999 resultados para Resistência a doenças
Resumo:
Paracelsus (1493 - 1541) developed a theory about three principles (sulphur, mercury, and salt) that would constitute matter, and whose mutual interactions within man's body could cause diseases. This paper discusses the influence of this theory on the work of two chemical philosophers. Oswald Crollius (1560 - 1609) considered that the conceptions of matter and disease were strongly related because of the macro - microcosm analogy, and classified diseases in sulphurean, mercurial and saline. On the other hand, J. B. Van Helmont (1579 - 1644) stated that sulphur, mercury, and salt were not true principles, and that every disease would have a specific origin. Instead of the principles, Van Helmont put the Archeus at the center of both his medical and matter theories.
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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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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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Multidrug resistance, MDR is a major obstacle for cancer chemotherapy. MDR can be reversed by drugs that vary in their chemical structure and main biological activity. Many efforts have been done to overcome MDR based on studies of structure-activity relationships and in this review we summarize some aspects of MDR mediated by P-glycoprotein (P-gp), as the most experimentally and clinically tested form of drug resistance. The most significant MDR mechanisms revealed until now are shortly discussed. Physicochemical and structural properties of MDR modulators, measures of the MDR reversal, and QSAR studies are included.
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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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Docosahexaenoic acid (C22:6, n-3, DHA) is a polyunsaturated fatty acid (PUFA) present in large concentrations in the brain and, due to the presence of six double bonds in its structure, is highly susceptible to oxidation by enzymes and reactive oxygen/nitrogen species. The peroxidation of PUFAs has been implicated in an increasing number of human disorders, including neurodegenerative diseases. Hence, a better understanding of the metabolism pathways of DHA should provide new insights about its role in neurodegenerative diseases. Here we review the main aspects related to DHA metabolism, as well as, the recent findings showing its association with neurodegenerative diseases.
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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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History shows that public health actions to combat epidemics are most effective when there is constant synergy of both government and society, exemplified by prevention actions in the fight against dengue fever, H1N1 influenza etc. Private-public-partnerships (PPP) can also provide more dynamic and consistent results in production through interaction among Government, University and Enterprise actors. This article puts forward proposals to tackle the problem of neglected tropical diseases via the formation of a Management Council using Etzkowitz's Triple Helix concept to attenuate this public health issue in Brazil.
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Metals such as copper and zinc are essential for the development and maintenance of numerous enzymatic activities, mitochondrial functions, neurotransmission, and also for memorization and learning. However, disruption in their homeostasis can cause neurodegenerative disorders such as the Alzheimer and Parkinson diseases. In this work, the speciation of copper and zinc in urine samples was carried out. To this end, free and total metal concentrations were determined by square wave anodic stripping voltammetry using a glassy carbon electrode coated with bismuth film. The digestion of the samples was performed in a microwave with the addition of oxidant reagents.
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In an article recently published in Química Nova, entitled "Chemistry Without Borders" ("Química Sem Fronteiras") [Pinto, A. C.; Zucco, C.; Galembeck, F.; Andrade, J. B.; Vieira, P. C. Quim. Nova 2012, 35, 2092], the authors highlighted the important aspects of science and technology with special emphasis on the field of Chemistry and its contributions toward a more prosperous Brazil of future. As a second step in that direction, this article extends the discussion of a key issue for the country in the framework of the chemistry community through the so called position papers in strategic areas. This document is a part of the contribution of the Brazilian Chemical Society to the World Science Forum to be held in Rio de Janeiro in November 2013. In this context, the present paper provides a brief discussion on neglected tropical diseases (NTDs) with emphasis on the current challenges and opportunities towards the development and evolution of the field. NTDs leads to illness, long-term disability or death, and has severe social, economic and psychological consequences for millions of men, women, and children worldwide. In most cases, the available treatments are inadequate and extremely limited in terms of efficacy and safety, leading to an urgent demand for new drugs. In addition to the traditional challenges involved in any drug discovery process, it is widely recognized that there is an innovation gap and a lack of investment for research and development (R&D) in the area of NTDs. In the last few decades, methods toward combating, eradication, prevention, and treatment of NTDs have been repeatedly emphasized in the major international agendas. Developments in these strategies and alliances have continued to have an essential impact, particularly in the area of drug discovery, both in Brazil and globally and should be encouraged and supported. Several examples of international activities dedicated to the reduction of the devastating global impact of NTDs can be provided. Despite the beneficial developments in the past 30 years, NTDs continue to devastate poor communities in remote and vulnerable areas, in large part, due to market failures and public policies. Recent studies have shown that among 756 new drugs approved between 2000 and 2011, only four new chemical entities (NCEs) were identified for the treatment of malaria, while none were developed against NTDs or tuberculosis. Furthermore, only 1.4% of approximately 150,000 clinical trials were registered for neglected diseases, with a smaller number of trials for NCEs. Establishment and strengthening of global strategies involving the triad "government-academia-industry" is fundamental to the success in R&D of new drugs for NTDs. National and international public-private initiatives that aim to create, encourage, and invest in R&D projects have been implemented and therefore are of utmost importance to successfully integrate Brazil into this new paradigm. It is essential to lay the foundation for mechanisms that will intensify investments in infrastructure, training, and qualification of personnel with an ultimate strategic vision that foresees continuity. Our research group has made significant contributions to the development of this field with the goal of forging new frontiers while tackling both current and future challenges that include indispensable elements such as innovation and integration.
