922 resultados para PARASITE PLASMODIUM-FALCIPARUM


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Nove amostras de Plasmodium falciparum foram coletadas de migrantes infectados no Estado de Rondônia. Estas amostras foram mantidas em cultivo para caracterização por tipificação enzimática em acetato de celulose, sensibilidade á cloroquina, amodiaquina, mefloquina e quinino e análise da diversidade antigê-nica através de anticorpos monoclonais específicos. Os resultados obtidos mostraram variação entre todas as amostras estudadas: encontrou-se resistência crescente à cloroquina, resistência intermediária à amodiaquina e quinino e sensibilidade a baixos níveis de mefloquina; apenas dois isolados mostraram sensibilidade a todas as drogas. A tipificação enzimática mostrou presença de parasitas GPI 1 e 2 e ADA 1 e 2, enquanto que para PEP e LDH todas as amostras foram do tipo 1. Sorotipagem com anticorpos monoclonais PSA mostrou presença de três sorotipos diferentes (II, III e IV). Estes resultados mostraram: a) variação entre as amostras para os marcadores analisados; b) nesta região, para o pequeno número de amostras analisadas, não foram observadas diferenças significativas ou novos tipos de parasitas.

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Foram selecionados 110 pacientes que procuraram a SUCAM/CUIABÁ para diagnóstico e tratamento de malária, com queixa de febre e procedente de área malarígena. Nestes pacientes foram realizados: gota espessa para a pesquisa de Plasmodium; aplicação de questionário padronizado para detectar sintomas respiratórios presentes no momento da entrevista; gasometria arterial e espirometria para avaliar a função pulmonar. Desta amostra, 62 pacientes foram positivos para malária sendo 41 P. vivax, 20 P. falciparum e 01 forma mista (grupo Malárico); 48 mostraram-se negativos à pesquisa de hematozoários através da gota espessa (grupo Não Malárico). As manifestações respiratórias encontradas nesta população quando comparadas os grupos Malárico e Não Malárico, foram respectivamente: 1º) Sintomáticos Respiratórios de 46,8% para 22 9% (p < 0,05); 2°) Alterações Espirométricas de 53,2% para 20,8% (p < 0,05); 3°) Alterações Gasométricas de 62,9% para 25,0% (p < 0,05). Com estes resultados concluímos que há nítida associação entre a Malária produzida pelo P. vivax e P. falciparum e as manifestações respiratórias apresentadas, nesta população de estudo.

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Foram realizados 171 testes de sensibilidade (microtécnica) com cepas de Plasmodium falciparum da Região Amazônica brasileira para cloroquina, mefloquina, amodiaquina e quinino. Os testes tiveram duração de 24 horas com as drogas preparadas na hora da realização de cada teste. Os resultados mostraram elevada resistência a cloroquina (83%) e sensibilidade em quase a totalidade das amostras testadas para mefloquina (97,7%). Para amodiaquina e quinino observou-se sensibilidade em 51,0% e 56,5% das cepas, respectivamente. Este estudo demonstra a emergência de um possível foco de resistência do Plasmodium falciparum a mefloquina, em Tucuruí.

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Os autores estudaram a prevalência da deficiência de glicose-6-fosfato desidrogenase (G6PD), pelo método de BREWER et alii, em 141 indivíduos da população do município de Humaitá, Estado do Amazonas. Destes, 128 eram amazônides, 67 dos quais nunca tiveram malária, enquanto que 61 tinham tido ou estavam tendo a doença; os 13 restantes que estavam com malária não eram arnazônides. Os resultados revelaram que 7 arnazônides (4,96%), eram deficientes. Destes, 5 eram do sexo feminino e 2 do masculino. Em todos os indivíduos do sexo feminino o teste foi positivo com comportamento do tipo heterozigoto. Dos indivíduos deficientes, 4 nunca tinham tido malária; dos outros 3, 2 apresentavam a reação de hemaglutinação positiva com título 1/16 e o terceiro estava tendo malária causada pelo Plasmodium falciparum pela primeira vez. Este doente apresentou forma benigna de malária evoluindo para cura clínica e parasitológica no 3.° dia de tratamento com a clindamicina. Nenhum dos 13 doentes não arnazônides apresentava deficiência de G6PD. Dessa forma, não houve diferença na prevalência da deficiência de G6PD em arnazônides que nunca tiveram malária e em arnazônides que tinham tido ou estavam tendo a doença. Portanto, os indivíduos com deficiência de G6PD estão sujeitos a infecções por Plasmodium falciparum na mesma proporção que os não deficientes. Por outro lado, o aumento da prevalência da deficiência de G6PD, na amostra estudada, poderia estar relacionado com a pressão seletiva exercida pela malária em população submetida à homozigose.

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In order to investigate whether gentian violet exhibited "in vitro" inhibitory activity against Plasmodium falciparum, the Authors have carried out 20 sensitivity tests according to the microtechnique described by RIECK MANN et al.5. Results have shown inhibition of schizonts'maturation at the following concentration: 1/1000; 1/1500; 1/2000; 1/2500; 1/3000 and 1/4000, thus demonstrating inhibitory activity of the tested dye against asexual blood parasites. The present data suggest gentain violet may be possibly used in the prophylaxis of transfusion-acquired malaria.

