943 resultados para PATHOGENIC PROTOZOAN PARASITES


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Anguilla australis glass eels proved to be resilient and present strong aquaculture potential. General husbandry techniques, anaesthesia and prophylactic treatments were established for glass eels between 0.1 g and 2.0 g and elvers between 2.0 g and 8.0 g, caught in rivers and estuaries along the South East Coast of Victoria. The protozoan parasites Ichthyobodo and Trichodina were found to be present on arrival to the hatchery developed during different rearing treatments, and were successfully eradicated. A. australis glass eels accepted artificial food, but it was recommended first be fed a preweaning diet of minced fish flesh. A weaning regime from minced fish flesh to commercially available eel grower mash, over 15 days was established. Growth rate proved to be highly variable, both between and within groups. The highest growth rate of 2.71%/day was found when the natural diet of minced fish and Artemia was fed. The maximum growth rate when reared on an artificial diet of 1.63%/day was observed at 25°C. Growth was affected by the presence or absence of a preweaning diet, weaning diet, weaning period, temperature, but not by size or density. Once weaned, glass eels were found to perform better on commercially available grower mash than on the minced fish flesh, which was used to aid in weaning them to artificial diets. Of the water quality parameters measured stocking density was found to affect pH, Total Ammonia Nitrogen, Total Phosphorus, and Dissolved Oxygen, through not to an extent which affected growth.

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The present work studied protozoan parasites of cultivated fishes (N = 433) from two feefishing farm situated in Franca, São Paulo, Brazil, during a period of April 1997 through March 1999. Specimens of piauçú Leporinus macrocephalus Garavello & Britski, 1988 (Anostomidae), pacu Piaractus mesopotamicus Holmberg, 1887 (Characidae) carp Cyprinus carpio Linnaeus, 1758 (Cyprinidae), Tillapia rendalli Boulenger, 1896 (Cichlidae), nile-tilapia Oreochromis niloticus Linnaeus, 1758 (Cichlidae), matrinxã Brycon cephalus Günther, 1869 (Characidae) and tambacu hybrid (male of P. mesopotamicus x female of Colossoma macropomum Cuvier, 1818) were collected. The fishes were parasitized with protozoans Ichthyophthirius multifiliis Fouquet, 1876 (Protozoa), Trichodina sp. and Piscinoodinium pillulare (Schaperclaus, 1954), Lom, 1981 (Protozoa). In the cold season (autumn and/or winter) all species of fish were infected with I. multifiliis. Higher susceptibility to Trichodina sp. was observed in L. macrocephalus, C. carpio and P. mesopotamicus compared to tambacu, B. cephalus, T. rendalli and 0. niloticus. It was not observed significant difference (P > 0.05) in the seasonal variation of Trichodina sp. and P. pillulare infection of all species. A great number of P. pillulare without significant difference (P > 0.05) was reported to L. macrocephalus, P. mesopotamicus and tambacu.

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

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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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A Leishmaniose é uma doença infecciosa causada por várias espécies de parasitas do gênero Leishmania. A quimioterapia é o único tratamento efetivo para a doença, mas essas drogas são, em geral, tóxicas e requer um longo período de tratamento. Produtos naturais provenientes de plantas oferecem novas perspectivas e representam uma importante fonte de novos agentes leishmanicidas. Assim, é de grande importância avaliar os efeitos do extrato aquoso da raiz de Physalis angulata, planta amplamente utilizada pela medicina popular, em formas promastigotas e amastigotas de Leishmania (Leishmania) amazonensis e sua ação sobre a célula hospedeira. As fisalinas D, E, F e G foram demonstradas pela primeira vez na raiz de P. angulata pela análise cromatográfica. Uma atividade antiproliferativa e uma inibição dose dependente de promastigotas 74,1% e 99,8 % (IC50 35,5 μg/mL) e amastigotas 70,6% e 70,9% (IC50 32.0 μg/mL) foram observadas quando os parasitas foram tratados com 50 e 100 μg/mL do extrato, respectivamente. A análise da atividade microbicida da célula hospedeira infectada com L. amazonensis mostrou que extrato foi capaz de reverter o efeito causado pelo parasito de inibir a produção de espécies reativas de oxigênio. O tratamento com o extrato também induziu alterações morfológicas importantes em formas promastigotas avaliadas por microscopia óptica, microscopia eletrônica de transmissão e varredura. Foram observadas alterações na morfologia, na divisão celular, principalmente na fase de citocinese, na membrana flagelar, na bolsa flagelar e alterações em organelas importantes, como o cinetoplasto, onde ocorreu duplicação irregular e alteração do seu tamanho. Já por citometria de fluxo foi possível confirmar que o tratamento induziu uma exposição de fosfatidilserina e diminuição no volume celular de promastigotas tratadas. Com relação à célula hospedeira, o extrato promoveu alterações no citoesqueleto, o aumento número de projeções citoplasmáticas, do volume celular e de vacúolos e da habilidade de espraiamento sem causar efeito citotóxico ou alteração ultraestrutural em macrófagos tratados com o extrato. Assim, estes resultados demonstram que o extrato aquoso da raiz de P. angulata foi eficaz na ativação da célula hospedeira e na inibição do crescimento do protozoário, o que representa uma fonte alternativa e promissora de agente leishmanicida.

