85 resultados para Theweleit, Klaus


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Clinical and experimental investigations suggest that allergen-specific CD4+ T-cells, IgE and the cytokines IL-4 and IL-5 play central roles in initiating and sustaining an asthmatic response by regulating the recruitment and/or activation of airways mast cells and eosinophils. IL-5 plays a unique role in eosinophil development and activation and has been strongly implicated in the aetiology of asthma. The present paper summarizes our recent investigations on the role of these cytokines using cytokine knockout mice and a mouse aeroallergen model. Investigations in IL-5-/- mice indicate that this cytokine is critical for regulating aeroallergen-induced eosinophilia, the onset of lung damage and airways hyperreactivity during allergic airways inflammation. While IL-4 and allergen-specific IgE play important roles in the regulation of allergic disease, recent investigations in IL4-/- mice suggest that allergic airways inflammation can occur via pathways which operate independently of these molecules. Activation of these IL-4 independent pathways are also intimately associated with CD4+ T-cells, IL-5 signal transduction and eosinophilic inflammation. Such IL-5 regulated pathways may also play a substantive role in the aetiology of asthma. Thus, evidence is now emerging that allergic airways disease is regulated by humoral and cell mediated processes. The central role of IL-5 in both components of allergic disease highlights the requirements for highly specific therapeutic agents which inhibit the production or action of this cytokine.

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Eosinophil recruitment is a characteristic feature of a number of pathological conditions and was the topic of the recent International Symposium on allergic inflammation, asthma, parasitic and infectious diseases (Rio de Janeiro, June 3-5, 1996). Since interleukin5 (IL5) is believed to regulate the growth, differentiation and activation of eosinophils (Coffman et al. 1989, Sanderson 1992), the role of eosinophils and IL5 are closely linked. Although IL5 specifically regulates eosinophilia in vivo and this is its most well established activity, it is becoming clear that IL5 also has other biological effects. The recent derivation of an IL5 deficient mouse (Kopf et al. 1996), provides a model for exploring not only the role of IL5 and eosinophils but also other novel activities of IL5. Of note is that although the IL5 deficient mice cannot elicit a pronounced eosinophilia in response to inflammatory stimulation following aeroallergen challenge or parasite infection they still produce basal levels of eosinophils that appear to be morphologically and functionally normal. However, the basal levels of eosinophils appear insufficient for normal host defence as IL5 deficiency has now been shown to compromise defence against several helminth infections. In addition, IL5 deficient mice appear to have functional deficiencies in B-1 B lymphocytes and in IgA production.

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"If you know the enemy and know yourself, you need not fear the result of a hundred battles. If you know yourself but not the enemy, for every victory gained you will also suffer a defeat" (SunTzu the Art of War, 544-496 BC). Although written for the managing of conflicts and winning clear victories, this basic guideline can be directly transferred to our battle against apicomplexan parasites and how to focus future basic research in order to transfer the gained knowledge to a therapeutic intervention stratey. Over the last two decades the establishment of several key-technologies, by different groups working on Toxoplasma gondii, made this important human pathogen accessible to modern approaches in molecular cell biology. In fact more and more researchers get attracted to this easy accessible model organism to study specific biological questions, unique to apicomplexans. This fascinating, unique biology might provide us with new therapeutic options in our battle against apicomplexan parasites by finding its Achilles' heel. In this article we argue that in the absence of a powerful high throughput technology for the characterisation of essential gene of interests a coordinated effort should be undertaken to convert our knowledge of the genome into one of the phenome.

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Human respiratory syncytial virus (HRSV) is an important respiratory pathogens among children between zero-five years old. Host immunity and viral genetic variability are important factors that can make vaccine production difficult. In this work, differences between biological clones of HRSV were detected in clinical samples in the absence and presence of serum collected from children in the convalescent phase of the illness and from their biological mothers. Viral clones were selected by plaque assay in the absence and presence of serum and nucleotide sequences of the G2 and F2 genes of HRSV biological clones were compared. One non-synonymous mutation was found in the F gene (Ile5Asn) in one clone of an HRSV-B sample and one non-synonymous mutation was found in the G gene (Ser291Pro) in four clones of the same HRSV-B sample. Only one of these clones was obtained after treatment with the child's serum. In addition, some synonymous mutations were determined in two clones of the HRSV-A samples. In conclusion, it is possible that minor sequences could be selected by host antibodies contributing to the HRSV evolutionary process, hampering the development of an effective vaccine, since we verify the same codon alteration in absence and presence of human sera in individual clones of BR-85 sample.

