421 resultados para PAH
Resumo:
Here we present the catalytic hydrogenation of polycyclic aromatic hydrocarbons (PAHs) to less toxic mixtures of saturated and partial unsaturated polycyclic hydrocarbons under mild reaction conditions using a magnetically recoverable rhodium catalyst and molecular hydrogen as the exclusive H source. The catalyst is easily recovered after each reaction by placing a permanent magnet on the reactor wall and it can be reused in successive runs without any significant loss of catalytic activity. As an example, anthracene was totally converted into the saturated polycyclic hydrocarbon form (ca. 60%) and the partially hydrogenated form, 1,2,3,4,5,6,7,8-octahydroanthracene (ca. 40%). The catalyst operates in a broad range of temperature and H(2) pressure in both organic and aqueous/organic solutions of anthracene and it also exhibits significant activity at low substrate concentrations (20 ppm). This can be an efficient recycling process for hydrogenation of PAHs present in contaminated fluid waste streams. (C) 2009 Elsevier B.V. All rights reserved.
Resumo:
A novel strategy for enhanced field-effect biosensing using capacitive electrolyte-insulator-semiconductor (EIS) structures functionalised with pH-responsive weak polyelectrolyte/enzyme or dendrimer/enzyme multilayers is presented. The feasibility of the proposed approach is exemplarily demonstrated by realising a penicillin biosensor based on a capacitive p-Si-SiO(2) EIS structure functionalised with a poly(allylamine hydrochloride) (PAH)/penicillinase and a poly(amidoamine) dendrimer/penicillinase multilayer. The developed sensors response to changes in both the local pH value near the gate surface and the charge of macromolecules induced via enzymatic reaction, resulting in a higher sensitivity. For comparison, an EIS penicillin biosensor with adsorptively immobilised penicillinase has been also studied. The highest penicillin sensitivity of 100 mV/dec has been observed for the EIS sensor functionalised with the PAH/penicillinase multilayer. The lower and upper detection limit was around 20 mu M and 10 mM, respectively. In addition, an incorporation of enzymes in a multilayer prepared by layer-by-layer technique provides a larger amount of immobilised enzymes per sensor area, reduces enzyme leaching effects and thus, enhances the biosensor lifetime (the loss of penicillin sensitivity after 2 months was 10-12%). (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Resumo:
Recent studies involving chitosan interacting with phospholipid monolayers that mimic cell membranes have brought molecular-level evidence for some of the physiological actions of chitosan, as in removing a protein from the membrane. This interaction has been proven to be primarily of electrostatic origin because of the positive charge OF chitosan in low pH solutions, but indirect evidence has also appeared of the presence of hydrophobic interactions. In this study, we provide definitive proof that model membranes are not affected merely by the charges in the amine groups of chitosan. Such a proof was obtained by comparing surface pressure and surface potential isotherms of dipalmitoyl phosphatidyl choline (DPPC) and dipalmitoyl phosphatidyl glycerol (DPPG) monolayers incorporating either chitosan or poly(allylamine hydrochloride) (PAH). As the latter is also positively charged and With the same charged Functional group as chitosan, similar effects should be observed in case the electrical charge was the only relevant parameter. Instead, we observed a large expansion in the surface pressure isotherms upon interaction with chitosan, whereas PAH had much smaller effects. Of particular relevance for biological implications, chitosan considerably reduced the monolayer elasticity, whereas PAH had almost no effect. it is clear therefore that chitosan action depends strongly either on its functional uncharged groups and/or on its specific conformation in solution.
Resumo:
Sum-Frequency Vibrational Spectroscopy (SFVS) has been used to investigate the effect of nitrogen-flow drying on the molecular ordering of Layer-by-Layer (LbL) films of poly(allylamine hydrochloride) (PAH) alternated with poly(styrene sulfonate) (PSS). We find that films dried by spontaneous water evaporation are more ordered and homogeneous than films dried by nitrogen flow. The latter are quite inhomogeneous and may have regions with highly disordered polymer conformation. We propose that drying by spontaneous water evaporation reduces the effect of drag by the drying front, while during nitrogen-flow drying the fast evaporation of water ""freezes"" the disordered conformation of adsorbed polyelectrolyte molecules. These findings are important for many applications of LbL films, since device performance usually depends on film morphology and its molecular structure.
