967 resultados para Android app
Resumo:
In this study, the influence of the processing conditions and the addition of trans-polyoctenylene rubber (TOR) on Mooney viscosity, tensile properties, hardness, tearing resistance, and resilience of natural rubber/styrene-butadiene rubber blends was investigated. The results obtained are explained in light of dynamic mechanical and morphological analyses. Increasing processing time produced a finer blend morphology, which resulted in an improvement in the mechanical properties. The addition of TOR involved an increase in hardness, a decrease in tear resistance, and no effect on the resilience. It resulted in a large decrease in the Mooney viscosity and a slight decrease in the tensile properties if the components of the compounds were not properly mixed. The results indicate that TOR acted more as a plasticizer than a compatibilizer. (c) 2008 Wiley Periodicals, Inc.
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Sorption-desorption interactions of pesticides with soil determine their availability for transport, plant uptake, and microbial degradation. These interactions are affected by the physical-chemical properties of the pesticide and soil, and for some pesticides, their residence time in the soil. This research evaluated changes in sorption/availability of nicosulfuron (2-[[[[(4,6-dimethoxy-2-pyrimidinyl]aminolcarbonyl]amino]sulfonyl]-N,N-dimethyl-3-pyridinecarboxamide) herbicide with aging in different soils, using a radiolabeled (C-14) tracer. Aging significantly increased sorption. For instance, after the 41-day incubation, calculated K-d,K-app increased by a factor of 2 to 3 in Mollisols from the Midwestern United States and by a factor of 5 to 9 in Oxisols from Brazil and Hawaii, as compared to freshly treated soils. In view of this outcome, potential transport of nicosulfuron would be overpredicted if freshly treated soil Kd values were used to predict transport. The fact that the nicosulfuron solution concentration decreased faster than the soil concentration with time suggested that the increase in sorption was because the rate of degradation in solution and on labile sites was faster than the rate of desorption of the neutral species from the soil particles. It may have also been due to nicosulfuron anion diffusion to less accessible sites with time, leaving the more strongly bound neutral molecules for the sorption characterization. Regardless of the mechanism, these results are further evidence that increases in sorption during pesticide aging should be taken into account during the characterization of the sorption process for mathematical models of pesticide degradation and transport.
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The aim of this study was to investigate how beaker size, basket assembly, use of disk, and immersion medium impact the disintegration time of dietary supplements. The disintegration times were determined for five tablet and two capsule products. A two-station disintegration tester was used with Apparatus A or Apparatus B as described in the United States Pharmacopeia (USP) chapters, < 701 > and < 2040 >. Two beakers complying with the harmonized specifications were used, one with a volume of 1,000 mL and one with a 1,500-mL volume. The disintegration data were analyzed using ANOVA for the following factors: beaker size, equipment (App A and B) and condition (with/without disk). Two tablet products were not sensitive to any changes in the test conditions or equipment configurations. One product was only partially sensitive to the test conditions. The other products showed impact on the disintegration time for all test conditions. The results revealed that these tablet products might pass or fail current USP disintegration requirements depending on the equipment configuration. Similar results were obtained for the two investigated capsule formulations. One product might fail current USP disintegration requirements if the large beaker was used, but might pass the disintegration requirements when the small beaker was used. Hydroxy propyl methyl cellulose capsules were mostly influenced if sodium instead of a potassium buffer was used as the immersion medium. The results demonstrate that the current harmonized ICH specifications for the disintegration test are insufficient to make the disintegration test into reliable test for dietary supplements.
