colloidal solution and in the xerogels, due to the origin of the PL emission in surface states. The CdS NPs capped with MPTMS have lower PL lifetimes compared to the other xerogel samples but still larger than the CdS NPs in the original colloidal solution. An increase in PL lifetimes of the NPs after their incorporation within the hybrid matrix is related to interaction between the NPs and the hybrid host matrix.

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The layer-by-layer (LbL) deposition method was used to build up alternating layers (five) of different polyelectrolyte solutions (alginate, zein-carvacrol nanocapsules, chitosan and chitosan-carvacrol emulsions) on an aminolysed/charged polyethylene terephthalate (A/C PET) film. These nanolaminated films were characterised by contact angle measurements and through the determination of water vapour (WVTR) and oxygen (O2TR) transmission rates. The effect of active nanolaminated films against the Alternaria sp. and Rhizopus stolonifer was also evaluated. This procedure allowed developing optically transparent nanolaminated films with tuneable water vapour and gas properties and antifungal activity. The water and oxygen transmission rate values for the multilayer films were lower than those previously reported for the neat alginate or chitosan films. The presence of carvacrol and zein nanocapsules significantly decreased the water transmission rate (up to 40 %) of the nanolaminated films. However, the O2TR behaved differently and was only improved (up to 45 %) when carvacrol was encapsulated, i.e. nanolaminated films prepared by alternating alginate with nanocapsules of zein-carvacrol layers showed better oxygen barrier properties than those prepared as an emulsion of chitosan and carvacrol. These films containing zein-carvacrol nanocapsules also showed the highest antifungal activity (30 %), which did not significantly differ from those obtained with the highest amount of carvacrol, probably due to the controlled release of the active agent (carvacrol) from the zein-carvacrol nanocapsules. Thus, this work shows that nanolaminated films prepared with alternating layers of alginate and zein-carvacrol nanocapsules can be considered to improve the shelf-life of foodstuffs.

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Recently it was demonstrated that for urinary tract infections species with a lower or unproven pathogenic potential, such as Delftia tsuruhatensis and Achromobacter xylosoxidans, might interact with conventional pathogenic agents such as Escherichia coli. Here, single- and dual-species biofilms of these microorganisms were characterized in terms of microbial composition over time, the average fitness of E. coli, the spatial organization and the biofilm antimicrobial profile. The results revealed a positive impact of these species on the fitness of E. coli and a greater tolerance to the antibiotic agents. In dual-species biofilms exposed to antibiotics, E. coli was able to dominate the microbial consortia in spite of being the most sensitive strain. This is the first study demonstrating the protective effect of less common species over E. coli under adverse conditions imposed by the use of antibiotic agents.

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Mycotoxins are toxic secondary metabolites produced by certain moulds, being ochratoxin A (OTA) one of the most relevant. Its chemical structure is a dihydro-isocoumarin connected at the 7-carboxy group to a molecule of L--phenylalanine via an amide bond. OTA contamination of wines might be a risk to consumer health, thus requiring treatments to achieve acceptable standards for human consumption [1]. According to the Regulation No. 1881/2006 of the European Commission, the maximum limit for OTA in wine is 2 µg/kg [2]. Therefore, the aim of this work was to know the effect of different fining agents on OTA removal, as well as their impact on white and red wine physicochemical characteristics. To evaluate their efficiency, 11 commercial fining agents (mineral, synthetic, animal and vegetable proteins) were used to get new approaches on OTA removal from white and red wines. Trials were performed in wines artificially supplemented (at a final concentration of 10 µg/L) with OTA. The most effective fining agent in removing OTA (80%) from white wine was a commercial formulation that contains gelatine, bentonite and activated carbon. Removals between 10-30% were obtained with potassium caseinate, yeast cell walls and pea protein. With bentonites, carboxymethylcellulose, polyvinylpolypyrrolidone and chitosan no considerable OTA removal was verified. In red wine, removals between 6-19% were obtained with egg albumin, yeast cell walls, pea protein, isinglass, gelatine, polyvinylpolypyrrolidone and chitosan. The most effective fining agents in removing OTA from red wine were an activated carbon (66%) followed again by the commercial formulation (55%), being activated carbon a well-known adsorbent of mycotoxins. These results may provide useful information for winemakers, namely for the selection of the most appropriate oenological product for OTA removal, reducing wine toxicity and simultaneously enhancing food safety and wine quality.