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Nosso estudo envolveu a análise de cepas de Plasmodium falciparum provenientes da Região Amazônica Brasileira, coletadas no Laboratório de Malária da SUCEN. Os estudos "in vitro" foram efetuados com a cloroquina (46 ensaios), quinino (42 ensaios) e mefloquina (51 ensaios). Os resultados mostraram resistência de 100% em relação à cloroquina, 2,4% ao quinino e 31,4% à mefloquina, na análise "in vitro". Sete pacientes foram tratados com quinino isolado e nove com a associação mefloquina + pirimetamina-sulfadoxina, não mostrando correlação com os testes "in vitro".

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Facing chloroquine drug resistance, Angola promptly adopted artemisinin-based combination therapy as the first-line to treat malaria. Currently, the country aims to consolidate malaria control, while preparing for the elimination of the disease, along with others African countries in the region. However, the remarkable capacity of Plasmodium to develop drug resistance represents an alarming threat for those achievements. Herein, the available, but relatively scarce and dispersed, information on malaria drug resistance in Angola, is reviewed and discussed. The review aims to inform but also to encourage future research studies that monitor and update the information on anti-malarial drug efficacy and prevalence of molecular markers of drug resistance, key fields in the context and objectives of elimination.

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Field studies in the western Amazon region (state of Acre, Brazil) indicate that the 4-aminoquinolines, as well as the combined regimen with sulfadoxine-pyrimethamine, can no longer be recomended for the treatment and prophylaxis of P. falciparum infections in this region. Quinine remains an effective drug when used correctly. However, compliance problems arise due to the often occurring side-effects during a ten day regimen. Prospects of overcoming these constraints by combining a short course of quinine with other drugs are limited, because of the lack of suitable partner compounds. For this reason quinine/clindamycin appears to be a more practical therapy of P. falciparum malaria. In vitro data from this study suggest that mefloquine is another effective alternative for the treatment of falciparum malaria in this Amazon region.

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The study evaluated six Plasmodium falciparum antigen extracts to be used in the IgG and IgM enzyme-linked immunosorbent assays (ELISA), for malaria diagnosis and epidemiological studies. Results obtained with eighteen positive and nine negative control sera indicated that there were statistically significant differences among these antigen extracts (Multifactor ANOVA, p< 0.0001). Urea, sodium deoxycholate and Zwittergent antigen extracts performed better than did the three others, their features being very similar for the detection of IgG antibodies. Urea, alkaline and sodium deoxycholate antigen extracts proved to be better than the others for the detection of IgM antibodies. A straight line relationship was found between the optical densities (or their respective log 10) and the log 10 of antibody dilutions, with a very constant slope. Thus serum titers could be determined by direct titration and by two different equations, needing only one serum dilution. For IgM antibody detections, log 10 expression gave results that better correlated with direct titration (95% Bonferroni). For IgG antibody detections, the titer differences were not significant. The reproducibility of antibody titers and antigen batches was also evaluated, giving satisfactory results.

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Anti-RESA/Pf155 antibodies were assayed in sera of individuals from three localities (Laranjal do Jari, Vila Padaria and Vila Paraíso) in the State of Amapá, Brazil, during the long-rains and short-rains seasons. All of these had negative blood smears for malaria. Most of the sera collected were positive in Indirect Fluorescent Antibody (IFA) with P. falciparum parasites, with no seasonal variation. A high percentage of these sera (62% to 100%) was RESA positive by Modified Indirect Fluorescent Antibody (MIFA), with a significant (p < 0.05) increase of geometric mean titers during the short-rains season, when the transmission of the disease is highest. ELISA with three repetitive RESA peptides (EENV)3 (4x3), (EENVEHDA)2 (8x2) and (DDEHVEEPTVA)2(11x2) did not reveal statistically significant seasonal variations, although a small enhancement of positivity was observed in V. Padaria (15.3 to 38.8%) in the short-rains season with the 8x2 peptides, and with 4x3 and 8x2 peptides in V. Paraíso, with a decrease in 11x2. MIFA titers appeared to be correlated mainly to the peptide 4x3 and it was the immunodominant in the three localities.

