918 resultados para Cultures in contact
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Os parasitos do gênero Leishmania apresentam variações de infectividade intra e inter específicas. Entretanto, são escassas as informações a respeito da infectividade das espécies de Leishmania do Novo Mundo, principalmente, daquelas encontradas na região Amazônica brasileira, onde, até o presente momento são conhecidas seis espécies pertencentes ao subgênero Viannia causadoras de LTA. Diante disso, o objetivo do presente trabalho foi investigar, in vitro, o comportamento da infectividade de 5 espécies de Leishmania do subgênero Viannia em macrófagos peritoneais de camundongos BALB/c e sua correlação com a produção de óxido nítrico pelos macrófagos infectados. Trinta cepas de Leishmania foram distribuídas em seis grupos iguais, de acordo com as espécies seguintes: I- L. (V) braziliensis/LCL, II- L. (V) braziliensis/LCM, III- L. (V) guyanensis, IV- L. (V) shawi, V -L. (V) naiffi e VI- L. (V) lainsoni. As cepas foram cultivadas em meio RPMI suplementado com 10% de soro bovino fetal e 1% de penicilina-gentamicina, até atingir a fase estacionária de cultivo, quando foram usadas para infectar macrófagos na proporção de 4 parasitos/macrófago. As culturas foram incubadas a 35°C e 5% de CO2 e após 24h, as lamínulas foram coradas com Giemsa para contagem do número de parasitos e determinação do índice de infecção, enquanto a concentração de NO (nitrito) foi calculada pelo método de Griess. Observou-se que as cepas de L. (V) braziliensis/LCM apresentaram o maior índice de infecção (385), sendo este significativamente maior (P<0,005) que as cepas de L. (V) braziliensis/LCL (264), L. (V) naiffi (215) e L. (V) lainsoni (272), porém, não significativamente maior que os índices das espécies L. (V) shawi (292) e L. (V) guyanensis (300). Quanto aos níveis de NO (nitrito), detectou-se maior concentração para a espécie L. (V) naiffi (4,1µM e menor concentração para as cepas de L. (V) braziliensis/LCM (2,15µM). As demais espécies tiveram concentrações de: L. (v:) lainsom (3,14µM), L. (V) shawi (2,96µM), L. (V) guyanensis (2,76µM) e cepas de L. (V) braziliensis/LCL (3,1µM). Diante do exposto, concluímos que cepas de L. (V) braziliensis/LCM são mais infectivas do que as demais espécies estudadas e, também, mais infectivas que cepas homólogas isoladas de casos clínicos de LCL. Além disso, observou-se menor infectividade da espécie L. (V) naiffi. Desse modo, notou-se que os níveis de NO produzidos pelos macrófagos infectados foram inversamente proporcionais ao grau do parasitismo.
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Pós-graduação em Biopatologia Bucal - ICT
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Pós-graduação em Biopatologia Bucal - ICT
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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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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This work reports the study of an attractive interfacial wave for application in ultrasonic NDE techniques for inspection and fluid characterization. This wave, called quasi-Scholte mode, is a kind of flexural wave in a plate in contact with a fluid which presents a good sensitivity to the fluid properties. In order to explore this feature, the phase velocity curve of quasi-Scholte mode is experimentally measured in a plate in contact with a viscous fluid, showing a good agreement with theory.