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A software for the calculation of unsaturated soil hydraulic conductivity K(theta) is presented for commonly used methods found in the literature, based on field experiments in which a soil profile is submitted to water infiltration followed by internal drainage. The software is available at: dourado@esalq.usp.br.

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Knowledge about the fate of fertilizer nitrogen in agricultural systems is essential for the improvement of management practices in order to maximize nitrogen (N) recovery by the crop and reduce N losses from the system to a minimum. This study involves fertilizer management practices using the 15N isotope label applied in a single rate to determine the fertilizer-N balance in a particular soil-coffee-atmosphere system and to deepen the understanding of N plant dynamics. Five replicates consisting of plots of about 120 plants each were randomly defined within a 0.2 ha coffee plantation planted in 2001, in Piracicaba, SP, Brazil. Nine plants of each plot were separated in sub-plots for the 15N balance studies and treated with N rates of 280 and 350 kg ha-1 during 2003/2004 and 2004/2005, respectively, both of them as ammonium sulfate enriched to a 15N abundance of 2.072 atom %. Plant shoots were considered as separate parts: the orthotropic central branch, productive branches, leaves of productive branches, vegetative branches, leaves of vegetative branches and fruit. Litter, consisting of dead leaves accumulated below the plant canopy, was measured by the difference between leaves at harvest and at the beginning of the following flowering. Roots and soil were sampled down to a depth of 1.0 at intervals of 0.2 m. Samples from the isotopic sub-plots were used to evaluate total N and 15N, and plants outside sub-plots were used to evaluate dry matter. Volatilization losses of NH3 were estimated using special collectors. Leaching of fertilizer-N was estimated from deep drainage water fluxes and 15N concentrations of the soil solution at 1 m soil depth. At the end of the 2-year evaluation, the recovery of 15N applied as ammonium sulfate was 19.1 % in aerial plant parts, 9.4 % in the roots, 23.8 % in the litter, 26.3 % in the fruit and 12.6 % remaining in the 0_1.0 m soil profile. Annual leaching and volatilization losses were very small (2.0 % and 0.9 %, respectively). After two years, only 6.2 % N were missing in the balance (100 %) which can be attributed to other non-estimated compartments and experimental errors. Results show that an enrichment of only 2 % atom 15N allows the study of the partition of fertilizer-N in a perennial crop such as coffee during a period of two years.

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O movimento da água através da matriz do solo é geralmente modelado pelas equações de Darcy, Darcy-Buckingam e Richards, cujo uso está baseado no conhecimento de algumas propriedades físicas do solo, como, por exemplo, a distribuição de poros e a retenção de água pelo solo. A retenção de água pelo solo é conhecida a partir da determinação de sua curva de retenção (CR) ou curva característica. O primeiro objetivo deste trabalho foi apresentar um aparato simples, desenvolvido pela modificação do funil de placa porosa (funil de Haines), para a investigação e o levantamento de CRs detalhadas, em amostras de solos em condições de umidade próximas à saturação e em amostras com potenciais mátricos (ψm) que vão desde 0 kPa a aproximadamente -12 kPa (120 cm de altura de coluna de água). Foram investigados agregados de um Latossolo Vermelho distrófico (LVd) de uma região do Estado do Paraná, cujos diâmetros médios e densidades variaram, respectivamente, entre 1,6 e 5,7 cm e 1,01 e 1,31 g cm-3, e amostras arenosas reconstituídas com areias de diâmetros médios entre 0,106 mm e 2,000 mm, com dimensões fractais de fracionamento (Df) entre 2,5 e 3,0. O segundo objetivo do trabalho foi inferir a distribuição de poros das amostras investigadas. Isso foi conseguido utilizando-se os parâmetros de ajuste da curva de van Genuchtenaos pontos das CRs obtidas para a determinação da Função Capacidade de Água (FCA). Pela análise dessas FCAs, observou-se que as amostras de agregados de solo apresentaram um sistema poroso de maior complexidade; e que a variação da granulometria do solo arenoso está diretamente relacionada às modificações de suas propriedades de retenção de água. Finalmente, a variação na densidade dos agregados investigados não alterou significativamente o comportamento das curvas de retenção na faixa de tensões estudadas.