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The presence of mycotoxins in foodstuff is a matter of concern for food safety. Mycotoxins are toxic secondary metabolites produced by certain molds, being ochratoxin A (OTA) one of the most relevant. Wines can also be contaminated with these toxicants. Several authors have demonstrated the presence of mycotoxins in wine, especially ochratoxin A (OTA) [1]. Its chemical structure is a dihydro-isocoumarin connected at the 7-carboxy group to a molecule of L--phenylalanine via an amide bond. As these toxicants can never be completely removed from the food chain, many countries have defined levels in food in order to attend health concerns. OTA contamination of wines might be a risk to consumer health, thus requiring treatments to achieve acceptable standards for human consumption [2]. The maximum acceptable level of OTA in wines is 2.0 g/kg according to the Commission regulation No. 1881/2006 [3]. Therefore, the aim of this work was to reduce OTA to safer levels using different fining agents, as well as their impact on white wine physicochemical characteristics. To evaluate their efficiency, 11 commercial fining agents (mineral, synthetic, animal and vegetable proteins) were used to get new approaches on OTA removal from white wine. Trials (including a control without addition of a fining agent) were performed in white wine artificially supplemented with OTA (10 µg/L). OTA analysis were performed after wine fining. Wine was centrifuged at 4000 rpm for 10 min and 1 mL of the supernatant was collected and added of an equal volume of acetonitrile/methanol/acetic acid (78:20:2 v/v/v). Also, the solid fractions obtained after fining, were centrifuged (4000 rpm, 15 min), the resulting supernatant discarded, and the pellet extracted with 1 mL of the above solution and 1 mL of H2O. OTA analysis was performed by HPLC with fluorescence detection according to Abrunhosa and Venâncio [4]. The most effective fining agent in removing OTA (80%) from white wine was a commercial formulation that contains gelatine, bentonite and activated carbon. Removals between 10-30% were obtained with potassium caseinate, yeast cell walls and pea protein. With bentonites, carboxymethylcellulose, polyvinylpolypyrrolidone and chitosan no considerable OTA removal was verified. Following, the effectiveness of seven commercial activated carbons was also evaluated and compared with the commercial formulation that contains gelatine, bentonite and activated carbon. The different activated carbons were applied at the concentration recommended by the manufacturer in order to evaluate their efficiency in reducing OTA levels. Trial and OTA analysis were performed as explained previously. The results showed that in white wine all activated carbons except one reduced 100% of OTA. The commercial formulation that contains gelatine, bentonite and activated carbon (C8) reduced only 73% of OTA concentration. These results may provide useful information for winemakers, namely for the selection of the most appropriate oenological product for OTA removal, reducing wine toxicity and simultaneously enhancing food safety and wine quality.

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Cardiac dysfunction in heart failure is widely recognized as a progressive process, regardless of the clinical signs and symptoms. An increase in cardiac sympathetic drive is one of the earliest neurohormonal responses occurring in patients with heart failure and may be one of the major causes of the progressive remodeling leading to the decline in myocardial function, and responsible for the poor prognosis of patients with heart failure. Therefore, recent data provided by several appropriately designed clinical trials clearly indicate the benefits of beta-adrenoceptor blocking agents, combined with diuretics, ACE inhibitors, and digoxin in chronic heart failure class II to IV due to systolic ventricular dysfunction. The benefits are related to symptoms, functional capacity, remodeling, and improvement in left ventricular function, reduction in cardiovascular hospitalization, a decrease in the overall and sudden cardiac death rate, and are similar in patients with ischemic or nonischemic cardiomyopathy, independent of age, gender, or functional class. In this review we describe the cardiovascular effects of the increase in sympathetic drive, the pharmacological properties of the beta-blockers most evaluated in heart failure therapy (metoprolol, bisoprolol, and carvedilol), the major clinical trials related to these agents in heart failure, the recommendations for their appropriate use in clinical practice, the precautions to be adopted, and how to handle the more common adverse reactions.