Resumo:
Phytase (myo-inositol hexaphosphate phosphohydrolase) and phytic acid (myo-inositol hexaphosphate) play an important environmental role, in addition to being a health issue in food industry. Phytic acid is antinutritional due to its ability to chelate metal ions and may also react with proteins decreasing their bioavailability. In this work, we produced biosensors with phytase immobilized in Layer-by-Layer (LbL) films, which could detect phytic acid with a detection limit of 0.19 mmol L-1, which is sufficient to detect phytic acid in seeds of grains and vegetables. The biosensosrs consisted of LbL films containing up to eight bilayers of phytase alternated with poly(allylamine) hydrochloride (PAH) deposited onto an indium-tin oxide (ITO) substrate modified with Prussian Blue. Amperometric detection was conducted in an acetate buffer solution (at pH 5.5) at room temperature, with the biosensor response attributed to the formation of phosphate ions. In subsidiary experiments with the currents measured at 0.0 V (vs. SCE), we demonstrated the absence of effects from some interferents, pointing to a good selectivity of the biosensor. (c) 2007 Elsevier B.V. All rights reserved.
Resumo:
Layer-by-layer (LBL) films of nickel tetrasulfonated phthalocyanine (NiTsPc) alternated with poly(allylamine hydrochloride) (PAH) have been prepared, whose surface charge has been evaluated using surface potential measurements. From adsorption kinetics results, we obtained the immersion time of similar to 40 s, which was used to assemble layers of NiTsPc. The effect of gold (Au) and aluminum (Al) electrodes on the charge behavior was examined. We found that the surface potential (i.e. surface charge) was inverted each time a layer of PAH was alternated with another of NiTsPc molecules for the two types of electrodes, which was attributed to charge overcompensation between positive charges of PAH molecules, and negative charges from NiTsPc molecules. (C) 2009 Elsevier B.V. All rights reserved.
Resumo:
This study describes the development of amperometric sensors based on poly(allylamine hydrochloride) (PAH) and lutetium bisphthalocyanine (LuPc(2)) films assembled using the Layer-by-Layer (LbL) technique. The films have been used as modified electrodes for catechol quantification. Electrochemical measurements have been employed to investigate the catalytic properties of the LuPc(2) immobilized in the LbL films. By chronoamperometry, the sensors present excellent sensitivity (20 nA mu M(-1)) in a wide linear range (R(2) = 0.994) up to 900 mu M and limit of detection (s/n = 3) of 37.5 x 10(-8) M for catechol. The sensors have good reproducibility and can be used at least for ten times. The work potential is +0.3 V vs. saturated calomel electrode (SCE). In voltammetry measurements, the calibration curve shows a good linearity (R(2) = 0.992) in the range of catechol up to 500 mu M with a sensitivity of 90 nA mu M(-1) and LD of 8 mu M. (C) 2011 Elsevier B.V. All rights reserved.
Resumo:
Layer-by-layer (LbL) films from K(2)Nb(6)O(17)(2-) and polyallylamine (PAH) and dip-coating films of H(2)K(2)Nb(6)O(17) were prepared on a fluorine-doped tin-oxide (FTO)-coated glass. The atomic force microscopy (AFM) images were carried out for morphological characterization of both materials. The real surface area and the roughness factor were determined on the basis of pseudocapacitive processes involved in the electroreduction/electrooxidation of gold layers deposited on these films. Next, lithium ion insertion into these materials was examined by means of electrochemical and spectroelectrochemical measurements. More specifically, cyclic voltammetry and current pulses under visible light beams were used to investigate mass transport and chromogenic properties. The lithium ion diffusion coefficient (D(Li)) within the LbL matrix is significantly higher than that within the dip-coating film, ensuring high storage capacity of lithium ions in the self-assembled electrode. Contrary to the LbL film, the potentiodynamic profile of absorbance change (Delta A) as a function of time is not similar to that obtained in the case of current density for the dip-coating film. Aiming at analyzing the rate of the coloration front associated with lithium ion diffusion, a spectroelectrochemical method based on the galvanostatic intermittent titration technique (GITT) was employed so as to determine the ""optical"" diffusion coefficient (D(op)). In the dip-coating film, the method employed here revealed that the lithium ion rate is higher in diffusion pathways formed from K(2)Nb(6)O(17)(2-) sites that contribute more significantly to Delta A. Meanwhile, the presence of PAH contributed to the increased ionic mobility in diffusion pathways in the LbL film, with low contribution to the electrochromic efficiency. These results aided a better understanding of the potentiodynamic profile of the temporal change of absorbance and current density during the insertion/deinsertion of lithium ions into the electrochromic materials.
