588 resultados para Drogas - Resistência a microorganismos


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Drug delivery system controls the distribution of drugs for optimal therapeutic efficacy. The complex of higly active drugs with macromolecular carriers seems to offer a promising way to optimize their delivery. Dendrimers can be used as drug delivery system and this paper addresses the effectivenes of the approach. The host-guest system improves the solubility of hydrazides and mesoionic 1,3,4-thiadiazolium-2-aminide compounds.

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The chemical durability of the Li2O-ZrO2-BaO-SiO2 system was examined by determination of the Vickers hardness. The dependence of hardness and of the chemical resistance with BaO addition was investigated. The experimental results indicate that the hardness increases with the BaO content. The samples surface's morphology submitted to the chemical treatment in acidic (H2SO4) and basic (KOH) solution was accompanied by scanning electron microscopy. The chemical durability of the materials with BaO showed better than the glass ceramic without this content. These materials treated with H2SO4 solution showed a preferential attack to the silica rich sites.

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The xerogel p-anisidinepropylsilica was obtained. This solid presents some residual paraffin and also a small fraction of high organofunctionalized material that was leached in polar solvent. The xerogel purification could be achieved by exhaustively washing with hexane and dichloromethane solvents, or submitting the xerogel to thermal treatment up to 300 ºC, in vacuum. The resulting purified xerogel material present an appreciable thermal stability and resistance to leaching by solvents.

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Siderophores (from the Greek: "iron carriers") are defined as relatively low molecular weight, ferric ion specific chelating agents elaborated by microorganisms growing under low iron stress. The role of these compounds is to scavenge iron from the environment and to make this essential chemical element available to the microbial cell. The present paper is a brief presentation of siderophore coordination chemistry with emphasis on those aspects relevant to the transportation of iron (III) complexes across biological membranes. Finally, the role of siderophores in infection and their clinical potential as iron scavenging molecules are reviewed.

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Currently available anti-HIV drugs can be classified into three categories: nucleoside analogue reverse transcriptase inhibitors (NRTIs), non-nucleoside reverse transcriptase inhibitors (NNRTIs) and protease inhibitors (PIs). In addition to the reverse transcriptase (RT) and protease reaction, various other events in the HIV replicative cycle can be considered as potential targets for chemotherapeutic intervention: (1) viral adsorption, through binding to the viral envelope glycoprotein gp120; (2) viral entry, through blockage of the viral coreceptors CXCR4 and CCR5; (3) virus-cell fusion, through binding to the viral envelope glycoprotein gp 41; (4) viral assembly and disassembly through NCp7 zinc finger-targeted agents; (5) proviral DNA integration, through integrase inhibitors and (6) viral mRNA transcription, through inhibitors of the transcription (transactivation) process. Also, various new NRTIs, NNRTIs and PIs have been developed, possessing different improved characteristics.

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Pilocarpus riedelianus was studied in order to obtain compounds with activity against fungi and bacteria. The dichloromethane extract, the most active one, was chromatographed yielding hexane and dichloromethane fractions. Six known sesquiterpenes, alpha-calacorene, beta-calacorene, gamma-calacorene, cadalene, sesquichamaenol and 1-hydroxy-1,3,5-bisabolatrien-10-one were identified in the hexane fractions. The identification of these compound was done by NMR and GC/MS analyses. The hexane fraction from the dichloromethane extract showed activity against several fungi and bacteria.

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This article provides an overview on the recent achievements to combat Gram-positive bacteria and the mechanisms related to antimicrobial activity and bacterial resistance. Selected synthetic methodologies to access structurally diverse bioactive compounds are presented in order to emphasize the most important substances currently developed to overcome multiresistant strains. The main properties of vancomycin and related glycopeptide antibiotics are also discussed as a background to understanding the design of new chemotherapeutic agents.

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Thermosensitive hydrogels were synthesized using alginate-Ca2+ in association with a thermosensitive polymer, such as PNIPAAm. The mechanical properties of the hydrogels were determined measuring the maximum tension of deformation. With the increase of the temperature by 25 to 40 ºC above the LCST the chains of PNIPAAm collapsed, dragging the alginate net and diminishing the size of the pores. The decrease in the size of the pores of the hydrogel was followed by an increase in the mechanicals resistance of the material.

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Antibiotic resistance has been growing at an alarming rate and consequently the arsenal of effective antibiotics against Gram-negative and Gram-positive bacteria has dropped dramatically. In this sense there is a strong need to produce new substances that not only have good spectrum of activity, but having new mechanisms of action. In this regard, this paper emphasizes the coordination of metals to antibiotics as a strategy for reversing antibiotic resistance and production of new drugs, with a special focus on quinolones, fluoroquinolones, sulfonamides and tetracyclines.

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In this review recent methods developed and applied to solve criminal occurences related to documentoscopy, ballistic and drugs of abuse are discussed. In documentoscopy, aging of ink writings, the sequence of line crossings and counterfeiting of documents are aspects to be solved with reproducible, fast and non-destructive methods. In ballistic, the industries are currently producing ''lead-free'' or ''nontoxic'' handgun ammunitions, so new methods of gunshot residues characterization are being presented. For drugs analysis, easy ambient sonic-spray ionization mass spectrometry (EASI-MS) is shown to provide a relatively simple and selective screening tool to distinguish m-CPP and amphetamines (MDMA) tablets, cocaine and LSD.

