976 resultados para biological fluids


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It is known that the transmission of hospital infections, whether environmental or cross infection, is facilitated by the enhanced survival of microorganisms on dry surfaces that is caused by the presence of biological fluids. To demonstrate the need for care with bodily substances in the routine of cleaning, this study evaluated the influence of some body fluids (blood, urine and artificial saliva), deposited in the same way on various surfaces and allowed to dry, on the survival of Staphylococcus aureus (ATCC 25923). Blood was able to preserve bacterial viability for up to 72 days when deposited on ceramic flooring. Fabric of cotton fiber allowed longer survival than synthetic fabric. These results show that the composition of biological fluid and type of support influence bacterial survival in normal conditions.

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Tribocorrosion plays an important role in the lifetime of metallic implants. Once implanted, biomaterials are subjected to micro-movements in aggressive biological fluids. Titanium is widely used as an implant material because it spontaneously forms a compact and protective nanometric thick oxide layer, mainly TiO2, in ambient air. That layer provides good corrosion resistance, and very low toxicity, but its low wear resistance is a concern. In this work, an anodizing treatment was performed on commercial pure titanium to form a homogeneous thick oxide surface layer in order to provide bioactivity and improve the biological, chemical and mechanical properties. Anodizing was performed in an electrolyte containing β-glycerophosphate and calcium acetate. The influence of the calcium acetate content on the tribocorrosion behaviour of the anodized material was studied. The concentration of calcium acetate in the electrolyte was found to largely affect the crystallographic structure of the resulting oxide layer. Better tribocorrosion behaviour was noticed on increasing the calcium acetate concentration. © 2013 IOP Publishing Ltd.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Dentre as ferramentas para alcançar o tratamento ótimo para a malária, se destaca a monitorização das concentrações dos antimaláricos nos fluídos biológicos. Ao se considerar que o Coartem® é empregado na terapia de primeira linha para o tratamento da malária falciparum, justifica-se a realização deste estudo que objetivou validar metodologia analítica para determinação de lumefantrina em amostras de sangue total, adsorvidas em papel de filtro, e em plasma, por cromatografia líquida de alta eficiência (CLAE), em pacientes com malária por Plasmodium falciparum não complicada, empregando-se extração líquido-líquido. Foram realizados estudos de seletividade, linearidade, curva de calibração, limites de detecção e quantificação, recuperação, precisão intra e inter-ensaio, estabilidade e robustez. As amostras, para o estudo de aplicabilidade do método proposto, foram coletadas de pacientes com malária falciparum utilizando Coartem® (arteméter-20mg + lumefantrina- 120mg) no D3. As condições cromatográficas otimizadas foram: comprimento de onda de 335nm, fluxo 1,2mL/min. e fase móvel composta por acetonitrila-água (60:40, v/v) pH=3,5. A extração líquido-líquido demonstrou ser eficiente, pois a recuperação média foi de 101,3% para plasma e 84,3% para sangue total. O método foi seletivo e linear em intervalo de concentração de 160 a 1760ng/mL. Os limites de detecção e de quantificação foram 32ng/mL e 160ng/mL. O coeficiente de variação médio intra-ensaio, do plasma e sangue total, respectivamente, foram 10,88 e 8,38% e inter-ensaio de 13,21 e 11,78%. O analito demonstrou ser estável em sangue total adsorvido em papel de filtro por até 70 dias. Modificações no pH, fluxo e composição da fase móvel não alteraram significativamente a resolução do analito de interesse, sugerindo uma robustez adequada. O método demonstrou ser eficaz na quantificação de lumefantrina em amostras de sangue total de pacientes com malária falciparum bem como os parâmetros de validação estão de acordo com as recomendações dos órgãos regulamentadores no Brasil.

