860 resultados para Trypanosoma (Dutonella) vivax


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A doença de Chagas, causada pelo protozoário flagelado Trypanosoma cruzi, foi descrita pelo pesquisador brasileiro Carlos Chagas em 1909. É transmitida ao homem por insetos hemípteros conhecidos como barbeiros dos quais os gêneros mais importantes são Panstrongylus, Rhodnius e Triatoma. Essa zoonose representa um risco para aproximadamente 20 milhões de pessoas em todo o mundo, principalmente na América Latina. Para tentar explicar as diferentes manifestações observadas na doença de Chagas, vários estudos foram realizados com intuito de averiguar as possíveis correlações entre as formas clínicas com a variabilidade genética do parasito. Algumas hipóteses estão relacionadas provavelmente ao fato de a doença ser um processo multifatorial, em que tanto aspectos do parasito como do hospedeiro estão inter-relacionados ou ainda a escolha inadequada de alvos como marcadores de patogenicidade na tentativa de estabelecer a correlação entre as formas clínicas e a variabilidade genética do parasito. Com o intuito de contribuir para ampliar o conhecimento sobre as populações de T. cruzi, foi realizada a cinética de crescimento em meio LIT e o estudo genotípico de seis cepas de T. cruzi isoladas de exemplares de R. montenegrensis, T. rubrovaria e T. sordida por meio de marcadores genotípicos utilizando as sequência dos genes 24Sα do DNA ribossomal, HSP60 e GPI.

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A doença de Chagas, conhecida também como tripanossomíase americana, foi descrita por Carlos Ribeiro Justiniano das Chagas em 1909 em Lassance, Minas Gerais. Ela é causada pelo protozoário Trypanosoma cruzi e transmitido ao homem por insetos hemípteros conhecidos como barbeiros dos quais os gêneros mais importantes são Panstrongylus, Rhodinus e Triatoma. Essa zoonose atinge aproximadamente 10 milhões de pessoas em todo o mundo, principalmente na América Latina. Sabe-se que esse parasito apresenta grande variabilidade intraespecífica evidenciada por diferenças na patologia, virulência, constituição antigênica e habilidade de evasão à resposta imunológica e essa diversidade pode estar associada à sua adaptação e sobrevivência em diferentes hospedeiros. A diversidade patogênica, imunológica e morfológica inerente a esse flagelado dependem de fatores ainda indeterminados, como variação regional e individual da doença humana em infecções naturais e experimentais. Com o intuito de contribuir para ampliar o conhecimento sobre as populações de T. cruzi, propõe-se o estudo biológico, morfológico e molecular de duas cepas isoladas dos exemplares, Triatoma sordida (SI7) e Triatoma rubrovaria (QMM12) por Rosa et al. 2004; 2008 coletados nos Estados da Bahia e Rio Grande do Sul, respectivamente.

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

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Interferon-γ (IFN-γ) contributes to host resistance during acute infection with Trypanosoma cruzi, the causative agent of Chagas’ disease. Inducibly expressed guanosine triphosphatase (IGTP), a 48-kDa guanosine triphosphatase (GTPase), is a member of a family of GTPase proteins inducibly expressed by IFN-γ. The expression pattern of IGTP suggests that it may mediate IFN-γ–induced responses in a variety of cell types. IGTP has been demonstrated to be important for control of Toxoplasma gondii infection but not for resistance against Listeria monocytogenes. We evaluated the role of IGTP in development of chronic chagasic cardiomyopathy in IGTP null mice and C57X129sv (wild type [WT]) mice infected with the Brazil strain for 6 mo. There was no significant difference in parasitemia or cardiac histopathology between null and WT mice. Right ventricular remodeling was observed in infected IGTP null mice, suggesting that IGTP does not significantly alter the course of T. cruzi infection.

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A doença de Chagas, causada pelo protozoário flagelado Trypanosoma cruzi, foi descrita pelo pesquisador brasileiro Carlos Chagas em 1909. É transmitida ao homem por insetos hemípteros conhecidos como barbeiros dos quais os gêneros mais importantes são Panstrongylus, Rhodnius e Triatoma. Essa zoonose representa um risco para aproximadamente 20 milhões de pessoas em todo o mundo, principalmente na América Latina. Para tentar explicar as diferentes manifestações observadas na doença de Chagas, vários estudos foram realizados com intuito de averiguar as possíveis correlações entre as formas clínicas com a variabilidade genética do parasito. Algumas hipóteses estão relacionadas provavelmente ao fato de a doença ser um processo multifatorial, em que tanto aspectos do parasito como do hospedeiro estão inter-relacionados ou ainda a escolha inadequada de alvos como marcadores de patogenicidade na tentativa de estabelecer a correlação entre as formas clínicas e a variabilidade genética do parasito. Com o intuito de contribuir para ampliar o conhecimento sobre as populações de T. cruzi, foi realizada a cinética de crescimento em meio LIT e o estudo genotípico de seis cepas de T. cruzi isoladas de exemplares de R. montenegrensis, T. rubrovaria e T. sordida por meio de marcadores genotípicos utilizando as sequência dos genes 24Sα do DNA ribossomal, HSP60 e GPI.