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Bidirectional transport studies were conducted using Caco-2, MDCK, and MDCK-MDR1 to determine P-gp influences in lamivudine and zidovudine permeability and evaluate if zidovudine permeability changes with the increase of zidovudine concentration and/or by association of lamivudine. Transport of lamivudine and zidovudine separated and coadministrated across monolayers based on these cells were quantified using LC-MS-MS. Drug efflux by P-gp was inhibited using GG918. Bidirectional transport of lamivudine and zidovudine was performed across MDCK-MDR1 and Caco-2 cells. Statistically significant transport decrease in B -> A direction was observed using MDCK-MDR1 for zidovudine and MDCK-MDR1 and Caco-2 for lamivudine. Results show increased transport in B -> A and A -> B directions as concentration increases but data from P(app) increase in both directions for both drugs in Caco-2, decrease in MDCK, and does not change significantly in MDCK-MDR1. Zidovudine transport in A -> B direction increases when coadministrated with increasing lamivudine concentration but does not change significantly in B -> A direction. Zidovudine and lamivudine are P-gp substrates, but results assume that P-gp does not affect significantly lamivudine and zidovudine. Their transport in monolayers based on Caco-2 cells increase proportionally to concentration (in both directions) and zidovudine transport in Caco-2 cell monolayer does not show significant changes with lamivudine increasing concentrations. (C) 2009 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 98:4413-4419, 2009
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A new method to prepare porous silk fibroin (SF) membranes without dialysis proposed. Silk fibers were degummed to remove sericin and the resultant fibroin was dissolved in a CaCl(2)-CH(3)CH(2)OH-H(2)O ternary solvent. Rather than undergoing dialysis, a fibroin salty solution was diluted in water and then submitted to a mechanical agitation that led to a phase separation through foam formation on the solution surface. This foam was continually collected and then compacted between plates to remove the excess of water. The membranes presented large pores with diameters of greater than 100 pm (as shown by scanning electron microscopy - SEM), porosity of 68% and water content of 91% w/w. X-ray diffraction (XRD) and infrared spectroscopy (FTIR-ATR) indicated that the membranes present SF in a beta-sheet structure even before the ethanol treatment. A typical elastic deformation profile and degradation under temperature were observed using calorimetric analysis (DSC), thermal gravimetric analysis (TGA) and mechanical tests. As indicated by the in vitro cytotoxicity tests, these membranes present potential for use as scaffolds. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci 114: 617-623, 2009
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The three-dimensional solution structure of the 40 residue amyloid beta-peptide, A beta(1-40), has been determined using NMR spectroscopy at pH 5.1, in aqueous sodium dodecyl sulfate (SDS) micelles, In this environment, which simulates to some extent a water-membrane medium, the peptide is unstructured between residues 1 and 14 which are mainly polar and likely solvated by water. However, the rest of the protein adopts an alpha-helical conformation between residues 15 and 36 with a kink or hinge at 25-27. This largely hydrophobic region is likely solvated by SDS. Based on the derived structures, evidence is provided in support of a possible new location for the transmembrane domain of A beta within the amyloid precursor protein (APP). Studies between pH 4.2 and 7.9 reveal a pH-dependent helix-coil conformational switch. At the lower pH values, where the carboxylate residues are protonated, the helix is uncharged, intact, and lipid-soluble. As the pH increases above 6.0, part of the helical region (15-24) becomes less structured, particularly near residues E22 and D23 where deprotonation appears to facilitate unwinding of the helix. This pH-dependent unfolding to a random coil conformation precedes any tendency of this peptide to aggregate to a beta-sheet as the pH increases. The structural biology described herein for A beta(1-40) suggests that (i) the C-terminal two-thirds of the peptide is an alpha-helix in membrane-like environments, (ii) deprotonation of two acidic amino acids in the helix promotes a helix-coil conformational transition that precedes aggregation, (iii) a mobile hinge exists in the helical region of A beta(1-40) and this may be relevant to its membrane-inserting properties and conformational rearrangements, and (iv) the location of the transmembrane domain of amyloid precursor proteins may be different from that accepted in the Literature. These results may provide new insight to the structural properties of amyloid beta-peptides of relevance to Alzheimer's disease.
