970 resultados para FALCIPARUM CIRCUMSPOROZOITE PROTEIN


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In vivo antimalarial drug efficacy studies of uncomplicated Plasmodium falciparum malaria at an isolated site in the Amazon basin of Peru bordering Brazil and Colombia showed >50% RII/RIII resistance to sulfadoxine-pyrimethamine but no evidence of resistance to mefloquine.

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Dissertation for a degree in Doctor in Sustainable Chemistry

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Dissertação para obtenção do Grau de Mestre em Bioquímica

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Dissertation for obtaining the Master degree in Membrane Engineering

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Foram analisadas a freqüência e distribuição de mutações nos genes dihidrofolato redutase e dihidropteroato sintetase do Plasmodium falciparum, usando a metodologia de reação em cadeia da polimerase e polimorfismos de hidrólise por enzimas de restrição, em amostras de sangue infectado proveniente de crianças moçambicanas, residentes em Maputo. A análise foi feita antes e 7 dias após o tratamento com sulfadoxina-pirimetamina (S/P). Os resultados mostraram a ocorrência de mutações pontuais nos genes estudados e a presença de combinações de três alelos em dhfr (51Ile, 59Arg e 108Asn) e do quintúplo mutante (dhfr 51Ile, 59Arg, 108Asn e dhps 437Gly, 540Glu), ambas situações associadas à falha terapêutica no sétimo dia após tratamento com S/P. Esses achados mostram a importância de se estudar a resistência à S/P em Moçambique, e como os marcadores moleculares de resistência aos antimaláricos podem fornecer dados importantes para a política nacional de controlo da malária.

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Cell-to-cell communication is required for many biological processes in development and adult life. One of the most common systems utilized by a wide range of eukaryotes is the Notch signalling pathway. Four Notch receptors and five ligands have been identified in mammals that interact via their extracellular domains leading to transcription activation. Studies have shown that the Notch ligands expression is undetectable in normal breast tissues, but moderate to high expression has been detected in breast cancer. Thus, any of the Notch1 ligands can be studied as possible therapeutic targets for breast cancer. To study Notch pathway proteins there is the need to obtain stable protein solutions. E. coli is the host of excellence for recombinant proteins for the ease of use, fast growth and high cell densities. However, the expression of mammalian proteins in such systems may overwhelm the bacterial cellular machinery, which does not possess the ability for post-translational modifications, or dedicated compartments for protein synthesis. Mammalian cells are therefore preferred, despite their technical and financial increased demands. We aim to determine the best expression and purification conditions for the different ligand protein constructs, to develop specific function-blocking antibodies using the Phage Display technology. Moreover, we propose to crystallize the Notch1 ligands alone and in complex with the phage display selected antibodies, unveiling molecular details. hJag2DE3 and hDll1DE6 proteins were purified from refolded inclusion bodies or mammalian cell culture supernatants, respectively, and purity was confirmed by SDS-PAGE (>95%). Protein produced in mammalian cells showed to be more stable, apparently with the physiological disulfide pattern, contrary to what was observed in the refolded protein. Several nano-scale crystallization experiments were set up in 96-well plates, but no positive result was obtained. We will continue to pursue for the best expression for the Notch ligand constructs in both expression systems.

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Sporulation in Bacillus subtilis culminates with the formation of a dormant endospore. The endospore (or spore) is one of the most resilient cell types known and can remain viable in the environment for extended periods of time. Contributing to the spore’s resistance and its ability to interact with and monitor its immediate environment is the coat, the outermost layer of B. subtilis spores. The coat is composed by over 70 different proteins, which are produced at different stages in sporulation and orderly assembled around the developing spore.(...)

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Sendo a malária uma doença infecciosa que põe em risco uma elevada percentagem da população mundial, a presente dissertação apresenta o desenvolvimento de um teste de diagnóstico rápido (RDT) para a detecção da infecção. Para a detecção dos antigénios de Plasmodium falciparum (Pf), parasita da malária, foram estudadas nanopartículas de ouro (AuNPs) com dois diâmetros médios diferentes, 17nm e 48nm, funcionalizadas e conjugadas com anticorpos específicos, formando os bionanoconjugados. Este trabalho abrange dois focos de investigação, interligados, de forma a atingir-se o objectivo prosposto: i) Caracterização físico-quimica das AuNPs e dos bionanoconjugados em solução, usando a espectrocopia de UV-Visível, variando a força iónica e o pH do meio. A compreensão do comportamento e estabilidade das partículas consoante o seu diâmetro e revestimento tem em vista o melhoramento do RDT, tanto em sensibilidade como em custo; ii) Desenvolvimento do RDT usando um método que envolve uma ligação competitiva entre o antigénio e o anticorpo específico imobilizado à superfície das AuNPs. Os antigénios correspondem a biomarcadores da presença de Pf: Heat Shock Protein 70 (PfHsp70) e Histidine Rich Protein II (PfHRPII). Como superfícies para o desenvolvimento do RDT foram usados a nitrocelulose e o papel de filtro. Quanto maior é o diâmetro das AuNPs, maior é a estabilidade apresentada em solução quando aumentada a força iónica. Quando é variado o valor de pH do meio, as partículas adoptam um comportamento dependente do seu revestimento, independente do diâmetro. Os bionanoconjugados formados com AuNPs de ambos os diâmetros revelaram-se muito estáveis em solução, numa gama de forças iónicas de 0 a 0,5M de cloreto de sódio, e de pH de 2 a 7. Uma vez que a proteína Hsp70 é produzida constitutivamente em diversas células humanas, é necessário trabalhar com proteínas específicas da infecção, que nesta dissertação foi a PfHRPII. Foram efectuados testes no suporte de nitrocelulose que provaram o reconhecimento da PfHRPII pelos bionanoconjugados AuNPs-MUA-anti-PfHRPII. Estes ensaios necessitam ainda de algumas optimizações. Ensaios de Western-Blot permitiram a identificação da presença da PfHRPII em culturas infectadas, bem como a confirmação da sua ligação ao anticorpo específico, anti-PfHRPII. Um novo método de revelação é introduzido nesta técnica, efectuado através do uso dos bionanoconjugados. Este método mostrou-se promissor na medida em que é rápido, específico e de baixo custo. O principal contributo do trabalho consistiu no desenvolvimento, com sucesso, de um RDT para diagnóstico de malária, usando o antigénio PfHsp70, tendo como base a detecção colorimétrica com AuNPs de 17nm de diâmetro. Usando uma tira de nitrocelulose foi estabelecido um limite de detecção correspondente a 1600parasitas/μL, valor este considerado válido pela OMS para um correcto diagnóstico de malária. O limite de detecção obtido para as AuNPs de 48nm foi superior, não tendo trazido melhorias para o teste desenvolvido com AuNPs de menor diâmetro.

