56 resultados para Lagostomus maxi mus


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São relatados estudos epidemiológicos feitos em um foco potencial de Tripanosomiase americana no bairro Santa Teresa na Cidade do Rio de Janeiro. Enquanto a pesquisa intensiva de Triatomideos em 40 "cafuas" existentes em áreas silvestres do local foi negativa, 11 exemplares (seis fêmeas e cinco machos) de Panstrongylus mzgistus (Burmeister, 1835) foram capturados em um grande edifício do local, estando nove infectados pelo Trypanosoma (S.) cruzi. Positivamente, tais insetos aí vieram ter atraídos pela grande iluminação dêsse edifício, seus focos de criação encontrando-se na mata. Não foi possível demonstrar de modo indiscutível tais criadouros em cuidadosas pesquisas feitas durante 10 meses. Todavia, em ninho de gambá (Didelphis marsupialis) foi achado uma casca de ovo de Triatomídeo, o qual pode ser atribuído ao P. megistus. Também em ninhos dos mesmos marsupiais e também de ratos silvestres foi descoberto um novo Triatomídeo (Parabelminus carioca Lent, 1943) novo transmissor do Trypanosoma (S.) cruzi, e que foi motivo de uma publicação anterior. De 42 exemplares de gambás (D. marsupialis) submetidos ao exame direto do sangue e ao xenodiagnóstico, 15 (ou seja 35.7 %) mostraram-se naturalmente infectados pelo T. (S.) cruzi. Dêstes quinze, quatro foram negativos ao exame direto de sangue, mas positivos ao xenodiagnóstico. Outro marsupial (Metachirus nudicaudatus Geoffroy), antes ainda não referido como depositário silvestre do Trypanosoma (S.) cruzi, foi verificado com infecção natural pelo xenodiagnóstico. A amostra "gambᔠde T. (S.) cruzi, mostrou-se patogênica para cao rhesus, gato e cobaio. Foi possível cultivá-la em meios de Nöller e NNN. A amostra "cuica" foi capaz de infectar cão e cobaio e também foi cultivada. A amostra "panstrongylus" também infectou cão e cobaio. Camondongos (Mus musculus, var albina) inoculados com qualquer uma das amostras, não apresentaram infecção sanguínea apreciável ao exame direto, enquanto que exibiam uma infecção peritoneal. Exame clínico sumário de 58 indivíduos residentes no local, permitiram o encontro de duas crianças com sintomas atribuíveis a doença de Chagas, mas o xenodiagnóstico dêstes pacientes foi negativo. Exames de sangue à fresco e xenodiagnóstico de 19 cães (cerca de 50 % dos existentes na zona estudada) foram negativos. Assim também de dois gatos. A possibilidade de infecção humana pelo T. (S.) cruzi no local estudado, é remota, considerados os hábitos silvestres aí observados nos transmissores. Porém, uma vez que aí existem depositários naturais abundantes dêsse tripanosoma, e também transmissores com alto índice de infestação, é possível a ocurrência de casos clínicos da moléstia, tanto mais quando se recorda que P. megistus tem geralmente habitos domiciliares em outras regiões do País, fàcilmente podendo adaptar-se às "cafuas" existentes no local. Por outro lado, a presença aí de famílias oriundas de zonas de endemia (Minas) poderá ainda apressar a existencia de condições domésticas de contágio.

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Mostram os A. A. que não são rigorosamente comparaveis os dados disponiveis sôbre a incidência da peste no Brasil, dentro de um período largo, uma vez que só ultimamente se vem conhecendo em vida um alto percentual dos casos da doença. Distribuindo por triênios os 2610 casos ocorridos no período 1934-1945, verifica-se o contraste do primeiro (1934-36) com os demais, tendo tocado àquele 47% do total. Coincide esse declínio geral com a ação do Govêrno Federal, que, em 1936, iniciou campanha coordenada contra a peste, intensificada com a criação, em 1941, do S. N. P. Restrita agora a doença ao chamado Nordeste brasileiro, continua Pernambuco sendo o seu principal foco, cabendo-lhe, desde 1934, 40 a 50% dos casos. Examinando os ocorridos no quinquênio 1941-1945, sôbre o qual há informes mais complexos, mostram os A. A. que mais de 50% desses casos se verificaram em pessoas com menos de 20 anos de idade, mais de 50% entre pardos e mais de 50% no sexo masculino. Afora 9 casos de peste pulmonar e 13 de forma septicêmica, os demais 724 foram de peste bubônica, 2/3 dos quais com localização inguino-crural. Em favor da benignidade da peste no nordeste, fala a letalidade, de 26% no quinquênio referido, e que se reduz, aliás, a 12% entre os doentes vistos em vida e medicados pelo Serviço. A letalidade é mais alta a partir dos 50 anos, maior entre as mulheres e entre pardos e negros. O emprêgo das sulfas, em substituição ao sôro, trouxe redução da letalidade. Estudando as técnicas de laboratório usadas para o diagnóstico da peste, graças ás quais se positivaram cêrca de 50% dos casos, examinam o valor da digitotomia em comparação com a viscerotomia e o da pesquisa do germe no suco ganglionar e no sangue. Respeito aos roedores domésticos com responsabilidade epidemiológica, aludem ao papel talvez atribuível ao Mus musculus. Comentam os achados de peste em roedores silvestres. Estudam os índices pulicidianos levantados em 8 cidades e que, na maioria delas, parecem mais elevados na época das chuvas. A X. cheopis é a pulga que predomina no Brasil na região tropical, decrescendo a sua frequência com o aumento de latitude, ao inverso do que sucede com a X. brasiliensis que, em S. Paulo, cidade de clima temperado, é a espécie preponderante. Chuvas e temperatura parecem afetar diferentemente as duas espécies. Estudam, finalmente, a influência dos elementos climáticos sôbre a peste humana, mostrando que, no Brasil, a influência no período 1941-45 foi maior na época da primavera e do verão austrais; e que, em 4 distritos, para os quais há normais climatológicas disponiveis, a doença ocorreu mais intensamente em períodos posteriores aos de maior precipitação, e em que a temperatura média mensal variou entre 19] e 26º e a humildade relativa entre 66 e 83%.