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The estimation of non available soil variables through the knowledge of other related measured variables can be achieved through pedotransfer functions (PTF) mainly saving time and reducing cost. Great differences among soils, however, can yield non desirable results when applying this method. This study discusses the application of developed PTFs by several authors using a variety of soils of different characteristics, to evaluate soil water contents of two Brazilian lowland soils. Comparisons are made between PTF evaluated data and field measured data, using statistical and geostatistical tools, like mean error, root mean square error, semivariogram, cross-validation, and regression coefficient. The eight tested PTFs to evaluate gravimetric soil water contents (Ug) at the tensions of 33 kPa and 1,500 kPa presented a tendency to overestimate Ug 33 kPa and underestimate Ug1,500 kPa. The PTFs were ranked according to their performance and also with respect to their potential in describing the structure of the spatial variability of the set of measured values. Although none of the PTFs have changed the distribution pattern of the data, all resulted in mean and variance statistically different from those observed for all measured values. The PTFs that presented the best predictive values of Ug33 kPa and Ug1,500 kPa were not the same that had the best performance to reproduce the structure of spatial variability of these variables.

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A influência do manejo ou a adição de contaminante ao solo, normalmente, induz uma resposta mais rápida sobre a mesofauna do solo do que em outros atributos pedológicos, o que torna esses organismos bons indicadores de qualidade ambiental. Os objetivos deste trabalho foram identificar e quantificar os grupos de organismos da mesofauna dos solos e determinar os teores de Pb e Zn de plantas da área de mineração e metalurgia de Pb, no município de Adrianópolis (PR), de modo que fossem gerados indicadores biológicos da qualidade desses solos. Os solos selecionados apresentaram as seguintes características em relação às formas de contaminação: solo 1 - referência (mata nativa); solo 2 - resíduos incorporados ao perfil; solos 3 e 6 - próximos às chaminés da fábrica, com potencial de aporte de material particulado; e solo 5 - grande volume de rejeitos sobre o solo. Foram utilizados funis de Berlese, coletando-se amostras na profundidade de 0 a 5 cm (20 funis x 5 solos x 1 profundidade x 4 épocas = 400 amostras). Após separação da mesofauna, procedeu-se à triagem e identificação dos organismos com o auxílio de lupa. Amostras de formiga foram digeridas com HNO3 concentrado em sistema fechado de micro-ondas, e os teores de Pb e Zn foram determinados por espectroscopia de emissão atômica com plasma indutivamente acoplado (ICP-AES). Plantas da família Poaceae foram coletadas em todos os solos e, após digestão das amostras da parte aérea e da raiz pelo método nítrico-perclórico, determinaram-se os teores de Pb e Zn por ICP-AES. O número total de organismos dos 21 grupos identificados e o Índice de Qualidade Ambiental da Mesofauna não foram bons indicadores do nível de contaminação dos solos por metais pesados. A ocorrência e distribuição de espécies isoladas mostraram-se mais eficientes nesse propósito. A melhor qualidade ambiental do solo 1 (teores naturais de Pb - solo de referência) foi atestada pela maior riqueza de grupos de organismos e ocorrência de representantes dos grupos Pseudoscorpiones, Mollusca e Isopoda apenas nesse solo. Os grupos Aracnídeos e Psocoptera também foram considerados bons indicadores ambientais, com incremento de suas populações nos solos com maiores teores de metais pesados (solos 2, 3 e 5), possivelmente devido à menor ocorrência de organismos competidores/predadores desses grupos. Os teores de metais pesados nos indivíduos do grupo Formicidae tiveram relação direta com os teores de Pb extraídos com HNO3 0,5 mol L-1 no solo. Quanto ao acúmulo de metais pesados nas plantas coletadas na área, com exceção do solo 1, todas as espécies encontravam-se sob efeito fitotóxico para Pb e Zn, o que sugere a proibição de pastejo na área.