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Monocytes/macrophages play a critical role in the defense mechanisms against malaria parasites, and are the main cells responsible for the elimination of malaria parasites from the blood circulation. We carried out a microscope-aided evaluation of the stages of in vitro phagocytosis of Plasmodium falciparum-infected erythrocytes, by human monocytes. These cells were obtained from healthy adult individuals by means of centrifugation through a cushion of Percoll density medium and were incubated with erythrocytes infected with Plasmodium falciparum that had previously been incubated with a pool of anti-plasmodial immune serum. We described the stages of phagocytosis, starting from adherence of infected erythrocytes to the phagocyte membrane and ending with their destruction within the phagolisosomes of the monocytes. We observed that the different erythrocytic forms of the parasite were ingested by monocytes, and that the process of phagocytosis may be completed in around 30 minutes. Furthermore, we showed that phagocytosis may occur continuously, such that different phases of the process were observed in the same phagocyte.

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This dissertation focuses on the study of frataxin, a small mitochondrial protein whose deficiency is associated with the neurodegenerative disease Friedreich's ataxia (FRDA). Aiming at a better understanding of frataxin conformational and functional properties, two lines of research were followed: first, the effect of FRDA-related mutations in human frataxin (FXN) were studied and the role of oxidative stress related modification addressed; second, yeast frataxin (Yfh1) orthologue was used to explore the conformational and functional properties of the protein.(...)

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Salmonella enterica serovars are Gram-negative facultative intracellular bacterial pathogens that infect a wide variety of animals. Salmonella infections are common in humans, causing usually typhoid fever and gastrointestinal diseases. Salmonella enterica serovar Typhimurium (S. Typhimurium), which is a leading cause of human gastroenteritis, has been extensively used to study the molecular pathogenesis of Salmonella, because of the availability of sophisticated genetic tools, and of suitable animal and tissue culture models mimicking different aspects of Salmonella infections.(...)

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All life forms need to monitor carbon and energy availability to survive and this is especially true for plants which must integrate unavoidable environmental conditions with metabolism for cellular homeostasis maintenance. Sugars, in the heart of metabolism, are now recognized as crucial signaling molecules that translate those conditions. One such signal is trehalose 6- phosphate (T6P), a phosphorylated dimer of glucose molecules which levels correlate well with those of sucrose (Suc). Central integrators of stress and energy regulation include the conserved plant Snf1-related kinase1 (SnRK1) which respond to low cellular energy levels by up-regulating energy conserving and catabolic metabolism and down-regulating energy consuming processes. In 2009 T6P was shown to inhibit SnRK1. The in vitro inhibition of SnRK1 by T6P was confirmed in vivo through the observation that genes normally induced by SnRK1 were repressed by T6P and vice-versa, promoting growth processes. These observations provided a model for the regulation of growth by sugar.(...)

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INTRODUCTION: Malaria during pregnancy remains a serious public health problem. The aim of this study was to establish the prevalence and possible risk factors for malaria in pregnant women attending antenatal care at Augusto Ngangula Specialized General Hospital in Luanda, Angola. METHODS: Pregnant women (679 total) who attended antenatal care from April to September 2008 were included in the study after signing informed consent. For each participant, the social-demographic profile and malaria and obstetric histories were investigated via a questionnaire. Diagnosis was made by optic microscopy, and hemoglobin concentration measured. The associations between age, parity, gestational age, residence, schooling, malaria during gravity, anemia and treatment with incidence of Plasmodium falciparum infection were analyzed through logistic regression. RESULTS: During the period of study, 74 (10.9%) out of 679 women were infected by P. falciparum. The average concentration of hemoglobin was 11.1 ± 0.07g/dL, and there were significant associations between the history of malaria during pregnancy, P. falciparum infection (p<0.01) and anemia at the time of observation (p<0.001). CONCLUSIONS: Previous history of malaria during pregnancy represents a risk factor for current infection and anemia was an important complication associated with malaria, even in women who were treated with sulfadoxine-pyrimethamine during pregnancy.