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The Alzheimer's disease amyloid protein precursor (APP) gene is part of a multi-gene super-family from which sixteen homologous amyloid precursor-like proteins (APLP) and APP species homologues have been isolated and characterised. Comparison of exon structure (including the uncharacterised APL-1 gene), construction of phylogenetic trees, and analysis of the protein sequence alignment of known homologues of the APP super-family were performed to reconstruct the evolution of the family and to assess the functional significance of conserved protein sequences between homologues. This analysis supports an adhesion function for all members of the APP super family, with specificity determined by those sequences which are not conserved between APLP lineages, and provides evidence for an increasingly complex APP superfamily during evolution. The analysis also suggests that Drosophila APPL and Caenorhabdotids elegans APL-1 may be a fourth APLP lineage indicating that these proteins, while not functional homologues of human APP, are similarly likely to regulate cell adhesion. Furthermore, the beta A4 sequence is highly conserved only in APP orthologues, strongly suggesting this sequence is of significant functional importance in this lineage. (C) 2000 Elsevier Science Ltd. All rights reserved.
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Semi-interpenetrating networks (Semi-IPNs) with different compositions were prepared from poly(dimethylsiloxane) (PDMS), tetraethylorthosilicate (TEOS), and poly (vinyl alcohol) (PVA) by the sol-gel process in this study. The characterization of the PDMS/PVA semi-IPN was carried out using Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), and swelling measurements. The presence of PVA domains dispersed in the PDMS network disrupted the network and allowed PDMS to crystallize, as observed by the crystallization and melting peaks in the DSC analyses. Because of the presence of hydrophilic (-OH) and hydrophobic (Si-(CH(3))(2)) domains, there was an appropriate hydrophylic/hydrophobic balance in the semi-IPNs prepared, which led to a maximum equilibrium water content of similar to 14 wt % without a loss in the ability to swell less polar solvents. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci 115: 158-166, 2010
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The hallmark of Alzheimer's disease is the cerebral deposition of amyloid which is derived from the amyloid precursor protein (APP). The function of APP is unknown but there is increasing evidence for the role of APP in cell-cell and/or cell-matrix interactions. Primary cultures of murine neurons were treated with antisense oligonucleotides to down-regulate APP. This paper presents evidence that APP mediates a substrate-specific interaction between neurons and extracellular matrix components collagen type I, laminin and heparan sulphate proteoglycan but not fibronectin or poly-L-lysine. It remains to be determined whether this effect is the direct result of APP-matrix interactions, or whether an intermediary pathway is involved. (C) 1997 Elsevier Science B.V.
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Hepatitis Delta virus (HDV) is endemic worldwide, but its prevalence varies in different geographical areas. While in the Brazilian Amazon, HDV is known to be endemic and to represent a significant public health problem, few studies have assessed its prevalence in other regions in the country. This study evaluated the seroprevalence of HDV among HBsAg chronic carriers from Maranhao state, a region located in the Northeast of Brazil. Among 133 patients, 5 had anti-HD, of whom 3 had HDV RNA. HDV genotypes were characterized by Bayesian phylogenetic analysis of nucleotide sequences from the HDAg coding region. HDV-3 was identified in one patient who lives in Maranhao, but was born in Amazonas state (Western Amazon basin). Phylogenetic analysis shows that this HDV-3 sequence grouped with other HDV-3 sequences isolated in this state, which suggests that the patient probably contracted HDV infection there. Surprisingly, the other two patients were infected with HDV-8, an African genotype. These patients were born and have always lived in Urbano Santos, a rural county of Maranhao state, moreover they had never been to Africa and denied any contact with people from that continent. This is the first description of the HDV-8 in non-native African populations. This genotype may have been introduced to Brazil through the slaves brought to the country from the West Africa regions during the 16-18th centuries. Our results indicate that the need of clinical and epidemiological studies to investigate the presence of this infection in other areas in Brazil. (C) 2011 Elsevier B.V. All rights reserved.
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Early Alzheimer`s disease (AD) pathophysiology is characterized by synaptic changes induced by degradation products of amyloid precursor protein (APP). The exact mechanisms of such modulation are unknown. Here, we report that nanomolar concentrations of intraaxonal oligomeric (o)A beta 42, but not oA beta 40 or extracellular oA beta 42, acutely inhibited synaptic transmission at the squid giant synapse. Further characterization of this phenotype demonstrated that presynaptic calcium currents were unaffected. However, electron microscopy experiments revealed diminished docked synaptic vesicles in oA beta 42-microinjected terminals, without affecting clathrin-coated vesicles. The molecular events of this modulation involved casein kinase 2 and the synaptic vesicle rapid endocytosis pathway. These findings open the possibility of a new therapeutic target aimed at ameliorating synaptic dysfunction in AD.