Resumo:
A dynamic atmosphere generator with a naphthalene emission source has been constructed and used for the development and evaluation of a bioluminescence sensor based on the bacteria Pseudomonas fluorescens HK44 immobilized in 2% agar gel (101 cell mL(-1)) placed in sampling tubes. A steady naphthalene emission rate (around 7.3 nmol min(-1) at 27 degrees C and 7.4 mLmin(-1) of purified air) was obtained by covering the diffusion unit containing solid naphthalene with a PTFE filter membrane. The time elapsed from gelation of the agar matrix to analyte exposure (""maturation time"") was found relevant for the bioluminescence assays, being most favorable between 1.5 and 3 h. The maximum light emission, observed after 80 min, is dependent on the analyte concentration and the exposure time (evaluated between 5 and 20 min), but not on the flow rate of naphthalene in the sampling tube, over the range of 1.8-7.4 nmol min(-1). A good linear response was obtained between 50 and 260 nmol L-1 with a limit of detection estimated in 20 nmol L-1 far below the recommended threshold limit value for naphthalene in air. (c) 2008 Elsevier B.V. All rights reserved.
Resumo:
During sugar cane harvesting season, which occurs from May to November of each year, the crops are burnt, cut, and transported to the mills. There are reports showing that mutagenic activity and PAH content increase during harvesting season in some areas of Sao Paulo State in comparison with nonharvesting periods. The objective of this work was to preliminarily characterize the mutagenic activity of the total organic extracts as well as corresponding organic fractions of airborne particulate matter (PM) collected twice from two cities, Araraquara (ARQ) and Piracicaba (PRB), during sugar cane harvesting season using the Salmonella/microsome microssuspension assay. One sample collected in Sao Paulo metropolitan area was also included. The mutagenicity of the total extracts ranged from 55 to 320 revertants per cubic meter without the addition of S9 and from not detected to 57 revertants per cubic meter in the presence of S9 in areas with sugar cane plantations. Of the three fractions analyzed, the most polar ones (nitro and oxy) were the most potent. A comparison of the response of TA98 with YG1041 and the increased potencies without S9 indicated that nitro compounds are causing the observed effect. More studies are necessary to verify the sources of the mutagenic activity such as burning of vegetal biomass and combustion of heavy duty vehicles used to transport the sugar cane to the mills. The Salmonella/microsome assay can be an important tool to monitor the atmosphere for mutagenicity during sugar cane harvesting season.
Resumo:
The burning of organic residues and wastes in furnaces of cement industries has been an attractive and lucrative approach to eliminate stocks of these pollutants. There is a potential risk for producing PAH in the workplace of industries burning organic wastes, so that highly sensitive analytical methods are needed for monitoring the air quality of these environments. An official method for determination of PAH is based on liquid chromatography with fluorescence detection at fixed excitation and emission wavelengths. We demonstrate that a suitable choice of these wavelengths, which are changed during the chromatographic run, significantly improves the detectability of PAH in atmosphere and particulate matter collected in cement industries.