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This work has compared the surfaces of two different steel samples used as orthopedical implants, classified as ASTM F138 and ISO5832-9, through optical emission spectroscopy, by means of SEM and EDS. The samples (implants) were also submitted to potentiodynamic cyclic polarization in Ringer lactate and NaCl 0.9 M L-1 solutions; ISO5832-9 sample did not show any kind of localized corrosion, but in the case of F138 steel was observed a pit localized corrosion in both solutions. In Ringer lactate solution it was observed a loss of about 63% for nickel and 26% for iron for F138 stell, compared to the initial composition.

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Marijuana (Cannabis sativa L.) is the most cultivated, trafficked and consumed illicit drug worldwide. Estimates indicate 10% of individuals experiencing marijuana become daily users, and 20-30% use it weekly. Around 489 natural compounds have been identified in this plant, of which 70 are cannabinoids, responsible for psychic effects. The most relevant cannabinoid is Δ9-THC, recognized as the main chemical substance with psychoactive effects. The aims of this work was to investigate whether other drugs interfere with the colorimetric tests Fast Blue B and Duquenois-Levine, widely used for marijuana screening in forensic chemistry laboratories.

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Drugs of abuse are commonly used outside medical or legal settings where their production, marketing and consumption are subject to legal summons and/or intervention. Classified as emerging contaminants, these substances have been recently detected in samples of environmental concern, such as waters and wastewaters. This review presents the state-of-the-art on the methodological approaches used in sample preparation, the main techniques applied in analytical determination at trace levels, as well as the use of information related to the drug or its metabolite concentration in sewage samples to empirically estimate the consumption of drugs of abuse in a city or region.

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A mancha-angular, cujo agente causal é o fungo Phaeoisariopsis griseola, é uma das principais doenças do feijoeiro comum (Phaseolus vulgaris). Os marcadores moleculares disponíveis ainda não são suficientes para monitorar todos os genes de resistência a essa doença. Por isso, objetivou-se neste trabalho estudar a herança da resistência aos patótipos 63.39 e 31.23 de P. griseola, em populações derivadas de 'Ouro Negro' (ON) e 'US Pinto 111' (PT), e identificar marcadores moleculares ligados a genes de resistência presentes nessas cultivares. Quando inoculadas com o patótipo 63.39, as plantas ON, F1 (ON x PT) e 3/4 da população F2 mostraram-se resistentes enquanto que PT e 1/4 da população F2 foram suscetíveis. Quando inoculadas com o patótipo 31.23, as plantas PT e 1/4 das famílias F2:3 foram resistentes e todas as demais, suscetíveis. Esses dados indicam que a resistência proveniente de ON é conferida por um gene dominante enquanto que a de PT, por um recessivo. Esses dois genes segregaram independentemente. Amostras de DNA das plantas F2 foram amplificadas pela técnica de RAPD (random amplified polymorphic DNA) de acordo com a estratégia de análise de bulks segregantes. Foram identificados os marcadores OPM02(460C) e OPAA19(600C,) respectivamente a 5,3 e 10 centimorgans (cM) do loco de resistência proveniente de ON. Eles flanqueiam este loco e, quando empregados simultaneamente, proporcionam uma eficiência de seleção de 97,4%. Não foram identificados marcadores para o loco de resistência proveniente de PT.

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A identificação de fontes de resistência é uma etapa básica em programas de melhoramento que visam o desenvolvimento de cultivares resistentes a doenças. Neste trabalho, foram inoculadas, sob condições controladas, oito linhagens de feijoeiro-comum (Phaseolus vulgaris) desenvolvidas pelo Departamento de Agricultura dos Estados Unidos, com quatro raças conhecidas de Uromyces appendiculatus coletadas no estado de Minas Gerais, Brasil. A cultivar Ouro Negro foi utilizada como padrão de resistência e US Pinto 111 (suscetível universal) como padrão de suscetibilidade. Foi avaliada a freqüência de infecção (FI) e estimado o tamanho médio das pústulas (TMP). As linhagens BelMiDak-RMR-12 e BelMiDak-RR-3 destacaram-se como as mais resistentes, apresentando, para todas as raças, apenas pústulas (com diâmetro < 300mim) na face abaxial da folha. As linhagens BelDakMi-RMR-10 e BelNeb RR-2 apresentaram baixa FI média e foram resistentes a quatro e três raças, respectivamente. A linhagem BelDak-RR-2, apesar de sua resistência a todas as raças, apresentou uma FI média relativamente alta. As linhagens BelMiNeb-RMR-3 e BelDakMi RR-7 também foram resistentes às quatro raças testadas, porém apresentaram alta FI média e algumas pústulas com diâmetro maior que 300 mim. A linhagem BelDakMi-RMR-11 foi resistente às raças 45, 46 e 49 e moderadamente resistente à raça 52. A cultivar Ouro Negro foi resistente às quatro raças, com um nível de resistência igual às melhores linhagens norte americanas.