922 resultados para PARASITE PLASMODIUM-FALCIPARUM
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The increasing resistance of malarial parasites to almost all available drugs calls for the identification of new compounds and the detection of novel targets. Here, we establish the antimalarial activities of risedronate, one of the most potent bisphosphonates clinically used to treat bone resorption diseases, against blood stages of Plasmodium falciparum (50% inhibitory concentration [IC(50)] of 20.3 +/- 1.0 mu M). We also suggest a mechanism of action for risedronate against the intraerythrocytic stage of P. falciparum and show that protein prenylation seems to be modulated directly by this drug. Risedronate inhibits the transfer of the farnesyl pyrophosphate group to parasite proteins, an effect not observed for the transfer of geranylgeranyl pyrophosphate. Our in vivo experiments further demonstrate that risedronate leads to an 88.9% inhibition of the rodent parasite Plasmodium berghei in mice on the seventh day of treatment; however, risedronate treatment did not result in a general increase of survival rates.
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The human malaria parasite Plasmodium vivax is responsible for 25 - 40% of the similar to 515 million annual cases of malaria worldwide. Although seldom fatal, the parasite elicits severe and incapacitating clinical symptoms and often causes relapses months after a primary infection has cleared. Despite its importance as a major human pathogen, P. vivax is little studied because it cannot be propagated continuously in the laboratory except in non- human primates. We sequenced the genome of P. vivax to shed light on its distinctive biological features, and as a means to drive development of new drugs and vaccines. Here we describe the synteny and isochore structure of P. vivax chromosomes, and show that the parasite resembles other malaria parasites in gene content and metabolic potential, but possesses novel gene families and potential alternative invasion pathways not recognized previously. Completion of the P. vivax genome provides the scientific community with a valuable resource that can be used to advance investigation into this neglected species.
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The population structure of Plasmodium vivax remains elusive. The markers of choice for large-scale population genetic studies of eukaryotes, short tandem repeats known as microsatellites, have been recently reported to be less polymorphic in R vivax. Here we investigate the microsatellite diversity and geographic structure in P vivax, at both local and global levels, using 14 new markers consisting of tri- or tetranucleotide repeats. The local-level analysis, which involved 50 field isolates from Sri Lanka, revealed unexpectedly high diversity (average virtual heterozygosity [H-E], 0.807) and significant multilocus linkage disequilibrium in this region of low malaria endemicity. Multiple-clone infections occurred in 60% of isolates sampled in 2005. The global-level analysis of field isolates or monkey-adapted strains identified 150 unique haplotypes among 164 parasites from four continents. Individual P. vivax isolates could not be unambiguously assigned to geographic populations. For example, we found relatively low divergence among parasites from Central America, Africa, Southeast Asia and Oceania, but substantial differentiation between parasites from the same continent (South Asia and Southeast Asia) or even from the same country (Brazil). Parasite relapses, which may extend the duration of P. vivax carriage in humans, are suggested to facilitate the spread of strains across continents, breaking down any pre-existing geographic structure. (C) 2008 Elsevier B.V. All rights reserved.
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Herein, we show that intraerythrocytic stages of Plasmodium falciparum have an active pathway for biosynthesis of menaquinone. Kinetic assays confirmed that plasmodial menaquinone acts at least in the electron transport. Similarly to Escherichia coli, we observed increased levels of menaquinone in parasites kept under anaerobic conditions. Additionally, the mycobacterial inhibitor of menaquinone synthesis Ro 48-8071 also suppressed menaquinone biosynthesis and growth of parasites, although off-targets may play a role in this growth-inhibitory effect. Due to its absence in humans, the menaquinone biosynthesis can be considered an important drug target for malaria. (c) 2010 Federation of European Biochemical Societies. Published by Elsevier B. V. All rights reserved.