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Neste trabalho, está relatada a metodologia sobre a criação e manejo de uma cepa de Calomys callosus Rengger, 1830 (Rodentia-Cricetidae) chamada Canabrava, em condicoes de cativeiro. Os resultados mostram que este roedor pode se constituir em mais uma opção como animal de laboratório. No cativeiro C. callosus apresenta varias vantagens tais como: fácil manuseio, produtividade alta, reprodução durante todo ano, aparente resistência as infecções comuns a ratos (Rattus norvegicus), camundongos (Mus musculus) e cobaias (Cavia aperea). Por ser roedor de pequeno porte, a criação de C. callosus não requer grandes espaços e custos altos.

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The evaluation of the role of rodents as natural hosts of Schistosoma mansoni was studied at the Pamparrão Valley, Sumidouro, RJ, with monthly captures and examination of the animals. Twenty-three Nectomys squamipes and 9 Akodom arviculoides with a shistosomal infection rate of 56.5% and 22.2% respectively eliminated a great majority of viable eggs. With a strain isolated from one of the naturally infected N. squamipes, we infected 75% of simpatric Biomphalaria glabrata and 100% of albino Mus musculus mice. The adult worms, isolated from N. squamipes after perfusion were located mainly in the liver (91.5%) and the mesenteric veins (8.5%). The male/female proportion was 2:1. The eggs were distributed on small intestine segments (proximal, medial and distal portions) and the large intestine without any significant differences in egg concentration of these segments. In A. arviculoides, the few eggs eliminated by the stools were viable and there was litlle egg retention on intestinal segments. Considering the ease to complete S. mansoni biological cycle in the Nectomys/Biomphalaria/Nectomys system under laboratory conditions, probably the same is likely to occur in natural conditions. In support to this hypotesis there are also the facts that human mansonic shistosomiasis has a very low prevalence in Sumidouro and endemicity among the rodents has not changed even after repetead treatments of the local patients. Based on our experiments, we conclude that N. squamipes has become a natural host of S. mansoni and possibly may participate in keeping the cycle of schistosomiasis transmission at Pamparrão Valley.

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The spectrum of intestinal parasites present in the SwissWebster, C57B1/6 and DBA/2 mice strains from different animal houses was identified and prevalences compared. Three parasites were observed during the course ofthis study, namely the cestode. Vampirolepis nana (Siebold, 1852) Spasskii, 1954(=Hymenolepis nana) and the nematodes Aspiculuris tetraptera (Nitzsch, 1821) Schulz, 1924 and Syphacia obvelata (Rudolphi, 1802) Seurat, 1916. The scope of thisinvestigation has been widened to also include morphometric data on the parasites, to further simplify their identification, since the presence of helminths in laboratory animals is regarded as a restricting factor for the proper attainment of experimental protocols.

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Eggs, immature mosquito collections were made at Cosquin, La Calera ( Chaco phytogeographic region), Villa Allende and Villa del Rosario (Espinal phytogeographic region) during April/September of two consecutive years 1989, 1990. Specific immature habitats in each locality were identified and sampled monthly. Eggs and/or immatures of Aedes albifasciatus, Ae. fluviatilis, Anopheles albitarsis, culex acharistus, Cx. apicinus, Cx. bidens, Cx. coronator, Cx. chidesteri, Cx. dolosus, Cx. maxi, Cx. quinquefasciatus, Cx. saltanensis, Psorophora ciliata and Uranotaenia lowii were collected. Three species (Cx. acharistus, Cx. dolosus and Cx. quinquefasciatus) were collected during the sampling period for all developmental stages. This suggests that immature of these species do not overwinter but continue to develop throughout the cold autumn and winter seasons.