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A doença de Chagas, conhecida também como tripanossomíase americana, foi descrita por Carlos Ribeiro Justiniano das Chagas em 1909 em Lassance, Minas Gerais. Ela é causada pelo protozoário Trypanosoma cruzi e transmitido ao homem por insetos hemípteros conhecidos como barbeiros dos quais os gêneros mais importantes são Panstrongylus, Rhodinus e Triatoma. Essa zoonose atinge aproximadamente 10 milhões de pessoas em todo o mundo, principalmente na América Latina. Sabe-se que esse parasito apresenta grande variabilidade intraespecífica evidenciada por diferenças na patologia, virulência, constituição antigênica e habilidade de evasão à resposta imunológica e essa diversidade pode estar associada à sua adaptação e sobrevivência em diferentes hospedeiros. A diversidade patogênica, imunológica e morfológica inerente a esse flagelado dependem de fatores ainda indeterminados, como variação regional e individual da doença humana em infecções naturais e experimentais. Com o intuito de contribuir para ampliar o conhecimento sobre as populações de T. cruzi, propõe-se o estudo biológico, morfológico e molecular de duas cepas isoladas dos exemplares, Triatoma sordida (SI7) e Triatoma rubrovaria (QMM12) por Rosa et al. 2004; 2008 coletados nos Estados da Bahia e Rio Grande do Sul, respectivamente.

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

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Objective To investigate risk factors associated with the acquisition of antibodies against Plasmodium vivax Duffy binding protein (PvDBP) a leading malaria vaccine candidate in a well-consolidated agricultural settlement of the Brazilian Amazon Region and to determine the sequence diversity of the PvDBP ligand domain (DBPII) within the local malaria parasite population. Methods Demographic, epidemiological and clinical data were collected from 541 volunteers using a structured questionnaire. Malaria parasites were detected by conventional microscopy and PCR, and blood collection was used for antibody assays and molecular characterisation of DBPII. Results The frequency of malaria infection was 7% (6% for P. vivax and 1% for P. falciparum), with malaria cases clustered near mosquito breeding sites. Nearly 50% of settlers had anti-PvDBP IgG antibodies, as detected by enzyme-linked immunosorbent assay (ELISA) with subjects age being the only strong predictor of seropositivity to PvDBP. Unexpectedly, low levels of DBPII diversity were found within the local malaria parasites, suggesting the existence of low gene flow between P. vivax populations, probably due to the relative isolation of the studied settlement. Conclusion The recognition of PvDBP by a significant proportion of the community, associated with low levels of DBPII diversity among local P. vivax, reinforces the variety of malaria transmission patterns in communities from frontier settlements. Such studies should provide baseline information for antimalarial vaccines now in development.

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Background: Malaria caused by Plasmodium vivax is an experimentally neglected severe disease with a substantial burden on human health. Because of technical limitations, little is known about the biology of this important human pathogen. Whole genome analysis methods on patient-derived material are thus likely to have a substantial impact on our understanding of P. vivax pathogenesis and epidemiology. For example, it will allow study of the evolution and population biology of the parasite, allow parasite transmission patterns to be characterized, and may facilitate the identification of new drug resistance genes. Because parasitemias are typically low and the parasite cannot be readily cultured, on-site leukocyte depletion of blood samples is typically needed to remove human DNA that may be 1000X more abundant than parasite DNA. These features have precluded the analysis of archived blood samples and require the presence of laboratories in close proximity to the collection of field samples for optimal pre-cryopreservation sample preparation. Results: Here we show that in-solution hybridization capture can be used to extract P. vivax DNA from human contaminating DNA in the laboratory without the need for on-site leukocyte filtration. Using a whole genome capture method, we were able to enrich P. vivax DNA from bulk genomic DNA from less than 0.5% to a median of 55% (range 20%-80%). This level of enrichment allows for efficient analysis of the samples by whole genome sequencing and does not introduce any gross biases into the data. With this method, we obtained greater than 5X coverage across 93% of the P. vivax genome for four P. vivax strains from Iquitos, Peru, which is similar to our results using leukocyte filtration (greater than 5X coverage across 96% of the genome). Conclusion: The whole genome capture technique will enable more efficient whole genome analysis of P. vivax from a larger geographic region and from valuable archived sample collections.

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Life-threatening Plasmodium vivax malaria cases, while uncommon, have been reported since the early 20th century. Unfortunately, the pathogenesis of these severe vivax malaria cases is still poorly understood. In Brazil, the proportion of vivax malaria cases has been steadily increasing, as have the number of cases presenting serious clinical complications. The most frequent syndromes associated with severe vivax malaria in Brazil are severe anaemia and acute respiratory distress. Additionally, P. vivax infection may also result in complications associated with pregnancy. Here, we review the latest findings on severe vivax malaria in Brazil. We also discuss how the development of targeted field research infrastructure in Brazil is providing clinical and ex vivo experimental data that benefits local and international efforts to understand the pathogenesis of P. vivax. (C) 2012 Australian Society for Parasitology Inc. Published by Elsevier Ltd. All rights reserved.