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Dissertação de mestrado em Genética Molecular

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Dissertação de mestrado em Bioengenharia

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Dissertação de mestrado em Bioengenharia

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OBJECTIVE: To study the differences between fluvastatin and pravastatin regarding LDL susceptibility to oxidation, plasma levels of total cholesterol (TC), HDL-C, LDL-C and triglycerides (TG) in hypercholesterolemic patients with established coronary heart disease (CHD). METHODS: A double-blind randomized parallel study was conducted that included 41 hypercholesterolemic outpatients with CHD treated at the Instituto de Cardiologia do Rio Grande do Sul. The inclusion criteria were LDL-C above 100 mg/dL and triglycerides below 400 mg/dL based on 2 measures. After 4 weeks on a low cholesterol diet, those patients that fullfilled the inclusion criteria were randomized into 2 groups: the fluvastatin group (fluvastatin 40 mg/day) and the pravastatin group (pravastatin 20 mg/day), for 24 weeks of treatment. LDL susceptibility to oxidation was analyzed with copper-induced production of conjugated dienes (Cu2+) and water-soluble free radical initiator azo-bis (2'-2'amidinopropanil) HCl (AAPH). Spectroscopy nuclear magnetic resonance was used for determination of lipids. RESULTS: After 24 weeks of drug therapy, fluvastatin and pravastatin significantly reduced LDL susceptibility to oxidation as demonstrated by the reduced rate of oxidation (azo and Cu) and by prolonged azo-induced lag time (azo lag). The TC, LDL-C, and TG reduced significantly and HDL-C increased significantly. No differences between the drugs were observed. CONCLUSION: In hypercholesterolemic patients with CHD, both fluvastatin and pravastatin reduced LDL susceptibility to oxidation.

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Trypanosoma cruzi, agente causal del Chagas, atraviesa la barrera placentaria y produce la enfermedad congénita. Objetivo general: Analizar si el T. cruzi, agente causal del Chagas, produce alteraciones trofoblásticas de las vellosidades coriónicas mediadas por óxido nítrico (principal agente deletéreo contra T. cruzi) y estrés oxidativo con variaciones que pudieran depender de la disponibiidad de L-arginine, sobre placentas en modelos in vitro de co-cultivos de explantos de vellosidades coriónicas, de sinciciotrofoblasto aislado y de células derivadas del trofoblasto de placentas humanas en interacción con distintas cepas del Trypanosoma cruzi, que pudieran dar alguna luz en la explicación de mecanismos involucrados en la infección placentaria y en algunos síndromes clínicos de la transmisión congénita del Chagas. Objetivos Específicos: a) Describir alteraciones estructurales y presencia de T. cruzi en vellosidades coriónicas de placentas humanas procedentes de co-cultivos con Trypanosoma cruzi in vitro (y sus respectivos controles), mediante técnicas histológicas y PCR analizando secuencias de ADN específicas del parásito.b) Establecer la localización y expresión proteica y la expresión transcripcional de las isoformas II y III de la Öxido Nítrico Sintasa sobre la misma población muestral de (a) mediante técnicas inmunohistoquímica, RT-PCR y semicuantificación con software adecuado. c) Analizar la susceptibilidad a la infección por el T. cruzi del citotrofoblasto (CTB) y sinciciotrofoblasto (STB) placentario aislado in vitro. d) Determinar concentraciones de óxido nítrico y estrés oxidativo del sinciciotrofoblasto (STB) aislado ante la infección por T. cruzi. e) Relacionar concentraciones de L-arginina con infección del trofoblasto aislado. f) Relacionar inhibiciones de la eNOS y de la arginasa con infección trofoblástica y óxido nítrico producido.Se emplearán métodos y técnicas de Biología celular y molecular, mediciones hormonales, enzimáticas, proteicas, parasitarias y bioquímicas en medios sobrenadantes de cultivo, de inmuno-detección de epitopes proteicos en tejidos, expresión de ARN por RT-PCR, Western blot, detección de DNA en tejidos por PCR, Cuantificaciones morfométricas. En general, el presente proyecto podría redundar en beneficios para un sector de la población de las áreas endémicas para esta enfermedad de bajos recursos económicos, sociales y culturales, mediante la obtención de datos que pudieran explicar algunos mecanismos de síndromes clínicos descriptos en esta patología y que pudieran participar en la transmisión congénita de la enfermedad de Chagas.