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The Plasmodium falciparum var gene family encodes large variant antigens, which are important virulence factors, and also targets of the humoral host response. The frequently observed mild outcomes of falciparum malaria in many places of the Amazon area prompted us to ask whether a globally restricted variant (var) gene repertoire is present in currently circulating and older isolates of this area. By exhaustive analysis of var gene tags from 89 isolates and clones taken during many years from all over the Brazilian Amazon, we estimate that there are probably no more than 350-430 distinct sequence types, less than for any similar sized area studied so far. Detailed analysis of the var tags from genetically distinct clones obtained from single isolates revealed restricted and redundant repertoires suggesting either a low incidence of infective bites or restricted variant gene diversity in inoculated parasites. Additionally, we found a structuring of var gene repertoires observed as a higher pairwise typing sharing in isolates from the same microregion compared to isolates from different regions. Fine analysis of translated var tags revealed that certain Distinct Sequence Identifiers (DSIDs) were differently represented in Brazilian/South American isolates when compared to datasets from other continents. By global alignment of worldwide var DBL alpha sequences and sorting in groups with more than 76% identity, 125 clusters were formed and more than half of all genes were found in nine clusters with 50 or more sequences. While Brazilian/South American sequences were represented only in 64 groups, African sequences were found in the majority of clusters. DSID type 1 related sequences accumulated almost completely in one single cluster, indicating that limited recombination occurs in these specific var gene types. These data demonstrate the so far highest pairwise type sharing values for the var gene family in isolates from all over an entire subcontinent. The apparent lack of specific sequences types suggests that the P. falciparum transmission dynamics in the whole Amazon are probably different from any other endemic region studied and possibly interfere with the parasite`s ability to efficiently diversify its variant gene repertoires. (C) 2010 Elsevier B.V. All rights reserved.
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Calcium (Ca2+) is a critical regulator of many aspects of the Plasmodium reproductive cycle. In particular, intra-erythrocyte Plasmodium parasites respond to circulating levels of the melatonin in a process mediated partly by intracellular Ca2+. Melatonin promotes the development and synchronicity of parasites, thereby enhancing their spread and worsening the clinical implications. The signalling mechanisms underlying the effects of melatonin are not fully established, although both Ca2+ and cyclic AMP (cAMP) have been implicated. Furthermore, it is not clear whether different strains of Plasmodium use the same, or divergent, signals to control their development. The aim of this study was to explore the signalling mechanisms engaged by melatonin in P. chabaudi, a virulent rodent parasite. Using parasites at the throphozoite stage acutely isolated from mice erythrocytes, we demonstrate that melatonin triggers cAMP production and protein kinase A (PKA) activation. Interestingly, the stimulation of cAMP/PKA signalling by melatonin was dependent on elevation of Ca2+ within the parasite, because buffering Ca2+ changes using the chelator BAPTA prevented cAMP production in response to melatonin. Incubation with melatonin evoked robust Ca2+ signals within the parasite, as did the application of a membrane-permeant analogue of cAMP. Our data suggest that P. chabaudi engages both Ca2+ and cAMP signalling systems when stimulated by melatonin. Furthermore, there is positive feedback between these messengers, because Ca2+ evokes cAMP elevation and vice versa. Melatonin more than doubled the observed extent of parasitemia, and the increase in cAMP concentration and PKA activation was essential for this effect. These data support the possibility to use melatonin antagonists or derivates in therapeutic approach.
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Em agosto de 1983, os Autores, estudaram 36 doentes com infecção causada pelo Plasmodium falciparum e 14 indivíduos normais, nascidos na região de Humaitá, que nunca tiveram malária, sem esplenomegalia, com exame parasitológico de sangue e hemaglutinação passiva negativas. Todos eles foram submetidos à observação clínica completa, exame hematológico, exame parasitológico de sangue e tipagem de linfócitos. Os linfócitos foram isolados e congelados em nitrogênio líquido, para posterior tipagem pela formação de rosetas. Os doentes foram classificados em dois grupos de acordo com a presença (13 doentes), ou ausência (23 doentes) de gametócitos antes do tratamento. Houve predomínio de formas graves no grupo de doentes sem gametócitos. Os resultados mostraram diminuição do número de linfócitos T em ambos os grupos de doentes, com ou sem gametócitos antes do tratamento, enquanto que o número de linfócitos B foi normal apenas no grupo de doentes com gametócitos. Essas observações, assim como as que foram relatadas pelos Autores anteriormente, permitem associar a presença de gametócitos circulantes com o número normal de células B em doentes com formas leves de malária causada pelo Plasmodium falciparum.
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The recent evolution of Plasmodium falciparum is at odds with the extensive polymorphism found in most genes coding for antigens. Here, we examined the patterns and putative mechanisms of sequence diversification in the merozoite surface protein-2 (MSP-2), a major malarial repetitive surface antigen. We compared the msp-2 gene sequences from closely related clones derived from sympatric parasite isolates from Brazilian Amazonia and used microsatellite typing to examine, in these same clones, the haplotype background of chromosome 2, where msp-2 is located. We found examples of msp-2 sequence rearrangements putatively created by nonreciprocal recombinational events, such as replication slippage and gene conversion, while maintaining the chromosome haplotype. We conclude that these nonreciprocal recombination events may represent a major source of antigenic diversity in MSP-2 in P falciparum populations with low rates of classical meiotic recombination. (c) 2006 Elsevier B.V. All rights reserved.