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Para determinar a ocorrência de anticorpos IgG anti-Neospora caninum e Toxoplasma gondii em 14 unidades produtivas de búfalos, situadas em 13 municípios no estado do Pará, foram coletadas amostras de soro sanguíneo de 374 fêmeas adultas. Os soros foram submetidos à reação de imunofluorescência indireta (RIFI), utilizando-se os títulos 200 e 64, respectivamente como ponto de corte para N. caninum e T. gondii. Obteve-se 153 (40,9%) de animais soropositivos para N. caninum com 100% das propriedades com focos da infecção, enquanto que quatro búfalas (1,1%) foram soropositivas em quatro fazendas para T. gondii e uma búfala (0,27%) foi soropositiva para ambos parasitos. A presença de anticorpos é um indicativo da circulação desses protozoários em búfalos das propriedades estudadas, representando uma fonte de infecção para outros animais, assim como o possível envolvimento em distúrbios reprodutivos nessa espécie.

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Com o objetivo de verificar a ocorrência de búfalas sororreagentes para Neospora caninum e Toxoplasma gondii em 15 unidades produtivas localizadas em 14 municípios do estado do Pará, foram coletados amostras de soro sanguíneo de 401 búfalas. Os soros foram submetidos à Reação de Imunofluorescência indireta (RIFI), utilizando as diluições 1:200 e 1:64 como ponto de corte para N. caninum e T. gondii, respectivamente, e um teste de ELISA indireto para detectar anticorpos anti- N. caninum. Foram testadas 374 amostras para anticorpos IgG anti-N. caninum, enquanto que, 401 amostras foram analisadas para detectar a presença de anticorpos IgG anti-T. gondii, utilizando-se a RIFI como método diagnóstico contra ambos os protozoários. Em outra verificação, 315 amostras foram testadas através do ELISA indireto, para verificar a presença de anticorpos IgG anti-N. caninum. Dentre os soros das búfalas testados, 153 (40,91%) foram reagentes (≥ 1:200) para N. caninum, e quatro animais (1%) reagiram (≥ 1:64) contra T. gondii, e uma búfala (0,27%) foi reagente aos dois protozoários na RIFI. No ELISA, 53 búfalas (16,82%) foram reagentes. A alta ocorrência de anticorpos IgG anti-N. caninum demonstra que o parasito pode esta circulando entre búfalas criadas no estado do Pará, quanto a presença de anticorpos IgG anti-T. gondii, mesmo apresentando uma baixa ocorrência, este parasita também pode estar presente nas propriedades criadoras de bubalinos no estado do Pará, demonstrando que ambos os protozoário podem representar um risco para a saúde pública e uma fonte de infecção para outros animais, assim como um possível causador de enfermidades reprodutivas nesta espécie.

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Pós-graduação em Biotecnologia - IQ

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The Sarcocystis genus includes obligatory two-host life cycle protozoan parasites. It is the most numerous of the six genera of the Sarcocystidae family. The infection caused by parasites of this genus is a zoonotic and cosmopolitan disease known as sarcosistosis or sarcosporidiosis. The sarcositosis though frequently asymptomatic in its definitive hosts can be fatal in its intermediate hosts. The usual diagnoses of sarcosistosis takes place through a histological demonstration of schizonts in blood vessels and organs, and the presence of cysts in muscle tissue by necropsy or biopsy, this second method still more common and based on morphological features of the sarcocyst. However, these methods can be inadequate to a precise identification of the infector species once that, besides the genus being of numerous species, these often present similar morphological features. Another factor that makes the diagnostic more difficult is the non specificity of some Sacocystis species to their hosts. Consequently, molecular diagnostic methods have been used in order to identify the infector species and the parasite specific biological cycles, demonstrating also new species and coevolutive aspects between parasite and host. Among the most employed molecular techniques the Polimerase Chain Reaction (PCR), the nested-PCR and the Restriction Fragment Length Polymorphism (RFLP) stands out

