6 resultados para Trimethoprim-Sulfamethoxazole Combination

em Instituto Politécnico do Porto, Portugal


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Monitoring organic environmental contaminants is of crucial importance to ensure public health. This requires simple, portable and robust devices to carry out on-site analysis. For this purpose, a low-temperature co-fired ceramics (LTCC) microfluidic potentiometric device (LTCC/μPOT) was developed for the first time for an organic compound: sulfamethoxazole (SMX). Sensory materials relied on newly designed plastic antibodies. Sol–gel, self-assembling monolayer and molecular-imprinting techniques were merged for this purpose. Silica beads were amine-modified and linked to SMX via glutaraldehyde modification. Condensation polymerization was conducted around SMX to fill the vacant spaces. SMX was removed after, leaving behind imprinted sites of complementary shape. The obtained particles were used as ionophores in plasticized PVC membranes. The most suitable membrane composition was selected in steady-state assays. Its suitability to flow analysis was verified in flow-injection studies with regular tubular electrodes. The LTCC/μPOT device integrated a bidimensional mixer, an embedded reference electrode based on Ag/AgCl and an Ag-based contact screen-printed under a micromachined cavity of 600 μm depth. The sensing membranes were deposited over this contact and acted as indicating electrodes. Under optimum conditions, the SMX sensor displayed slopes of about −58.7 mV/decade in a range from 12.7 to 250 μg/mL, providing a detection limit of 3.85 μg/mL and a sampling throughput of 36 samples/h with a reagent consumption of 3.3 mL per sample. The system was adjusted later to multiple analyte detection by including a second potentiometric cell on the LTCC/μPOT device. No additional reference electrode was required. This concept was applied to Trimethoprim (TMP), always administered concomitantly with sulphonamide drugs, and tested in fish-farming waters. The biparametric microanalyzer displayed Nernstian behaviour, with average slopes −54.7 (SMX) and +57.8 (TMP) mV/decade. To demonstrate the microanalyzer capabilities for real applications, it was successfully applied to single and simultaneous determination of SMX and TMP in aquaculture waters.

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Solving systems of nonlinear equations is a very important task since the problems emerge mostly through the mathematical modelling of real problems that arise naturally in many branches of engineering and in the physical sciences. The problem can be naturally reformulated as a global optimization problem. In this paper, we show that a self-adaptive combination of a metaheuristic with a classical local search method is able to converge to some difficult problems that are not solved by Newton-type methods.

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Potentiometric sensors are typically unable to carry out on-site monitoring of environmental drug contaminants because of their high limits of detection (LODs). Designing a novel ligand material for the target analyte and managing the composition of the internal reference solution have been the strategies employed here to produce for the first time a potentiometric-based direct reading method for an environmental drug contaminant. This concept has been applied to sulfamethoxazole (SMX), one of the many antibiotics used in aquaculture practices that may occur in environmental waters. The novel ligand has been produced by imprinting SMX on the surface of graphitic carbon nanostructures (CN) < 500 nm. The imprinted carbon nanostructures (ICN) were dispersed in plasticizer and entrapped in a PVC matrix that included (or not) a small amount of a lipophilic additive. The membrane composition was optimized on solid-contact electrodes, allowing near-Nernstian responses down to 5.2 μg/mL and detecting 1.6 μg/mL. The membranes offered good selectivity against most of the ionic compounds in environmental water. The best membrane cocktail was applied on the smaller end of a 1000 μL micropipette tip made of polypropylene. The tip was then filled with inner reference solution containing SMX and chlorate (as interfering compound). The corresponding concentrations were studied for 1 × 10−5 to 1 × 10−10 and 1 × 10−3 to 1 × 10−8 mol/L. The best condition allowed the detection of 5.92 ng/L (or 2.3 × 10−8 mol/L) SMX for a sub-Nernstian slope of −40.3 mV/decade from 5.0 × 10−8 to 2.4 × 10−5 mol/L.

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Sulfamethoxazole (SMX) is among the antibiotics employed in aquaculture for prophylactic and therapeutic reasons. Environmental and food spread may be prevented by controlling its levels in several stages of fish farming. The present work proposes for this purpose new SMX selective electrodes for the potentiometric determination of this sulphonamide in water. The selective membranes were made of polyvinyl chloride (PVC) with tetraphenylporphyrin manganese (III) chloride or cyclodextrin-based acting as ionophores. 2-nitrophenyl octyl ether was employed as plasticizer and tetraoctylammonium, dimethyldioctadecylammonium bromide or potassium tetrakis (4-chlorophenyl) borate was used as anionic or cationic additive. The best analytical performance was reported for ISEs of tetraphenylporphyrin manganese (III) chloride with 50% mol of potassium tetrakis (4-chlorophenyl) borate compared to ionophore. Nersntian behaviour was observed from 4.0 × 10−5 to 1.0 × 10−2 mol/L (10.0 to 2500 µg/mL), and the limit of detection was 1.2 × 10−5 mol/L (3.0 µg/mL). In general, the electrodes displayed steady potentials in the pH range of 6 to 9. Emf equilibrium was reached before 15 s in all concentration levels. The electrodes revealed good discriminating ability in environmental samples. The analytical application to contaminated waters showed recoveries from 96 to 106%.