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Fogo Selvagem (FS) is an autoimmune bullous disease with pathogenic IgG autoantibodies recognizing desmoglein 1 (Dsg1), a desmosomal glycoprotein. In certain settlements of Brazil, a high prevalence of FS (3%) is reported, suggesting environmental factors as triggers of the autoimmune response. Healthy individuals from endemic areas recognize nonpathogenic epitopes of Dsg1, and exposure to hematophagous insects is a risk factor for FS. Fogo selvagem and Chagas disease share some geographic sites, and anti-Dsg1 has been detected in Chagas patients. Indeterminate Chagas disease was identified in a Brazilian Amerindian population of high risk for FS. In counterpart, none of the FS patients living in the same geographic region showed reactivity against Trypanosoma cruzi. The profile of anti-Dsg1 antibodies showed positive results in 15 of 40 FS sera and in 33 of 150 sera from healthy individuals from endemic FS sites, and no cross-reactivity between Chagas disease and FS was observed.

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We evaluated the influence of allelic frequency of the human leukocyte antigen (HLA) -DRB1 on the acquisition of antibody response against malaria sporozoite and merozoite peptides in patients with Plasmodium vivax malaria acquired in endemic areas of Brazil. IgG antibodies were detected by enzyme-linked immunosorbent assay against four peptides of circumsporozoite protein (CSP) (amino, carboxyl, and VK210 and VK247 repeats) and peptides of merozoite surface protein 1 (MSP-1), apical membrane antigen 1 (AMA-1), and Duffy-binding protein (DBP). We found an association between HLA-DR3 and HLA-DR5 alleles and lack of antibody response to CSP amino terminal, as well as an association between HILA-DR3 and the highest antibody response to MSP1 (Pv200L). In conclusion, we suggest a potential regulatory role of the H1A-DRB1 alleles in the production of antibodies to a conserved region of P. vivax CSP and MSP1 in Brazilian population exposed to malaria. (C) 2011 Elsevier B.V. All rights reserved.

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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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Trypanosoma rangeli is the trypanosomatid that colonizes the salivary gland of its insect vector, with a profound impact on the feeding capacity of the insect. In this study we investigated the role of the phosphotyrosine (P-Tyr) ecto-phosphatase activity of T. rangeli in its interaction with Rhodnius prolixus salivary glands. Long but not short epimastigotes adhered to the gland cells and the strength of interaction correlated with the enzyme activity levels in different strains. Differential interference contrast microscopy demonstrated that clusters of parasites are formed in most cases, suggesting cooperative interaction in the adhesion process. The tightness of the correlation was evidenced by modulating the P-Tyr ecto-phosphatase activity with various concentrations of inhibitors. Sodium orthovanadate, ammonium molybdate and zinc chloride decreased the interaction between T. rangeli and R. prolixus salivary glands in parallel. Levamisole, an inhibitor of alkaline phosphatases, affected neither process. EDTA strongly inhibited adhesion and P-Tyr ecto-phosphatase activity to the same extent, an effect that was no longer seen if the parasites were pre-incubated with the chelator and then washed. When the P-Tyr ecto-phosphatase of living T. ranged epimastigotes was irreversibly inactivated with sodium orthovanadate and the parasite cells were then injected into the insect thorax, colonization of the salivary glands was greatly depressed for several days after blood feeding. Addition of P-Tyr ecto-phosphatase substrates such as p-nitrophenyl phosphate (pNPP) and P-Tyr inhibited the adhesion of T. rangeli to salivary glands, but P-Ser, P-Thr and beta-glycerophosphate were completely ineffective. Immunoassays using anti-P-Tyr-residues revealed a large number of P-Tyr-proteins in extracts of R. prolixus salivary glands, which could be potentially targeted by T. rangeli during adhesion. These results indicate that dephosphorylation of structural P-Tyr residues on the gland cell surfaces, mediated by a P-Tyr ecto-phosphatase of the parasite, is a key event in the interaction between T. rangeli and R. prolixus salivary glands. (C) 2012 Australian Society for Parasitology Inc. Published by Elsevier Ltd. All rights reserved.

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The tissue changes that occur in Chagas disease are related to the degree of oxidative stress and antioxidant capacity of affected tissue. Studies with vitamin C supplementation did not develop oxidative damage caused by Chagas disease in the host, but other studies cite the use of peroxiredoxins ascorbate - dependent on T. cruzi to offer protection against immune reaction. Based on these propositions, thirty "Swiss" mice were infected with T. cruzi QM1 strain and treated with two different vitamin C doses in order to study the parasitemia evolution, histopathological changes and lipid peroxidation biomarkers during the acute phase of Chagas disease. The results showed that the parasite clearance was greater in animals fed with vitamin C overdose. There were no significant differences regarding the biomarkers of lipid peroxidation and inflammatory process or the increase of myocardium in animals treated with the recommended dosage. The largest amount of parasite growth towards the end of the acute phase suggests the benefit of high doses of vitamin C for trypomastigotes. The supplementation doesn't influence the production of free radicals or the number of amastigote nests in the acute phase of Chagas disease.