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Background: Despite the extensive polymorphism at the merozoite surface protein-1 (MSP-1) locus of Plasmodium falciparum, that encodes a major repetitive malaria vaccine candidate antigen, identical and nearly identical alleles frequently occur in sympatric parasites. Here we used microsatellite haplotyping to estimate the genetic distance between isolates carrying identical and nearly identical MSP-1 alleles. Methods: We analyzed 28 isolates from hypoendemic areas in north-western Brazil, collected between 1985 and 1998, and 23 isolates obtained in mesoendemic southern Vietnam in 1996. MSP-1 alleles were characterized by combining PCR typing with allele-specific primers and partial DNA sequencing. The following single-copy microsatellite markers were typed: Polyα, TA42 (only for Brazilian samples), TA81, TA1, TA87, TA109 (only for Brazilian samples), 2490, ARAII, PfG377, PfPK2, and TA60. Results: The low pair-wise average genetic distance between microsatellite haplotypes of isolates sharing identical MSP-1 alleles indicates that epidemic propagation of discrete parasite clones originated most identical MSP-1 alleles in parasite populations from Brazil and Vietnam. At least one epidemic clone propagating in Brazil remained relatively unchanged over more than one decade. Moreover, we found no evidence that rearrangements of MSP-1 repeats, putatively created by mitotic recombination events, generated new alleles within clonal lineages of parasites in either country. Conclusion: Identical MSP-1 alleles originated from co-ancestry in both populations, whereas nearly identical MSP-1 alleles have probably appeared independently in unrelated parasite lineages.
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A resistência crescente do P. falciparum aos antimaláricos habitualmente empregados, torna urgente a avaliação de novas drogas. O Ro 42-1611 é um antimalárico derivado da planta chinesa Arlabotrys uncinatus. Usado apenas na África em três trabalhos no tratamento da malária por P. falciparum, tem sua ação desconhecida em sul-americanos com esta doença. Apesar do efeito antimalárico ter sido comprovado, ainda não se encontrou a dose adequada para o tratamento supressivo do P. falciparum. Avaliar a tolerância, a toxicidade e a eficácia de três diferentes doses do Ro 42-1611 no tratamento da malária por P. falciparum é o que objetiva este trabalho. O estudo foi realizado em Marabá-Pará, caracterizando-se por ser aberto, prospectivo e randomizado; incluiu pacientes voluntário s, adultos, masculinos, de peso corporal até 80 kg; febris ou com outros sintomas constitucionais de malária e com gota espessa positiva para P. falciparum ( ≥ 200 e ≤ 50.000 parasitas/mm³ de sangue). Grupos de estudo: I -1.500 mg de 12/12 horas por 1 dia; II -1.500 mg de 12/12 horas por2 dias e III -1.500 mg de 12/12 horas por 3 dias. Todos os pacientes foram tratados em regime hospitalar, sendo avaliados no pré-tratamento através de: dados pessoais e biométricos, sinais e sintomas, uso de medicação concomitante, temperatura axilar, freqüência respiratória, pressão arterial, eletrocardiograma, parasitemia, exames hematológicos e bioquímicos. A partir do início da terapêutica, a avaliação destes parâmetros foi feita seguindo protocolo próprio, incluindo a anotação de efeitos colaterais. A análise de variância de Friedman foi usada para avaliar os valores obtidos nos exames hematológicos e bioquímicos. Foram selecionados 16 pacientes, sendo 5 alocados no grupo I, 6 no II e 5 no III. Idade variou de 17 a 41 anos (média: 26,6), peso corporal de 44 a 72 kg (média: 54,9), parasitemia assexuada inicial de 200 a 40.000 formas/mm³ de sangue, sendo os grupos homogêneos quanto a estas variáveis. A febre desapareceu no mínimo com 9 e no máximo com 48 horas a partir do início da terapêutica. A avaliação do traçado eletrocardiográfico e da pressão arterial não mostrou alterações significativas. O desaparecimento da parasitemia assexuada ocorreu em média com 53,6 horas, não se evidenciando diferenças estatísticas i significantes entre os grupos (p=0,7264). Houve uma diminuição significativa entre o pré-tratamento (D0) e o terceiro (D2) e oitavo (D7) dias de acompanhamento quanto os níveis de hematócrito (p=0,0046), um aumento no número de leucócitos entre D2 e D7 (p=0,0171) e plaquetas entre D0 e D7, assim como entre D2 e D7 (p< 0,0001). Entre D0 e D7 detectou-se diminuição nos níveis de bilirrubina total (p=0,0024), fosfatase alcalina (p=0,0195) e uréia (p=0,0168). Efeitos colaterais foram em geral leves ou moderados e de curta duração. Do total de pacientes, 87,5% obtiveram desaparecimento da parasitemia assexuada, porém apenas 2 (12,5%) curaram, ambos incluídos no grupo III. Nenhum dos esquemas posológicos usados foi adequado para a cura desta doença. Talvez em estudos posteriores usando a droga em maior dose ou por maior número de dias ou ainda associando-a a outros antimaláricos, possa obter-se eficácia adequada.