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Paracoccidioidomicose (PCM), uma micose sistêmica granulomatosa causada pelo fungo dimórfico Paracoccidioides brasiliensis, é endêmica na América do Sul. Conídios provavelmente agem como propágulos infectantes e são inalados para os pulmões, onde ocorre a transformação à forma leveduriforme patogênica. Duas principais formas clínicas são consideradas: a forma aguda ou subaguda (tipo juvenil) e a forma crônica (tipo adulto). O diagnóstico definitivo da PCM inclui a observação direta da levedura multibrotante característica em fluidos biológicos e secções teciduais ou isolamento do fungo de materiais clínicos. Na PCM, testes sorológicos, além de auxílio diagnóstico, têm a função de acompanhamento durante e pós-tratamento. Portanto, a técnica utilizada precisa aliar sensibilidade e especificidade, para que o valor preditivo seja máximo e reprodutível. O propósito deste estudo foi avaliar um teste de aglutinação com látex (LA) para detectar anticorpos anti-P.brasiliensis contra antígeno bruto do fungo. Cinqüenta e uma (51) amostras de soro de pacientes com PCM foram testadas. Positividade foi observada em 84,31% (43/51), cujos padrões de aglutinação variaram de 1+ a 4+. Reatividade dessas amostras foi verificada em títulos variando entre 1:2 e 1:64. Reatividade cruzada foi observada com outras doenças fúngicas (aspergilose e histoplasmose), e com doenças não fúngicas. Amostras de soro humano normal não foram reativas. A sensibilidade, especificidade e valores preditivos, positivo e negativo, produzidos pelo teste LA foram 84,31%, 81,05%, 70,49% e 90,59%, respectivamente. Em conclusão, estes resultados mostram que o teste LA é instrumento útil no sorodiagnóstico da PCM, além de vantagens como baixo custo e rápida execução, a despeito de outros testes, tais como ID e Western blotting.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Antimicrobials have unquestionable importance in the control of many diseases; however the constant concern with evolution of resistant microorganisms is increasing. The ertapenem sodium is a β-lactam antibiotic of the carbapenem class, which it has a broader activity spectrum than most other β-lactam antimicrobials, and is more resistant to the enzyme β-lactamase, which is the main mechanism of resistance of many bacteria. The progress of microbial resistance to existing antibiotics is alarming. Thus we need to preserve antimicrobials that still have activity against these pathogens. In this context, the quality control has a key role to ensure the correct dosage, by contributing preventively to minimize the development of resistant microorganisms. Study of the physicochemical characteristics of the drug and the quantification of the content of active substance are of fundamental importance for the pharmaceutical industry to ensure the quality of the product sold. This work presents a literature survey of existing methods for ertapenem sodium quantification which was performed. Ertapenem sodium can be analyzed by many types of assays; however the HPLC is the most used method. This review will examine the published analytical methods reported for determination of ertapenem sodium, in biological fluids and formulations.

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Albendazole sulfoxide (ABZSO), a broad spectrum anthelmintic drug extensively used in veterinary medicine, exhibits a low and erratic bioavailability due to its poor solubility in biological fluids. The aims of this study were the development, physicochemical characterization, and in vitro release profile evaluation of ABZSO-loaded Eudragit RS PO (R) microparticles (MPs) in order to improve the rate of dissolution and the dissolved percentage of the drug in pH 7.4. MPs were successfully obtained by the emulsification/solvent evaporation method, achieving entrapment efficiency and process yield of about 60% and mean size of 254 nm. The in vitro release profile study showed that dissolution of ABZSO followed a pseudo-second order kinetics and MPs were able to increase significantly (p < 0.05) the rate of dissolution of ABZSO compared to the micronized and non-micronized free drug, what could lead to an improvement in bioavailability and, consequently, in the antiparasitic activity. (C) 2011 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.

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An easy way to determine norepinephrine (NE) in biological fluid using a platinum ultramicroelectrode array (Pt-UMEAs) is described. Issues related to UME electrode surface treatment and characterizations are also addressed. At optimized experimental conditions the dynamic concentration range was 1.0 to 10.0 mu mol?L-1 with a detection limit of 40.5 nmol?L-1. The repeatability of current responses for injections of 5 mu mol?L-1 NE was evaluated to be 4.0?% (n=10). This approach obtained excellent sensitivity, a reliable calibration profile and stable electrochemical response for norepinephrine detection. The content of NE in urine samples without any preconcentration, purification, or pretreatment step, was successfully analyzed by the standard addition method using the Pt-UMEAs.