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This work proposes a new biomimetic sensor material for trimethoprim. It is prepared by means of radical polymerization, having trimethylolpropane trimethacrylate as cross-linker, benzoyl peroxide as radicalar iniciator, chloroform as porogenic solvent, and methacrylic acid and 2-vinyl pyridine as monomers. Different percentages of sensor in a range between 1 and 6% were studied. Their behavior was compared to that obtained with ion-exchanger quaternary ammonium salt (additive tetrakis(p-chlorophenyl)borate or tetraphenylborate). The effect of an anionic additive in the sensing membrane was also tested. Trimethoprim sensors with 1% of imprinted particles from methacrylic acid monomers showed the best response in terms of slope (59.7 mV/decade) and detection limit (4.01 × 10− 7 mol/L). These electrodes displayed also a good selectivity towards nickel, manganese aluminium, ammonium, lead, potassium, sodium, iron, chromium, sulfadiazine, alanine, cysteine, tryptophan, valine and glycine. The sensors were not affected by pH changes from 2 to 6. They were successfully applied to the analysis of water from aquaculture.

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Esta dissertação descreve o trabalho desenvolvido ao longo de um ano e um mês desde a pesquisa teórica até à prática experimental no âmbito da unidade curricular de Dissertação/estágio do Mestrado em Engenharia Química, no ramo Tecnologias em Proteção Ambiental. O tema desta dissertação consiste na avaliação do funcionamento de duas estações de tratamento de águas residuais (ETAR) do interior do município de Vila Nova de Gaia no que diz respeito ao possível aumento da resistência a antibióticos na ETAR de Febros e na ETAR de Lever. Os testes de sensibilidade a antibióticos (TSA) foram executados para ambas as ETAR, sendo as amostras de água recolhidas na entrada e na saída dos reatores biológicos (tratamento secundário). Além disso, foram realizados testes de avaliação da eficiência de desinfeção por radiação ultravioleta (UV) relativamente à Escherichia coli (E. coli) na ETAR de Lever. Os antibióticos selecionados para a realização deste trabalho foram a Eritromicina, a Azitromicina, a Claritromicina, a Ofloxacina, a Ciprofloxacina, o Sulfametoxazol, o Trimetoprim e o Metronidazol. Esta seleção baseou-se no facto de estes serem alguns dos antibióticos mais consumidos e mais persistentes no meio ambiente. A bactéria E. coli (isolada a partir de amostras das águas residuais estudadas) foi escolhida para a realização deste estudo uma vez que está sempre presente nas águas residuais domésticas e está associada a fenómenos de multirresistência a antibióticos. Os testes de TSA foram realizados seguindo a metodologia de difusão por discos. No período do estudo (Março a Junho de 2015) identificaram-se situações quer de aumento de resistência quer de aumento de sensibilidade aos antibióticos testados. As situações mais graves de aumento de resistência, a que corresponderam a halos nulos, verificaram-se para os antibióticos Claritromicina, Trimetoprim e Metronidazol, ocorrendo com maior frequência para os dois últimos, que aliás são fármacos que são administrados em simultâneo. Os períodos mais problemáticos em termos de aumento das resistências foram ligeiramente diferentes nas duas ETAR. No caso da ETAR de Febros correspondeu ao mês Abril e na ETAR de Lever ocorreu entre o final de Abril e o início de Maio. Considera-se que estes períodos poderão coincidir com um aumento do consumo destes fármacos devido à sua utilização no combate a infeções respiratórias muito comuns nesta altura do ano. Não se observou qualquer sensibilidade da E. coli para o Metronidazol porque é um antibiótico com indicação para algumas bactérias anaeróbias, fungos e giardia, e que à partida não tem capacidade para eliminar a E. coli. A eficiência da desinfeção na ETAR de Lever relativamente à remoção de E. coli foi satisfatória. Sendo de salientar a importância da manutenção, no que se refere à identificação de possíveis avarias nas lâmpadas e correspondente limpeza. Os resultados deste trabalho provam a existência de estirpes da bactéria E. coli resistentes a alguns dos antibióticos estudados, o que reforça a importância da desinfeção no tratamento de águas residuais domésticas.