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A importância do An. nuneztovari como vetor primário de malária já foi comprovado em países da América do Sul como Venezuela, Colômbia e Peru. Na Amazônia brasileira, embora tenha sido encontrado naturalmente infectado com Plasmodium vivax e P. falciparum e em alta densidade, é ainda considerado vetor secundário desta doença. O objetivo deste presente trabalho foi avaliar a susceptibilidade do An. nuneztovari à infecção por plasmódios humanos. Para isso exemplares da geração F1, obtida em laboratório, de An. nuneztovari e An. darlingi (espécie controle) foram alimentados, em alimentador artificial, com sangue de pacientes com diagnóstico inicial de malária causada por P. falciparum, cuja revisão resultou no diagnóstico de infecção mista. Todas as amostras sangüíneas dos pacientes infectaram espécimes das duas espécies, não mostrando diferença significativa entre elas quanto à susceptibilidade. Para detecção de infecção malárica nos mosquitos foi usado o teste ELISA (Enzime – Linked Imunosorbent Assay) cujos resultados foram discordantes do diagnóstico laboratorial, já que o teste detectou infecções pelo P. falciparum, P. vivax VK210 ou P. vivax VK247entre os mosquitos positivos sugerindo que os pacientes apresentavam infecção mista. Também foi observado o curto período de desenvolvimento de oocistos e esporozoítos, de quatro a cinco dias, o que pode ser explicado pela alta temperatura (>30°C) que os mosquitos foram expostos. Assim nossos resultados sugerem possível envolvimento do An nuneztovari na transmissão de malária humana na área estudada e alertam para o papel deste, como possível vetor principal de malária humana na região amazônica brasileira.
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O presente trabalho descreve a análise fitoquímica e avaliação da atividade antiplasmódica em Plasmodium falciparum (W2) de Himatanthus articulatus (Vahl) Woodson. O extrato etanólico (EEHS) obtido por percolação do pó das cascas, após concentração, forneceu um precipitado (EEHSP) e um resíduo pastoso que foi submetido a liofilização (EEHS). Fracionou-se este por: re-extração sob refluxo, partição ácido-base e coluna cromatográfica de sílica gel. Além disso, submeteu-se o pó das cascas a extração com ácido clorídrico 1 N para separação de alcalóides. A prospecção fitoquímica, em CCD, foi realizada com EEHS e EEHSP, enquanto que EEHS, frações (FrDCM EEHS, FrAcOET EEHS e FrMeOH EEHS) e FAHS2 DCM foram analisadas por cromatografia líquida de alta eficiência acoplada a DAD (arranjo de diiodo-CLAE-DAD). FrAcOET EEHS foi fracioanda por coluna cromatográfica fornecendo uma substância isolada (S1). Analisou-se o EEHS, a fração majoritária obtida na coluna cromatográfica (F71), FAHS2 DCM e S1 por cromatografia liquida acoplada a espectrometria de massas (CL-EM). O espectro no infravermelho foi obtido para F71 e S1. A estrutura química de S1 foi definida como sendo o plumierídeo por ressonância magnética nuclear. A avaliação de atividade antiplasmódica foi realizada com EEHS, EEHSP, FrDCM EEHS, FrAcOET EEHS, FrMeOH EEHS, FAHS1 DCM, FAHS2 DCM, FAEEHS, FNEEHS, FNHS DCM e S1 pelo método da lactato desidrogenase parasitária (pLDH). Na prospecção fitoquímica, EEHS e EEHSP apresentaram resultados positivos para polifenóis e taninos, saponinas, triterpenos e esteroides, alcaloides e geninas flavônicas. EEHS e frações analisadas por CLAE-DAD mostraram os picos mais intensos sugestivos de iridoides, comprovados por CL-EM de EEHS que mostrou como substância majoritária o iridóide plumierídeo, coerente com o espectro no IV de F71 e S1 que revelou absorções de grupos funcionais presentes em iridóides. Nas análises destas por CL-EM, observou-se um pico a m/z 471 (M+H), atribuído ao íon pseudomolecular do plumierídeo e/ou isoplumierídeo. S1 foi identificada como plumierídeo. Até o presente momento não foi relatada a presença de alcaloides para a espécie, porém nas frações alcaloídicas (FAHS1 DCM, FAHS2 DCM, FAEEHS) e de neutros (FNEEHS e FNHS DCM) em análise por CCD revelada com reagente Dragendorff observaram-se manchas sugestivas de