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La criptococosis es causada por la inhalación de levaduras encapsuladas de Cryptococcus neoformans o Cryptococcus gattii. Representa una de las tres infecciones graves por oportunistas en pacientes con SIDA y existe aproximadamente un 6 por ciento de incidencia de criptococosis clínica en pacientes con transplante de órganos sólidos. Estas dos especies difieren la fisiopatogenia durante la infección. El factor de virulencia principal de Cryptococcus sp. es la presencia del polisacárido capsular, glucuronoxilomanano (GXM), de alto peso molecular, que es continuamente secretado por las levaduras. Los macrófagos son células centrales en la respuesta innata al hongo, los cuales deben ser activados por linfocitos T helper 1 para un eficiente control de la infección. Sin embargo, estas células también son suceptibles al parasitismo intracelular, permitiendo la infección persistente y la diseminación a sitios extrapulmonares. Este proyecto propone investigar la capacidad de levaduras de C. neoformans, C. gattii y de los polisacáridos capsulares para modular la respuesta proinflamatoria de los macrófagos. Queremos estudiar si el tratamiento de macrófagos con levaduras o polisacárido puede inducir perfiles supresores de la respuesta protectiva T helper 1, tales como linfocitos T helper 2 o T reguladores, favoreciendo la sobrevida intracelular del hongo. Además, pensamos que C. neoformans o C. gattii podrían inducir un activación diferencial de macrófagos lo que condicionaría la respuesta adaptativa, lo que podría explicar las diferencias en la fisiopatogenia de estas dos especies. Procedimientos experimentales -Microorganismos y obtención de GXM: se trabajará con C. neoformans variedad grubii, cepa ATCC 62067 y C. gattii serotipo B, cepa NIH112B. Se obtendrán polisacáridos capsulares (GXM) de C. neoformans y C. gattii por precipitación con etanol y y acomplejamiento selectivo con CTAB. - Obtención de macrófagos murinos y cultivos celulares: se obtendrán macrófagos por lavados peritoneales y/o alveolares de ratones BALB/c. Los macrófagos se cultivarán por 24 h en ausencia o presencia de levaduras muertas o vivas (sin opsonizar u opsonizadas) de C. neoformans o C. gattii o en presencia de GXM purificado. -Objetivo 1. Estudio de la modulación de las propiedades proinflamatorias de Mac: en sobrenadantes de los cultivos se medirán las citoquinas por ELISA de captura y en lisados celulares, la expresión de las enzimas (iNOS, arginasa, IDO) por western blot. Se analizará por citometría de flujo la expresión de MCHII y moléculas CD80, CD86, CD40, CTLA-4. -Objetivo 2. Estudios in vitro de la capacidad de macrófagos tratados con levaduras o GXM para inducir linfocitos Th1, Th2 o Treg: los macrófagos preincubados con GXM o levaduras, se incubarán con linfocitos autólogos estimulados con anti-CD3. Se medirá la proliferación celular y el perfil de citoquinas por citomtría de flujo. Células T CD4+ CD25- serán purificadas de suspenciones esplénicas de ratones normales. Luego las células serán incubadas con macrófagos (sin tratar o tratados con levaduras o GXM) y estimulados con anti-CD3. Se analizará la proliferación celular con CFSE y expresión de CD4, CD25 y Foxp3 . - Objetivo 3. Estudios in vivo de la capacidad de levaduras o GXM para inducir linfocitos Th1, Th2 o Treg . Rol de los macrófagos in vivo: Los ratones serán inyectados con 100000 levaduras o con 200 µg de GXM puro vía endovenosa y luego de 7, 14, 30 y 40 días se evaluarán las poblaciones celulares de bazo, por citometría de flujo usando marcaciones simultáneas para CD4, CD8, CD25, Foxp3 y citoquinas intracelulares. Para investigar la participación in vivo de los macrófagos, se depletaran estas células inyectando los animales con PBS-liposomas o clodronato (DMDP)-liposomas por vía endovenosa o inhalatoria (200- 300 µl por ratón). Luego de 24 h, los animales se infectarán con levaduras o inocularán con GXM y se evaluarán los perfiles de células T esplénicos o de nódulos linfaticos.

