966 resultados para Tuberculosis in animals.


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The physiological control to support the absence of O2 for long periods of diving, and oxidative damage impact caused by the whole process of hypoxia/reperfusion in freshwater turtles is well known. However, effects of contaminants may act as co-varying stressors and cause biological damage, disrupting the hypoxia/reperfusion oxidative damage control. In order to investigate the action of environmental stressors present in domestic or industrial wastewater effluent, we performed a biochemical analysis of biotransformation enzymes, oxidative stress, as well as neuromuscular, physiological and morphological parameters in Phrynops geoffroanus, an hypoxic-tolerant freshwater turtle endemic of South America, using animals sampled in urban area, contaminated by sewage and industrial effluents and animals sampled in control area. Here we demonstrate the physiological and biochemical impact caused by pollution, and the effect that these changes cause in antioxidant activity. Animals from the urban area exhibited higher EROD (ethoxyresorufin-O-deethylase, CYP1A1), GST (glutathione S-transferase), G6PDH (glucose-6-phosphate deshydrogenase), AChE (acetilcholinesterase) activities and also TEAC (trolox-equivalent antioxidant capacity) and TBARS (thiobarbituric acid reactive substances) values. We examined whether two morphometric indices (K - condition factor and HIS - hepatosomatic index) which help in assessing the general condition and possible liver disease, respectively, were modified. The K of the urban animals was significantly decreased compared to the control animals, but the HIS value was increased in animals from the urban area, supporting the idea of an impact in physiology and life quality in the urban freshwater turtles. We propose that this freshwater turtle specie have the ability to enhance its antioxidants defenses in order to protect from tissue damage caused by hypoxia and reperfusion, but also that caused by environmental contamination and that the oxidative damage control in hypoxic conditions has resulted in an adaptive condition in hypoxic-tolerant freshwater turtle species, in order to better tolerate the release of contaminated effluents resulting from human activity. © 2013 Elsevier Inc.

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Neural plasticity has been observed in the bed nucleus of the stria terminalis (BNST) following exposure to both cocaine and androgenic-anabolic steroids. Here we investigated the involvement of the BNST on changes in cardiovascular function and baroreflex activity following either single or combined administration of cocaine and testosterone for 10 consecutive days in rats. Single administration of testosterone increased values of arterial pressure, evoked rest bradycardia and reduced baroreflex-mediated bradycardia. These effects of testosterone were not affected by BNST inactivation caused by local bilateral microinjections of the nonselective synaptic blocker CoCl2. The single administration of cocaine as well as the combined treatment with testosterone and cocaine increased both bradycardiac and tachycardiac responses of the baroreflex. Cocaine-evoked baroreflex changes were totally reversed after BNST inactivation. However, BNST inhibition in animals subjected to combined treatment with cocaine and testosterone reversed only the increase in reflex tachycardia, whereas facilitation of reflex bradycardia was not affected by local BNST treatment with CoCl2. In conclusion, the present study provides the first direct evidence that the BNST play a role in cardiovascular changes associated with drug abuse. Our findings suggest that alterations in cardiovascular function following subchronic exposure to cocaine are mediated by neural plasticity in the BNST. The single treatment with cocaine and the combined administration of testosterone and cocaine had similar effects on baroreflex activity, however the association with testosterone inhibited cocaine-induced changes in the BNST control of reflex bradycardia. Testosterone-induced cardiovascular changes seem to be independent of the BNST. © 2013 IBRO.

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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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Pós-graduação em Biociências e Biotecnologia Aplicadas à Farmácia - FCFAR

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

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

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ABSTRACT: Rocio virus (ROCV) is an encephalitic flavivirus endemic to Brazil. Experimental flavivirus infections have previously demonstrated a persistent infection and, in this study, we investigated the persistence of ROCV infection in golden hamsters (Mesocricetus auratus). The hamsters were infected intraperitoneally with 9.8 LD50/0.02 mL of ROCV and later anaesthetised and sacrificed at various time points over a 120-day period to collect of blood, urine and organ samples. The viral titres were quantified by real-time-polymerase chain reaction (qRT-PCR). The specimens were used to infect Vero cells and ROCV antigens in the cells were detected by immunefluorescence assay. The levels of antibodies were determined by the haemagglutination inhibition technique. A histopathological examination was performed on the tissues by staining with haematoxylin-eosin and detecting viral antigens by immunohistochemistry (IHC). ROCV induced a strong immune response and was pathogenic in hamsters through neuroinvasion. ROCV was recovered from Vero cells exposed to samples from the viscera, brain, blood, serum and urine and was detected by qRT-PCR in the brain, liver and blood for three months after infection. ROCV induced histopathological changes and the expression of viral antigens, which were detected by IHC in the liver, kidney, lung and brain up to four months after infection. These findings show that ROCV is pathogenic to golden hamsters and has the capacity to cause persistent infection in animals after intraperitoneal infection.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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O paracetamol (PAR) é um dos medicamentos de venda livre mais utilizado em todo o mundo. Entretanto, doses elevadas do PAR produzem toxicidade hepática e/ou renal. No intuito de minimizar a toxicidade do PAR e obter melhor atividade analgésica e anti-inflamatória, um estudo prévio realizou modificações na estrutura química do PAR por modelagem molecular, dando origem ao ortobenzamol (OBZ) – análogo do PAR. Assim, o OBZ foi sintetizado e avaliado em modelos de nocicepção e inflamação em animais. O estudo demonstrou atividade analgésica central do OBZ, com potência superior ao PAR. Além disso, nos testes de inflamação, essa droga apresentou inibição significativa no processo inflamatório. Entretanto, para que o OBZ possa ser considerado uma alternativa terapêutica nova e importante para o tratamento da dor e/ou da inflamação é necessário determinar sua toxicidade. Assim, este estudo objetivou avaliar a toxicidade in vitro e in vivo do OBZ e, compará-la com a do PAR. Para isso, a neurotoxicidade foi avaliada in vitro em culturas primárias de neurônios corticais, através de ensaios de viabilidade celular, determinação dos níveis de glutationa total e reduzida, assim como a possível capacidade neuroprotetora frente ao estresse oxidativo. Foram realizados estudos in vivo em camundongos, iniciados pela determinação da dose efetiva mediana (DE50) do PAR, a fim de compará-la com a do OBZ nos modelos de toxicidade estudados. Determinou-se o estresse oxidativo hepático e cerebral pela análise dos níveis de peroxidação lipídica e nitritos. A possível disfunção hepática e renal foi determinada, por meio da análise dos níveis plasmáticos das enzimas aspartato aminotransferase (AST), de alanina aminotransferase (ALT), gama glutamiltransferase (GGT) e, da creatinina no sangue. Avaliaram-se alterações nos parâmetros clínicos através do hemograma, leucograma e plaquetograma e, realizou-se a determinação da toxicidade aguda. Os resultados obtidos neste estudo demonstraram que o ortobenzamol é mais seguro que o paracetamol. Registrou-se ao ortobenzamol ausência de neurotoxicidade, menor potencial hepatotóxico e hematotóxico, ausência de nefrotoxicidade e, ainda, foi classificado como um xenobiótico de baixa toxicidade após a avaliação da toxicidade aguda. Portanto, o ortobenzamol pode ser considerado como uma futura alternativa terapêutica segura ao paracetamol, no tratamento da dor e inflamação.

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