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The disposition kinetics of six cationic drugs in perfused diseased and normal rat livers were determined by multiple indicator dilution and related to the drug physicochemical properties and liver histopathology. A carbon tetrachloride (CCl4)induced acute hepatocellular injury model had a higher fibrosis index (FI), determined by computer-assisted image analysis, than did an alcohol-induced chronic hepatocellular injury model. The alcohol-treated group had the highest hepatic alpha(1)- acid glycoprotein, microsomal protein (MP), and cytochrome P450 (P450) concentrations. Various pharmacokinetic parameters could be related to the octanol-water partition coefficient (log P-app) of the drug as a surrogate for plasma membrane partition coefficient and affinity for MP or P450, the dependence being lower in the CCl4-treated group and higher in the alcohol-treated group relative to controls. Stepwise regression analysis showed that hepatic extraction ratio, permeability-surface area product, tissue-binding constant, intrinsic clearance, partition ratio of influx (k(in)) and efflux rate constant (k(out)), and k(in)/k(out) were related to physicochemical properties of drug (log P-app or pK(a)) and liver histopathology (FI, MP, or P450). In addition, hepatocyte organelle ion trapping of cationic drugs was evident in all groups. It is concluded that fibrosis-inducing hepatic disease effects on cationic drug disposition in the liver may be predicted from drug properties and liver histopathology.
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Englobado na temática do desenvolvimento de métodos in vitro para avaliação da biodisponibilidade de fármacos, este trabalho de investigação teve como objectivo a optimização de um método para avaliar em simultâneo a dissolução e permeabilidade de fármacos usando uma célula de fluxo bilateral com membranas de Polyvinylidene Fluoride (PVDF). Através de uma avaliação inicial, na qual se testou o efeito de diversas variáveis na permeabilidade da cafeína e do ácido acetilsalicílico, obtiveram-se resultados que permitiram concluir que os ensaios realizados são mais reprodutíveis, quando a célula de fluxo é utilizada em circulação unilateral no lado dador e com agitação do lado aceitador. Observou-se ainda que o método permite detectar a influência do pH (Papp da cafeína a pH 7,4 e 4,5: 4,84±1,57x105cm.s-1 e 6,00±0,70x105cm.s app do ácido acetilsalicílico a pH 7,4 e 4,5: 3,85±0,38x10-5cm.s-1 e 5,1 1±0,65x105cm.s-1) e dos excipientes (Papp da cafeína isoladamente e em presença de excipientes: 6,76±1,22 x 10-5cm.s1 e 5,84±0,43x10-5cm.s-1 app do ácido acetilsalicílico isoladamente e em presença de excipientes: 7,07±1,56x105 cm.s e 5,19±0,23x10-5cm.s1) na permeabilidade dos compostos. Na avaliação da dissolução testou-se um método descrito na United States Pharmacopeia (USP) com meio de dissolução a pH 4,5 e um método com meio de dissolução a pH 7,4 pois na perspectiva de no futuro se realizarem ensaios com membranas celulares Caco-2, foi necessário testar um meio compatível com estas. As percentagens de dissolução dos ensaios a pH 7,4 foram de 96,3% para a cafeína e de 87,1% para o ácido acetilsalicílico, o que permitiu a utilização deste meio, visto ter sido superior ao limite mínimo de 80% estabelecido pela USP. Após estabelecimento das metodologias de dissolução e permeabilidade individuais, passou-se ao acoplamento das duas técnicas, tendo sido realizados ensaios de dissolução/permeabilidade com uma forma farmacêutica contendo os dois compostos em estudo (Melhoral®), nos quais se obtiveram permeabilidades aparentes de 3,97±0,37x105cm.s1 e 3,69±0,29 x105cm.s para a cafeína e ácido acetilsalicílico a pH 4,5 e de 3,77±0,40x105cm.s e 4,08± 0,04x1 05cm.s1 para a cafeína e ácido acetilsalicílico a pH 7,4, resultados estes que foram reprodutíveis e descriminativos e que perspectivam a possibilidade da utilização do sistema para futuros trabalhos envolvendo membranas de culturas celulares (Caco-2) ou tecidos (pele ou intestino).