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In order to study the chemoresistance of Plasmodium falciparum to commonly used antimalarial drugs in Brazil the authors have studied ten patients with falciparum malaria, acquired in the Brazilian Amazon region. Patients were submitted to in vivo study of drug sensitivity, after chemotherapy with either 4-aminoquinolines (chloroquine or amodiaquine) or quinine. Adequate drug absorption was confirmed by standard urine excretion tests for antimalarials. Eight patients could be followed up to 28 days. Among these in vivo resistance (R I and R II responses) was seen in all patients who received 4-amino-quinolines. One patient treated with quinine exhibited a R III response. Peripheral blood samples of the same patients were submitted to in vitro microtests for sensitivity to antimalarials. Out of nine successful tests, resistance to chloroquine and amodiaquine was found in 100% and resistance to quinine in 11.11% of isolates. Probit analysis of log dose-response was used to determine effective concentrations EC50, EC90 and EC99 to the studied drugs. Good correlation between in vivo and in vitro results was seen in six patients. The results emphasize high levels of P. falciparum resistance to 4- aminoquinolines and suggest an increase in resistance to quinine in the Brazilian Amazon region, reinforcing the need for continuous monitoring of drug sensitivity to adequate chemotherapy according to the most efficacious drug regimens

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Four laboratory-raised colonies of two karyotypic forms of Anopheles aconitus, i.e., Form B (Chiang Mai and Phet Buri strains) and C (Chiang Mai and Mae Hong Son strains), were experimentally infected with Plasmodium falciparum and P. vivax using an artificial membrane feeding technique and dissected eight and 12 days after feeding for oocyst and sporozoite rates, respectively. The results revealed that An. aconitus Form B and C were susceptible to P. falciparum and P. vivax, i.e., Form B (Chiang Mai and Phet Buri strains/P. falciparum and P. vivax) and Form C (Chiang Mai and Mae Hong Son strains/P. vivax). Comparative statistical analyses of the oocyst rates, average number of oocysts per infected midgut and sporozoite rates among all strains of An. aconitus Form B and C to the ingroup control vectors, An. minimus A and C, exhibited mostly no significant differences, confirming the high potential vector of the two Plasmodium species. The sporozoite-like crystals found in the median lobe of the salivary glands, which could be a misleading factor in the identification of true sporozoites in salivary glands were found in both An. aconitus Form B and C.

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The presence of common antigens between Plasmodium falciparum and Anopheles albimanus was demonstrated. Different groups of rabbits were immunized with: crude extract from female An. albimanus (EAaF), red blood cells infected with Plasmodium falciparum (EPfs), and the SPf66 synthetic malaria vaccine. The rabbit's polyclonal antibodies were evaluated by ELISA, Multiple Antigen Blot Assay (MABA), and immunoblotting. All extracts were immunogenic in rabbits according to these three techniques, when they were evaluated against the homologous antigens. Ten molecules were identified in female mosquitoes and also in P. falciparum antigens by the autologous sera. The electrophoretic pattern by SDS-PAGE was different for the three antigens evaluated. Cross-reactions between An. albimanus and P. falciparum were found by ELISA, MABA, and immunoblotting. Anti-P. falciparum and anti-SPf66 antibodies recognized ten and five components in the EAaF crude extract, respectively. Likewise, immune sera against female An. albimanus identified four molecules in the P. falciparum extract antigen. As far as we know, this is the first work that demonstrates shared antigens between anophelines and malaria parasites. This finding could be useful for diagnosis, vaccines, and the study of physiology of the immune response to malaria.

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In Iran, both Plasmodium vivax and P. falciparum malaria have been detected, but P. vivax is the predominant species. Point mutations in dihydrofolate reductase (dhfr) gene in both Plasmodia are the major mechanisms of pyrimethamine resistance. From April 2007 to June 2009, a total of 134 blood samples in two endemic areas of southern Iran were collected from patients infected with P. vivax and P. falciparum. The isolates were analyzed for P. vivax dihydrofolate reductase (pvdhfr) and P. falciparum dihydrofolate reductase (pfdhfr) point mutations using various PCR-based methods. The majority of the isolates (72.9%) had wild type amino acids at five codons of pvdhfr. Amongst mutant isolates, the most common pvdhfr alleles were double mutant in 58 and 117 amino acids (58R-117N). Triple mutation in 57, 58, and 117 amino acids (57L/58R/117N) was identified for the first time in the pvdhfr gene of Iranian P. vivax isolates. All the P. falciparumsamples analyzed (n = 16) possessed a double mutant pfdhfrallele (59R/108N) and retained a wild-type mutation at position 51. This may be attributed to the fact that the falciparum malaria patients were treated using sulfadoxine-pyrimethamine (SP) in Iran. The presence of mutant haplotypes in P. vivax is worrying, but has not yet reached an alarming threshold regarding drugs such as SP. The results of this study reinforce the importance of performing a molecular surveillance by means of a continuous chemoresistance assessment.

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Os autores fazem breve revisão sôbre o período de duração da infecção pelo P. falciparum, citando casos em que êsse período atingiu até 3 anos, sob forma latente. Referem-se ao risco que êsse fato representa através transfusões de sangue e finalmente relatam 3 casos em que julgam ter ocorrido essa situação que poderá ter conseqüências gravíssimas: 1. Pela possibilidade de ser transfundida uma raça de P. falciparum resistente aos diferentes anti-maláricos. 2. Pelo fato de serem as transfusões de sangue feitas de um modo geral em pacientes com condições áébilitantes as mais diversas. 3. Pela dificuldade com que se defrontam os técnicos em transfusão na detectação do parasito resistente ou não em casos assintomáticos. 4. Pela difusão relativamente significativa de raças de P. falciparum resistentes, a vários pontos do território nacional.