Resumo:
A fenilcetonúria (PKU) é um erro inato do metabolismo de aminoácidos causada pela deficiência da enzima fenilalanina hidroxilase hepática (PAH) que converte fenilalanina (Phe) em tirosina. Caracteriza-se clinicamente por retardo mental severo e, em alguns pacientes, por convulsões e eczema cutâneo. Bioquimicamente os pacientes afetados por esta doença apresentam acúmulo de Phe e seus metabólitos no sangue e nos tecidos. Phe é considerada o principal agente neurotóxico nesta doença, cujos mecanismos de neurotoxicidade são pouco conhecidos. O metabolismo energético cerebral é caracterizado por níveis altos e variáveis de síntese e de utilização de ATP. O cérebro contém altos níveis de creatinaquinase (CK), uma enzima que transferere reversivelmente um grupo fosforil entre ATP e creatina e entre ADP e fosfocreatina (PCr). Considerando que a CK parece estar envolvida em certas condições patológicas relacionadas com deficiência de energia cerebral e sabendo que a PKU está associada à redução de produção e de utilização de energia pelo cérebro, no presente trabalho verificamos a atividade da CK em homogeneizado total de córtex cerebral, cerebelo e cérebro médio de ratos Wistar submetidos aos modelos experimentais agudo e crônico de hiperfenilalaninemia (HPA) quimicamente induzida. Também investigamos o efeito in vitro da Phe e da α-metil-DL-fenilalanina (MePhe), um inibidor da PAH, nas mesmas estruturas de ratos Wistar de 22 dias de idade não tratados. Nossos resultados mostraram uma redução significativa na atividade da CK nas estruturas cerebrais estudadas de ratos sujeitos a HPA. Também verificamos que Phe e MePhe inibiram in vitro a atividade da CK nas mesmas estruturas. O estudo da interação cinética entre Phe e MePhe, sugere a existência de um único sítio de ligação na CK para os dois compostos. Considerando a importância da CK para a manutenção do metabolismo energético cerebral, nossos resultados sugerem que a alteração da homeostasia energética pode contribuir para a neurotoxicidade da Phe na PKU.
Resumo:
A fenilcetonúria clássica (PKU), que afeta 1: 10.000 nascimentos em populações caucasianas, é um erro inato do metabolismo determinado pela deficiência da enzima hepática fenilalaninahidroxilase (PAH), com o conseqüente bloqueio na conversão de fenilalanina (Phe) em Tirosina (Tyr) e aumento da concentração plasmática de Phe. A PKU foi descrita há 70 anos pelo médico norueguês Asbjörn Folling. Desde então muitas foram as descobertas a seu respeito, como a caracterização e mapeamento do seu gene, a identificação de mutações, a determinação da estrutura da enzima, características clínicas e bioquímicas dos afetados, correlações genótipo-fenótipo, a identificação do risco teratogênico quando da condição materna, o estabelecimento da triagem neonatal e ainda o seu tratamento. Se não diagnosticada e tratada precocemente, a PKU causa retardo mental, microcefalia, espasmos infantis, odor de rato na urina e hipopigmentação de pele, cabelos e olhos, além de outros sinais e sintomas. Com o objetivo de identificar a população submetida à triagem neonatal no Rio Grande do Sul (Brasil), a incidência de Fenilcetonúria e de outras hiperfenilalaninemias e correlacionar época do diagnóstico, início do tratamento e desfecho clínico, elaborou-se este estudo delineado como uma coorte ambispectiva que avaliou 54 pacientes fenilcetonúricos entre 6 meses a 16 anos de idade. Foram realizadas entrevistas telefônicas com os responsáveis indagando-se alguns dados demográficos e outros relativos à patologia. Crianças de 6 meses a 7 anos foram avaliadas com relação aos marcos do DNPM. Acima dessa idade, foram investigados sobre escolaridade e presença de sintomas neurológicos. Após análise estatística e estratificação da amostra por ano de nascimento, não se observou uma tendência histórica do diagnóstico ter se tornado mais precoce ou de o controle laboratorial ter se tornado melhor com o passar dos anos. Foi encontrada associação entre o controle de Phe e a cognição, mas não a entre a idade do diagnóstico e a evolução clínica.