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Macroporosity is often used in the determination of soil compaction. Reduced macroporosity can lead to poor drainage, low root aeration and soil degradation. The aim of this study was to develop and test different models to estimate macro and microporosity efficiently, using multiple regression. Ten soils were selected within a large range of textures: sand (Sa) 0.07-0.84; silt 0.03-0.24; clay 0.13-0.78 kg kg-1 and subjected to three compaction levels (three bulk densities, BD). Two models with similar accuracy were selected, with a mean error of about 0.02 m³ m-3 (2 %). The model y = a + b.BD + c.Sa, named model 2, was selected for its simplicity to estimate Macro (Ma), Micro (Mi) or total porosity (TP): Ma = 0.693 - 0.465 BD + 0.212 Sa; Mi = 0.337 + 0.120 BD - 0.294 Sa; TP = 1.030 - 0.345 BD 0.082 Sa; porosity values were expressed in m³ m-3; BD in kg dm-3; and Sa in kg kg-1. The model was tested with 76 datum set of several other authors. An error of about 0.04 m³ m-3 (4 %) was observed. Simulations of variations in BD as a function of Sa are presented for Ma = 0 and Ma = 0.10 (10 %). The macroporosity equation was remodeled to obtain other compaction indexes: a) to simulate maximum bulk density (MBD) as a function of Sa (Equation 11), in agreement with literature data; b) to simulate relative bulk density (RBD) as a function of BD and Sa (Equation 13); c) another model to simulate RBD as a function of Ma and Sa (Equation 16), confirming the independence of this variable in relation to Sa for a fixed value of macroporosity and, also, proving the hypothesis of Hakansson & Lipiec that RBD = 0.87 corresponds approximately to 10 % macroporosity (Ma = 0.10 m³ m-3).

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The practice of land leveling alters the soil surface to create a uniform slope to improve land conditions for the application of all agricultural practices. The aims of this study were to evaluate the impacts of land leveling through the magnitudes, variances and spatial distributions of selected soil physical properties of a lowland area in the State of Rio Grande do Sul, Brazil; the relationships between the magnitude of cuts and/or fills and soil physical properties after the leveling process; and evaluation of the effect of leveling on the spatial distribution of the top of the B horizon in relation to the soil surface. In the 0-0.20 m layer, a 100-point geo-referenced grid covering two taxonomic soil classes was used in assessment of the following soil properties: soil particle density (Pd) and bulk density (Bd); total porosity (Tp), macroporosity (Macro) and microporosity (Micro); available water capacity (AWC); sand, silt, clay, and dispersed clay in water (Disp clay) contents; electrical conductivity (EC); and weighted average diameter of aggregates (WAD). Soil depth to the top of the B horizon was also measured before leveling. The overall effect of leveling on selected soil physical properties was evaluated by paired "t" tests. The effect on the variability of each property was evaluated through the homogeneity of variance test. The thematic maps constructed by kriging or by the inverse of the square of the distances were visually analyzed to evaluate the effect of leveling on the spatial distribution of the properties and of the top of the B horizon in relation to the soil surface. Linear regression models were fitted with the aim of evaluating the relationship between soil properties and the magnitude of cuts and fills. Leveling altered the mean value of several soil properties and the agronomic effect was negative. The mean values of Bd and Disp clay increased and Tp, Macro and Micro, WAD, AWC and EC decreased. Spatial distributions of all soil physical properties changed as a result of leveling and its effect on all soil physical properties occurred in the whole area and not specifically in the cutting or filling areas. In future designs of leveling, we recommend overlaying a cut/fill map on the map of soil depth to the top of the B horizon in order to minimize areas with shallow surface soil after leveling.