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Toxoplasmosis and leishmaniasis are two worldwide zoonoses caused by the protozoan parasites Toxoplasma gondii and Leishmania spp., respectively. This report describes the clinical and laboratorial findings of a co-infection with both parasites in a 4-year-old female dog suspected of ehrlichiosis that presented anemia, thrombocytopenia, hypoalbuminemia, hyperglobulinemia, tachyzoite-like structures to the lung imprints, and polymerase chain reaction (PCR) results positive for T. gondii (kidney, lung, and liver) and Leishmania spp. Co-infection with Toxoplasma gondii and Leishmania braziliensis was confirmed by sequencing; restriction fragment length polymorphism-polymerase chain reaction (RFLP-PCR) confirmed an atypical T. gondii genotype circulating in dogs that has been reported to cause human congenital toxoplasmosis.

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

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Protozoan parasites cause thousands of deaths each year in developing countries. The genome projects of these parasites opened a new era in the identification of therapeutic targets. However, the putative function could be predicted for fewer than half of the protein-coding genes. In this work, all Trypanosoma cruzi proteins containing predicted transmembrane spans were processed through an automated computational routine and further analyzed in order to assign the most probable function. The analysis consisted of dissecting the whole predicted protein in different regions. More than 5,000 sequences were processed, and the predicted biological functions were grouped into 19 categories according to the hits obtained after analysis. One focus of interest, due to the scarce information available on trypanosomatids, is the proteins involved in signal-transduction processes. In the present work, we identified 54 proteins belonging to this group, which were individually analyzed. The results show that by means of a simple pipeline it was possible to attribute probable functions to sequences annotated as coding for "hypothetical proteins.'' Also, we successfully identified the majority of candidates participating in the signal-transduction pathways in T. cruzi.

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Coccidiosis of the domestic fowl is a worldwide disease caused by seven species of protozoan parasites of the genus Eimeria. The genome of the model species, Eimeria tenella, presents a complexity of 55-60 MB distributed in 14 chromosomes. Relatively few studies have been undertaken to unravel the complexity of the transcriptome of Eimeria parasites. We report here the generation of more than 45,000 open reading frame expressed sequence tag (ORESTES) cDNA reads of E. tenella, Eimeria maxima and Eimeria acervulina, covering several developmental stages: unsporulated oocysts, sporoblastic oocysts, sporulated oocysts, sporozoites and second generation merozoites. All reads were assembled to constitute gene indices and submitted to a comprehensive functional annotation pipeline. In the case of E. tenella, we also incorporated publicly available ESTs to generate an integrated body of information. Orthology analyses have identified genes conserved across different apicomplexan parasites, as well as genes restricted to the genus Eimeria. Digital expression profiles obtained from ORESTES/EST countings, submitted to clustering analyses, revealed a high conservation pattern across the three Eimeria spp. Distance trees showed that unsporulated and sporoblastic oocysts constitute a distinct clade in all species, with sporulated oocysts forming a more external branch. This latter stage also shows a close relationship with sporozoites, whereas first and second generation merozoites are more closely related to each other than to sporozoites. The profiles were unambiguously associated with the distinct developmental stages and strongly correlated with the order of the stages in the parasite life cycle. Finally, we present The Eimeria Transcript Database (http://www.coccidia.icb.usp.br/eimeriatdb), a website that provides open access to all sequencing data, annotation and comparative analysis. We expect this repository to represent a useful resource to the Eimeria scientific community, helping to define potential candidates for the development of new strategies to control coccidiosis of the domestic fowl. (C) 2011 Australian Society for Parasitology Inc. Published by Elsevier Ltd. All rights reserved.

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Abstract Background Hypoxanthine-guanine phosphoribosyltransferase (HGPRT) (EC 2.4.2.8) is a central enzyme in the purine recycling pathway. Parasitic protozoa of the order Kinetoplastida cannot synthesize purines de novo and use the salvage pathway to synthesize purine bases, making this an attractive target for antiparasitic drug design. Results The glycosomal HGPRT from Leishmania tarentolae in a catalytically active form purified and co-crystallized with a guanosine monophosphate (GMP) in the active site. The dimeric structure of HGPRT has been solved by molecular replacement and refined against data extending to 2.1 Å resolution. The structure reveals the contacts of the active site residues with GMP. Conclusion Comparative analysis of the active sites of Leishmania and human HGPRT revealed subtle differences in the position of the ligand and its interaction with the active site residues, which could be responsible for the different reactivities of the enzymes to allopurinol reported in the literature. The solution and analysis of the structure of Leishmania HGPRT may contribute to further investigations leading to a full understanding of this important enzyme family in protozoan parasites.