Resumo:
A realização deste trabalho inseriu-se na contribuição para o estudo da incorporação de novos materiais poliméricos em membranas betuminosas, mais concretamente na modificação de misturas betuminosas. Para o efeito, foram sintetizados novos poliésteres polióis semelhantes estruturalmente, mas com diferentes pesos moleculares, baseados na utilização de ácidos diméricos de fonte renovável (tall-oil), que serviram de suporte para a produção de prepolímeros de isocianato para a modificação de betumes. A caracterização dos póliesteres polióis e dos polímeros produzidos foi realizada através de espectroscopia de infravermelhos. Ensaios de engenharia e qualidade, especificados para misturas betuminosas, foram realizados a diversos betumes convencionais e modificados, nos laboratórios industriais das empresas Imperalum e Probigalp como parte integrante no conhecimento dos procedimentos para este tipo de ensaios, nomeadamente o ensaio de penetração, ponto de amolecimento, viscosidade cinemática e dinâmica, apoiando igualmente um estudo de reprodutibilidade inter-laboratorial. Betumes 160/220 previamente modificados com teores de 1% e 3% de prepolímeros reactivos e, modificados com APP e SBS, foram caracterizados reologicamente a várias temperaturas na zona de viscoelasticidade linear. Os ensaios foram realizados em regime dinâmico através do varrimento em frequência a várias temperaturas. Pela análise dos resultados obtidos, concluiu-se que as modificações consideradas aumentam o carácter elástico dos betumes, confirmado pelo aumento do módulo elástico (G’(ω)). Os betumes modificados com teores de 1% de prepolímeros foram caracterizados microestruturalmente através de microscopia de força atómica. As imagens topográficas obtidas confirmam a existência de três fases distintas, designadamente a fase catana, perifase e parafase. A avaliação das proporções de cada fase revelou dependências entre a estrutura dos modificadores e a alteração efectiva da microestrutura dos betumes.
Resumo:
O principal objectivo deste trabalho foi o estudo da incorporação de novos materiais poliméricos em membranas betuminosas. Assim, foram sintetizados novos poliésteres polióis, com pesos moleculares semelhantes, analisados através das titulações dos grupos hidroxilo e ácido carboxílico terminais, e estruturas diferentes. Os polímeros foram sintetizados com base em ácidos diméricos, Unidyme 18 e glicóis, monopropilenoglicol e neopentilglicol no caso do polímero linear, já para o polímero tri-funcional utilizou-se trimetilolpropano e monopropilenolglicol. Estas matérias-primas servem de suporte à produção dos prepolímeros e quasi-prepolímeros reactivos de isocianato terminal para a modificação dos betumes, sendo as suas caracterizações realizadas através de espectroscopia de infravermelhos e ensaios de viscosidade. Foram preparadas as misturas com o betume de grade 160/220, provenientes da refinaria de Sines e do Porto com adição de teores de 5%, 10& e 15% de um prepolímero PRP1 e de um quasi-prepolímero. Ensaios de engenharia e qualidade, foram realizados a diversos betumes convencionais e modificados, nos laboratórios industriais das empresas Lusasfal e Probigalp como parte integrante no conhecimento dos procedimentos normativos para este tipo de ensaios, nomeadamente o ensaio de penetração, ponto de amolecimento, viscosidade dinâmica, apoiando igualmente um estudo de reprodutibilidade inter-laboratorial. Os betumes 160/220 previamente modificados com aPP e SBS, foram caracterizados reologicamente à temperatura ambiente na zona da viscoelasticidade linear.