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Muchos esfuerzos se están realizando en el diseño de nuevos métodos para la eliminación de las células tumorales y así inhibir el crecimiento neoplásico. Entre los métodos no convencionales se encuentran la Terapia Fotodinámica.La Terapia Fotodinámica (TFD) es un tratamiento experimental de algunos tipos de cáncer, basado en el efecto citotóxico inducido en el tejido tumoral, por la acción combinada de una droga (fotosensibilizador) y la luz visible. El fotosensibilizador posee la propiedad de absorber la luz y reaccionar con el oxígeno molecular, produciendo una forma activa del oxígeno: el oxígeno singlete (1O2) que oxida diversas moléculas biológicas, induciendo un efecto citotóxico que se traduce en la regresión tumoral. Los nuevos avances en la dosimetría de la luz, así como la búsqueda de una segunda generación de nuevos fotosensibilizadores más eficaces que los actualmente utilizados, han permitido incluir protocolos de Terapia Fotodinámica en numerosos centros hospitalarios principalmente para el tratamiento de cánceres de pulmón, vejiga, esófago y piel. Plantas fototóxicas, sus metabolitos fotosensibilizantes y sus posibles usos; En general, dentro de las especies vegetales tóxicas existen aquellas denominadas plantas alergénicas, que son las que pueden producir sus efectos indeseables por vía dérmica. También existen aquellas que pueden producir efectos tóxicos por vía sistémica. Sin embargo, coexiste en la naturaleza otro grupo de plantas tóxicas que desencadenan sus efectos nocivos bajo la acción de la luz, por lo que son llamadas plantas fototóxicas, cuyos principios activos son comúnmente denominados agentes fotosensibilizantes La apoptosis como blanco terapéutico contra el cáncer: Los conocimientos moleculares sobre la apoptosis adquiridos en los últimos años están siendo aplicados al desarrollo de nuevos fármacos que puedan modular selectivamente las señales involucradas en la muerte de las células. Una de las razones que justifica el interés en el estudio de este tipo de moléculas, es que una de las características más tempranas en la transformación de la células neoplásicas esta relacionada con la incapacidad de responder a los estímulos de muerte. Esto lleva a una desregulación del proceso de apoptosis desencadenando una proliferación descontrolada. Los otros eventos que desencadenan el cáncer son, la invasión vascular y la metástasis a distanciaLa adquisición de resistencia a los efectos citotóxicos de los tratamientos anticancerígenos ha emergido como un significante impedimento para el efectivo tratamiento de la enfermedad. Por ello, en el presente proyecto se investigará si la adquisición de resistencia a TFD inducida en la línea celular estudiada es conferida por el aumento de la proteína MDRP1 a través de la vía de señalización PI3K/Akt. Además, se estudiará la correlación entre la posible resistencia a drogas y la inducción de apoptosis, analizando los mecanismos involucrados. Los resultados obtenidos contribuirán a dilucidar y entender los mecanismos moleculares implicados en la resistencia y sensibilidad tumoral a la TFD, y de esta manera mejorar la eficacia de dicha terapia antitumoral para sensibilizar a las células a la apoptosis. OBJETIVOS Estudiar el efecto de agentes fotosensibilizadores de origen sintético (ftalocianinas), comercialmente ya aprobadas por la FDA (Me-ALA), de origen natural (antraquinonas), y obtenidas en procesos nanotecnologicos (nanofibras) respecto a su capacidad de inducir la muerte celular en sistemas experimentales in vivo, para el desarrollo de nuevas drogas de aplicación en Terapia Fotodinámica (PDT). Estudiar las señales de apoptosis que se desencadenan, combinando la PDT con iRNA (antisurvivina) con la finalidad de aumentar la eficiencia de la muerte tumoral. Estudiar los mecanismos de resistencia a la Terapia Fotodinámica en carcinoma de células escamosas con fotosensibilizadores permitidos (Me-ALA).