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The present work describes for the first time the use of SPME coupled to LC-MS/MS employing the polar organic mode in a stereoselective fungal biotransformation study to investigate the fungi ability to biotransform the drug risperidone into its chiral and active metabolite 9-hydroxyrisperidone (9-RispOH). The chromatographic separation was performed on a Chiralcel OJ-H column using methanol:ethanol (50:50, v/v) plus 0.2% triethylamine as the mobile phase at a flow rate of 0.8 mL min(-1). The SPME process was performed using a C18 fiber, 30 min of extraction time and 5 min of desorption time in the mobile phase. The method was completely validated and all parameters were in agreement with the literature recommendations. The Cunninghamella echinulata fungus was able to biotransform risperidone into the active metabolite, (+)-9-RispOH, resulting in 100% of enantiomeric excess. The Cunninghamella elegans fungus was also able to stereoselectively biotransform risperidone into (+)- and (-)-9-RispOH enantiomers at different rates. (C) 2012 Elsevier B.V. All rights reserved.

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The aim of this study is to develop a new enzymeless electroanalytical method for the indirect quantification of creatinine from urine sample. This method is based on the electrochemical monitoring of picrate anion reduction at a glassy carbon electrode in an alkaline medium before and after it has reacted with creatinine (Jaffe's reaction). By using the differential pulse voltammetry technique under the optimum experimental conditions (step potential, amplitude potential, reaction time, and temperature), a linear analytical curve was obtained for concentrations of creatinine ranging from 1 to 80 mu mol L-1, with a detection limit of 380 nmol L-1. This proposed method was used to measure creatinine in human urine without the interference of most common organic species normally present in biological fluids (e.g., uric acid, ascorbic acid, glucose, and phosphocreatinine). The results obtained using urine samples were highly similar to the results obtained using the reference spectrophotometric method (at a 95% confidence level). (C) 2012 Elsevier B.V. All rights reserved.

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This thesis covers sampling and analytical procedures for isocyanates (R-NCO) and amines (R-NH2), two kinds of chemicals frequently used in association with the polymeric material polyurethane (PUR). Exposure to isocyanates may result in respiratory disorders and dermal sensitisation, and they are one of the main causes of occupational asthma. Several of the aromatic diamines associated with PUR production are classified as suspected carcinogens. Hence, the presence of these chemicals in different exposure situations must be monitored. In the context of determining isocyanates in air, the methodologies included derivatisation with the reagent di-n-butylamine (DBA) upon collection and subsequent determination using liquid chromatography (LC) and mass spectrometric detection (MS). A user-friendly solvent-free sampler for collection of airborne isocyanates was developed as an alternative to a more cumbersome impinger-filter sampling technique. The combination of the DBA reagent together with MS detection techniques revealed several new exposure situations for isocyanates, such as isocyanic acid during thermal degradation of PUR and urea-based resins. Further, a method for characterising isocyanates in technical products used in the production of PUR was developed. This enabled determination of isocyanates in air for which pure analytical standards are missing. Tandem MS (MS/MS) determination of isocyanates in air below 10-6 of the threshold limit values was achieved. As for the determination of amines, the analytical methods included derivatisation into pentafluoropropionic amide or ethyl carbamate ester derivatives and subsequent MS analysis. Several amines in biological fluids, as markers of exposure for either the amines themselves or the corresponding isocyanates, were determined by LC-MS/MS at amol level. In aqueous extraction solutions of flexible PUR foam products, toluene diamine and related compounds were found. In conclusion, this thesis demonstrates the usefulness of well characterised analytical procedures and techniques for determination of hazardous compounds. Without reliable and robust methodologies there is a risk that exposure levels will be underestimated or, even worse, that relevant compounds will be completely missed.