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Foram inoculadas 17 cultivares de feijoeiro-comum (Phaseolus vulgaris) recomendadas para plantio em Minas Gerais com cinco patótipos (6, 7, 9, 10 e 12) de Uromyces appendiculatus e cinco (63.55, 31.23, 63.39, 31.55 e 63.23) de Phaeoisariopsis griseola. Foi conduzido um ensaio separadamente para cada um dos patótipos dos dois patógenos, totalizando 10 ensaios. Nos ensaios de ferrugem foi avaliada a freqüência de infecção (FI) e estimado o tamanho médio das pústulas (TMP) e, nos ensaios de mancha-angular foram avaliados os sintomas utilizando uma escala de notas variando de 1 a 9. A maioria das cultivares se mostrou suscetível a pelo menos três dos cinco patótipos de ferrugem. As cultivares mais suscetíveis foram Roxo 90 e Meia Noite e a mais resistente foi a Ouro Negro, a qual apresentou proteção completa aos cinco patótipos testados. Com relação à mancha angular, além do Roxo 90, as cultivares Carioca MG, Pérola, Carioca 1030 e Aporé, extensivamente plantadas em Minas Gerais, foram altamente suscetíveis. As cultivares Ouro Negro e EMGOPA 201-Ouro apresentaram genes de resistência a diferentes patótipos e a combinação desses genes em uma nova cultivar resultaria em resistência a todos os patótipos testados.
Resumo:
O patossistema tropical difere do patossistema temperado tanto em estrutura quanto em comportamento. Nesta revisão, ambos os patossistemas são caracterizados e, com base nessa caracterização, o risco de origem e de seleção de resistência a fungicidas é discutido para ambas as situações. As características diferenciais relevantes para análise foram: sobrevivência I (entre estações de cultivo); sobrevivência II (entre ciclos do patógeno); taxa aparente de infecção; via anti-horária de infecção; ingresso e/ou manutenção de mutantes resistentes; via horária de infecção; persistência de mutantes resistentes; adaptabilidade dos mutantes resistentes. Conclui-se que o patossistema tropical não apresenta risco maior para a seleção de mutantes resistentes, mas pode, em alguns casos, apresentar risco maior de origem de mutantes resistentes.
Resumo:
Seleção de genótipos de soja (Glycine max) resistentes à mancha parda foi avaliada em condições de casa de vegetação, inoculando-se plantas de soja com um mês de idade com suspensão de esporos calibrada para 10(6) esporos/ml. A avaliação foi iniciada duas semanas após a inoculação e consistiu em determinar a área abaixo da curva de progresso de lesão, índice de amarelecimento e período necessário para atingir 5% de área foliar necrosada. Nenhum genótipo testado foi imune à mancha parda da soja. No entanto, as cultivares CTS-40, IAS-2, IAS-5, PI PI 230 975 e PI 204 332 exibiram menor porcentagem de área foliar necrosada e apresentaram maior período em dias para atingir 5 % de severidade. Os resultados mostram que o nível de severidade estabelecido baseado no número de dias para atingi-lo é um bom indicador para seleção de genótipos com resistência parcial a Septoria glycines. Os genótipos identificados como tolerantes, neste trabalho, poderão ser utilizados nos programas de melhoramento de soja no Brasil.