Resumo:
As características clínicas da hepatite C em transplantados renais ainda não estão bem definidos. A punção biópsia hepática (PBH) é o padrão-ouro para o diagnóstico do grau de lesão nesses pacientes, O presente estudo objetivou avaliar o papel da citologia hepática obtida por meio de punção aspirativa com agulha fina (PAH) no diagnóstico das lesões hepáticas em transplantados renais com hepatite crônica pelo vírus C. Avaliou-se, também, a freqüência e a gravidade das lesões hepáticas nesses pacientes e características clínico-laboratoriais correlacionadas com a gravidade da doença. Vinte e oito pacientes foram submetidos à PBH e à PAH e os resultados comparados. A PAH utilizou a técnica de Hayry e von Willebrand calculando-se o Incremento Corrigido Total e o número de células imunoativadas (CIA). Dezoito pacientes (66,6%) apresentaram, na PBH, ausência de lesões, lesões mínimas ou lesões não caracterizadas como hepatite crônica; 6 pacientes (22,2%) apresentaram hepatite crônica persistente ou lobular e 3 pacientes (11,1%) tiveram hepatite crônica ativa. Não se verificou associação estatisticamente significativa entre os resultados da PAH e os da histologia (erro β = 0,82). A idade dos pacientes mostrou associação significativa com o diagnóstico histológico, sendo a idade média dos pacientes com lesões mínimas igual a 37,50 (±10,1) anos, com hepatite crônica persistente igual a 51,33 (±6,2) anos e com hepatite crônica ativa igual a 58,33 (±12,7) anos (p=0,0015 - ANOVA). O uso de OKT3 associou-se à presença de lesões de hepatite crônica (p=0,0420). A presença de rejeições agudas, um maior número de rejeições e ter recebido pulsos de metilprednisolona associou-se a lesões histológicas de menor gravidade. As demais variáveis não apresentaram relação significativa com o diagnóstico da PBH. Na análise multivariada, apenas a idade manteve-se como fator independentemente associado à presença de lesões de hepatite crônica. Conclui-se que a citologia hepática obtida mediante punção aspirativa com agulha fina não demonstrou utilidade para diagnosticar ou estabelecer o nível de gravidade ou de evolução da doença hepática em transplantados renais com hepatite crônica pelo vírus C, embora essa possibilidade não possa ser totalmente excluída. A imunossupressão e as rejeições mostraram resultados contraditórios, não estando ainda clara a sua relação com o dano hepático provocado pelo vírus C. A idade foi o único fator consistentemente associado à maior gravidade das lesões histológicas nesses pacientes.
Resumo:
The main objective of this Thesis was to encapsulate single viable cells within polyelectrolyte films using the Layer-by-Layer (LbL) technique. Most of the experiments used human mesenchymal stem cells (MSCs) whose characteristics (capacity of selfrenewal and potential to differentiate into several types of cells) make them particularly interesting to be used in biomedical applications. Also, most of the experiments used alginate (ALG) as the anionic polyelectrolyte and chitosan (CHI) or poly(allylamine hydrochloride) (PAH) as the cationic polyelectrolyte. Hyaluronic acid (HA) was also tested as an anionic polyelectrolyte. At the beginning of the work, the experimental conditions necessary to obtain the encapsulation of individual cells were studied and established. Through fluorescence microscopy visualization by staining the cell nucleus and using polyelectrolytes conjugated to fluorescent dyes, it was possible to prove the obtainment of capsules containing one single cell inside. Capsules aggregation was an observed problem which, despite the efforts to design an experimental process to avoid this situation (namely, by playing with cell concentration and different means of re-suspending and stirring the cells), was not completely overcome. In a second part of the project, single cells were encapsulated within polyelectrolyte layers made of CHI/ALG, PAH/ALG and PAH/HA and their viability was evaluated through the resazurin reduction assay and the Live/Dead assay. In these experiments, during the LbL process, polyelectrolyte solutions were used at a concentration of 1mg/mL based on literature. In general, the viability of the encapsulated cells was shown to be very low/absent. Then, as a consequence of the lack of viability of cells encapsulated within polyelectrolyte layers, the LbL technique was applied in cells growing adherent to the surface of cell culture plates. The cells were cultured like in a sandwich, between the surface of the cell culture dish and the polyelectrolyte layers. Also here, the polyelectrolyte solutions were used at a concentration of 1mg/mL during the LbL process. Surprisingly, cell viability was also absent in these systems. A systematic study (dose-effect study) was performed to evaluate the effect of the concentration of the individual polyelectrolytes (ALG, CHI and PAH were studied) in cell viability. Experiments were performed using cells growing adherent to the surface of cell culture plates. The results pointed out that a very high (cytotoxic) concentration of polyelectrolytes had been in use. Also, in general, PAH was much more cytotoxic than CHI, whereas ALG was the less cytotoxic polyelectrolyte. Finally, using alginate and chitosan solutions with adequate concentrations (low concentrations: 50ng/mL and 1μg/mL), the encapsulation of single viable cells was again attempted. Once again, the encapsulated cells were not shown to be viable. In conclusion, the viability of the encapsulated cells is not only dependent on the cytotoxic characteristics (or combined cytotoxic characteristics) of the polyelectrolytes but it seems that, when detached from the culture plates, the cells become too fragile and lose their viability very easily.