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The bee Apis mellifera has a great importance because it is the most economically valuable pollinator for crops worldwide, ensuring cross-pollination and increasing fruit yield. Moreover, agriculture increasingly develops chemicals to control weeds, fungi and insect pests to ensure productivity. Insecticides are used on a large scale in the state of São Paulo, in cultures of citrus for control of greening. Applications are usually made by aircraft and as a result of the effect derives a significant mortality is observed in apiaries near the plantations. Honey bees can get in contact with such chemical agent through their activities of water harvesting, plant resins, pollen and nectar. Intoxication resulting from this exposure can be lethal, which is easily detectable, or cause effects on the physiology and behavior of the insect. These, in turn are hardly detectable, such as paralysis, disorientation, behavioral changes, but can compromise the entire social structure of the colony, therefore aimed to study the effects of the insecticide Thiamethoxam behavior of honeybees A. mellifera. Newly emerged individuals and with 10 days of age were tested. Applications of 1 μL de Thiamethoxam, diluted in acetone, were made on the dorsal thorax with a microapplicator. Preliminarily, it was observed LD50 twenty four hours after topical treatment of Thiamethoxam. It was found that the LD50 for newly emerged honeybees is 8 ng/bee and for honeybees with 10 days of age is 18 ng/bee. The behaviors were analyzed 1 hour after application of insecticide at doses corresponding to LD50/100, LD50/50, LD50/10 and LD50, besides the control group. In the test reflex proboscis extension, there was impairment of behavior at doses of 8 and 18 ng/bee workers in newly emerged workers and 10 days of age, respectively. And in locomotor behavior was no change only at a dose of 18 ng/bee workers at 10 days of age... (Complete abstract click electronic access below)
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This study evaluated the effect of physical and chemical activation on the speed of penetration of hydrogen peroxide bleaching agents present in different concentrations through the enamel and dentin. One hundred and twenty bovine incisors were used, which were obtained enamel/dentin discs of the buccal surface, with 6 mm in diameter. The samples were divided into six groups: G1 - Hydrogen Peroxide Gel 20%, G2 - Hydrogen Peroxide Gel 20% with light activation, G3 - Hydrogen Peroxide Gel 20% with Manganese Gluconate; G4 - Hydrogen Peroxide Gel 35%; G5 - Hydrogen Peroxide Gel 35% with the light activation and G6 - Hydrogen Peroxide Gel 35% with Manganese Gluconate. The specimens were placed in a transparent support on which there was a substance sensitive to hydrogen peroxide immediately below and in contact with the specimen. After the procedures for applying the gel for each group, one video camera was positioned and operated to monitor the time of penetration of peroxide in each specimen. The recording ended after changing the color of the fluid revealed in all specimens and times were noted for comparison. ANOVA analysis showed that concentration and type of activation of bleaching gel significantly influenced the diffusion time of hydrogen peroxide (P 0.05). 35% hydrogen peroxide showed the lowest diffusion times compared to the groups with 20% hydrogen peroxide gel. The light activation of hydrogen peroxide decrease significantly the diffusion time compared to chemical activation. The highest diffusion time was obtained with 20% hydrogen peroxide chemically activated. The diffusion time of hydrogen peroxide was dependent on activation and concentration of hydrogen peroxide. The higher concentration of hydrogen peroxide diffused through dental tissues more quickly
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Compounds released into the environment can induce genetic alterations in living organisms. A group of chemicals that shows proven toxicity is the pesticides, and the insecticides are the most harmful. The insecticides of the family phenylpyrazole have wide application both in agriculture and in homes. Fipronil, an insecticide of this chemical group, is widely used in various cultures and in homes, mainly for fighting fleas and ticks on dogs and cats. The use of fipronil may represent a risk to man and the environmental health, since this pesticide can potentially induce cell death, regardless of cell type. Fipronil, when in contact with the environment, can undergo various degradation processes, including photodegradation. The toxic effect of one of its metabolites derived from photodegradation, sulfone-fipronil, is approximately 20 fold as great as fipronil itself. The A. cepa test system was used to evaluate cytotoxic, genotoxicity and mutagenic effects of fipronil before and after phptodegradation. Seeds of Allium cepa were subjected to solutions of fipronil, pre-exposed or not exposed to degradation by sunlight. The germination tests were conducted both under the effect of light and in the dark. We evaluated the cumulative potential of this insecticide using 48 and 72-hours recovery tests. The results showed that when fipronil was previously exposed to the sun, it presented a greater genotoxic and mutagenic potential, showing that the metabolites formed by photodegradation can show more harmfull effects
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)