alcalóides, coerente com análise por CLAE-DAD de FAHS2 DCM, a qual mostrou pico majoritário com cromóforo sugestivo de alcaloide β-carbolínico. Em análises por CL-EM de FAHS2 DCM observou-se pico majoritário sugestivo do alcalóide 10-hidroxi-antirina-N-óxido com massa molecular 328 u. Os ensaios de atividade antiplasmódica foram negativos para EEHS, EEHSP, FrDCM EEHS, FrAcOET EEHS, FrMeOH EEHS, S1, FAEEHS, FAHS1 DCM, FNEEHS, FNHS DCM e moderadamente ativo (CI50 22,89 μg/mL) para FAHS2 DCM. Estes resultados indicam que a atividade antiplasmódica da planta pode se atribuída aos alcaloides, cuja presença em H. articulatus é descrita pela primeira vez.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Background: The mechanisms by which humans regulate pro-and anti-inflammatory responses on exposure to different malaria parasites remains unclear. Although Plasmodium vivax usually causes a relatively benign disease, this parasite has been suggested to elicit more host inflammation per parasitized red blood cell than P. falciparum. Methodology/Principal Findings: We measured plasma concentrations of seven cytokines and two soluble tumor necrosis factor (TNF)-alpha receptors, and evaluated clinical and laboratory outcomes, in Brazilians with acute uncomplicated infections with P. vivax (n = 85), P. falciparum (n = 30), or both species (n = 12), and in 45 asymptomatic carriers of low-density P. vivax infection. Symptomatic vivax malaria patients, compared to those infected with P. falciparum or both species, had more intense paroxysms, but they had no clear association with a pro-inflammatory imbalance. To the contrary, these patients had higher levels of the regulatory cytokine interleukin (IL)-10, which correlated positively with parasite density, and elevated IL-10/TNF-alpha, IL-10/interferon (IFN)-gamma, IL-10/IL-6 and sTNFRII/TNF-alpha ratios, compared to falciparum or mixed-species malaria patient groups. Vivax malaria patients had the highest levels of circulating soluble TNF-alpha receptor sTNFRII. Levels of regulatory cytokines returned to normal values 28 days after P. vivax clearance following chemotherapy. Finally, asymptomatic carriers of low P. vivax parasitemias had substantially lower levels of both inflammatory and regulatory cytokines than did patients with clinical malaria due to either species. Conclusions: Controlling fast-multiplying P. falciparum blood stages requires a strong inflammatory response to prevent fulminant infections, while reducing inflammation-related tissue damage with early regulatory cytokine responses may be a more cost-effective strategy in infections with the less virulent P. vivax parasite. The early induction of regulatory cytokines may be a critical mechanism protecting vivax malaria patients from severe clinical complications.
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In this study, we determined whether the treatment of asymptomatic parasites carriers (APCs), which are frequently found in the riverside localities of the Brazilian Amazon that are highly endemic for malaria, would decrease the local malaria incidence by decreasing the overall pool of parasites available to infect mosquitoes. In one village, the treatment of the 19 Plasmodium falciparum-infected APCs identified among the 270 residents led to a clear reduction (Z = -2.39, p = 0.017) in the incidence of clinical cases, suggesting that treatment of APCs is useful for controlling falciparum malaria. For vivax malaria, 120 APCs were identified among the 716 residents living in five villages. Comparing the monthly incidence of vivax malaria in two villages where the APCs were treated with the incidence in two villages where APCs were not treated yielded contradictory results and no clear differences in the incidence were observed (Z = -0.09, p = 0.933). Interestingly, a follow-up study showed that the frequency of clinical relapse in both the treated and untreated APCs was similar to the frequency seen in patients treated for primary clinical infections, thus indicating that vivax clinical immunity in the population is not species specific but only strain specific.