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Taking into account the nature of the hydrological processes involved in in situ measurement of Field Capacity (FC), this study proposes a variation of the definition of FC aiming not only at minimizing the inadequacies of its determination, but also at maintaining its original, practical meaning. Analysis of FC data for 22 Brazilian soils and additional FC data from the literature, all measured according to the proposed definition, which is based on a 48-h drainage time after infiltration by shallow ponding, indicates a weak dependency on the amount of infiltrated water, antecedent moisture level, soil morphology, and the level of the groundwater table, but a strong dependency on basic soil properties. The dependence on basic soil properties allowed determination of FC of the 22 soil profiles by pedotransfer functions (PTFs) using the input variables usually adopted in prediction of soil water retention. Among the input variables, soil moisture content θ (6 kPa) had the greatest impact. Indeed, a linear PTF based only on it resulted in an FC with a root mean squared residue less than 0.04 m³ m-3 for most soils individually. Such a PTF proved to be a better FC predictor than the traditional method of using moisture content at an arbitrary suction. Our FC data were compatible with an equivalent and broader USA database found in the literature, mainly for medium-texture soil samples. One reason for differences between FCs of the two data sets of fine-textured soils is due to their different drainage times. Thus, a standardized procedure for in situ determination of FC is recommended.

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Os sedimentos do rio Belém foram removidos, e a destinação incorreta deles pode provocar impactos ambientais e custos adicionais ao município. O objetivo deste trabalho foi avaliar as alternativas de destinação e uso de sedimentos removidos em desassoreamento do rio Belém em área urbana, com base na legislação ambiental brasileira. As avaliações de destinação, ou de uso ou de ambos, foram feitas a partir de uma avaliação química preliminar de contaminantes inorgânicos (Cd, Pb, Cu, Cr, Ni, Ag e Zn) e hidrocarbonetos aromáticos policíclicos (HAP) relacionada às atividades produtivas da região de contribuição do rio Belém. A avaliação das possíveis destinações e, ou, do uso do sedimento seguiu as normas e legislações ambientais brasileiras para diferentes matrizes, o que revelou ser complexa. Uma quantidade substancial de sedimentos pode ser usada para fins úteis, como solo, material de recuperação de áreas contaminadas, material de preenchimento de obras civis. Padrões ambientais específicos devem ser elaborados para discriminar usos e, ou, destinações de acordo com o desenvolvimento científico. Um protocolo de gerenciamento foi proposto, de forma a ser utilizado em futuras obras de desassoreamento.

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O objetivo deste trabalho foi avaliar uma metodologia para estimar a produtividade potencial da cultura do milho de acordo com valores médios diários de temperatura do ar e radiação solar, utilizando procedimento estocástico. Valores registrados da temperatura média diária do ar durante 86 anos e da radiação solar global diária durante 25 anos, foram fornecidos pela Estação Agrometeorológica de Piracicaba (Esalq/USP). Valores correspondentes à produtividade potencial foram simulados 1.000 vezes, em cada data de semeadura considerada (15/10 - época normal; 15/2 - safrinha; e 15/8 - safra de inverno). Foram considerados dois casos na distribuição de probabilidade normal truncada (valores extremos: média - 1,96 desvio-padrão e média + 1,96 desvio-padrão): temperatura média diária variável e radiação solar global diária constante, e temperatura média diária constante e radiação solar global diária variável. A metodologia de estimação permite definir a ordem de grandeza da produtividade potencial de milho a determinada localidade, com base nos dados de temperatura e radiação solar. O procedimento estocástico proposto permite associar a produtividade potencial de milho a determinada probabilidade.

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The objective of this work was to investigate the relationship between changes in the plant community and changes in soil physical properties and water availability, during a succession from alfalfa (Medicago sativa L.) to natural vegetation on the Loess Plateau, China. Data from a succession sere spanning 32 years were collated, and vegetative indexes were compared to changes related to soil bulk density and soil water storage. The alfalfa yield increased for approximately 7 years, then it declined and the alfalfa was replaced by a natural community dominated by Stipa bungeana that began to thrive about 10 years after alfalfa seeding. Soil bulk density increased over time, but the deterioration of the alfalfa was mainly ascribed to a severe reduction in soil water storage, which was lowest around the time when degradation commenced. The results indicated that water consumption by alfalfa could be reduced by reducing plant density. The analysis of the data also suggested that soil water recharge could be facilitated by rotating the alfalfa with other crops, natural vegetation, or bare soil.