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In order to classify mosquito immature stage habitats, samples were taken in 42 localities of Córdoba Province, Argentina, representing the phytogeographic regions of Chaco, Espinal and Pampa. Immature stage habitats were described and classified according to the following criteria: natural or artificial; size; location related to light and neighboring houses; vegetation; water: permanence, movement, turbidity and pH. Four groups of species were associated based on the habitat similarity by means of cluster analysis: Aedes albifasciatus, Culex saltanensis, Cx. mollis, Cx. brethesi, Psorophora ciliata, Anopheles albitarsis, and Uranotaenia lowii (Group A); Cx. acharistus, Cx. quinquefasciatus, Cx. bidens, Cx. dolosus, Cx. maxi and Cx. apicinus (Group B); Cx. coronator, Cx. chidesteri, Mansonia titillans and Ps. ferox (Group C); Ae. fluviatilis and Ae. milleri (Group D). The principal component analysis (ordination method) pointed out that the different types of habitats, their nature (natural or artificial), plant species, water movement and depth are the main characters explaining the observed variation among the mosquito species. The distribution of mosquito species by phytogeographic region did not affect the species groups, since species belonging to different groups were collected in the same region.

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Abdominal angiostrongylosis is a nematode infection of wild rodents. Human infection may result in severe abdominal disease and has been reported from several countries in the Americas. The domestic mouse, Mus musculus, has not been found with natural infection and, like other urban rodents, should not be considered a natural host for Angiostrongylus costaricensis. Quantification of parasitic forms released for transmission may better express the coevolutionary status in parasite-host relationship. With this objective, five groups of experimentally infected Swiss mice were followed for up to 155 days post-infection (PI) days and the quantification of first stage larvae (L1) output revealed: an irregular elimination of L1 and a huge variation in the patency period (1 to 114 days) and in the number of L1 eliminated daily by individual animals (1 to 6340 L1/g). Overall mortality was 72% (range: 28% to 100%) at seven weeks PI. In conclusion, abdominal angiostrongylosis in M. musculus presents high mortality and a very variable and irregular elimination of L1 in feces.

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The aim of the present research was to evaluate the potential of Nectomys rattus, the "water rat", to develop Schistosoma mansoni infection. Comparison with N. squamipes was carried out. Both species of rodents were submitted to transcutaneous infection using different infective cercariae loads: 50, 100 or 500. N. rattus showed high susceptibility to S. mansoni, with an infection rate of 71%. Rodents were able to excrete viable eggs of S. mansoni in the feaces during all infection period. For both species, the small intestine, followed by the liver and the large intestine, presented the highest concentration of eggs among the surveyed organs. Infection caused no animal death. Moreover, N. rattus accomplished the parasite's life cycle, by infecting the snails Biomphalaria glabrata and later Mus musculus. These evidences indicate that both N. rattus, as for N. squamipes are potential reservoirs for schistosomiasis in Brazil. Considering the fact that N. rattus and N. squamipes exist in the same natural ecosystems of S. mansoni, we suggest that these rodents must be regarded as influential factors in epidemiology surveys.

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A computer software for image analysis (IMAGE PRO PLUS, MEDIA CYBERNETICS) was utilized in male and females adult worms, aiming the morphological characterization of Schistosoma mansoni samples isolated from a slyvatic rodent, Nectomys squamipes, and humans in Sumidouro, Rio de Janeiro, Brazil and recovered from Mus musculus C3H/He. The following characters for males's testicular lobes were analyzed: number, area, density, larger and smaller diameter, longer and shorter axis and perimeter and extension; for females: area, longer and shorter axis, larger and smaller diameter and perimeter of the eggs and spine; oral and ventral suckers area and distance between them in both sex were determined. By the analysis of variance (one way ANOVA) significant differences (p<0.05) were observed in all studied characters, except for the density of testicular lobes. Significant differences (p<0.05) were detected for all characters in the female worms. Data ratify that sympatric isolates present phenotypic differences and the adult female characters are useful for the proper identification of S. mansoni isolates.

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The water rat, Nectomys squamipes, closely involved in schistosomiasis transmission in Brazil, has been found naturally infected simultaneously by Schistosoma mansoni and Echinostoma paraensei. Laboratory experiments were conducted to verify parasitic interaction in concurrent infection. It was replicated four times with a total of 42 water rats and essayed two times with 90 mice pre-infected with E. paraensei. Rodents were divided into three groups in each replication. A wild strain recently isolated from Sumidouro, RJ, and a laboratory strain of S. mansoni from Belo Horizonte (BH) was used. Rats infected with E. paraensei were challenged 4 weeks later with S. mansoni and mice 2 or 6 weeks after the infection with S. mansoni. Necropsy took place 8 weeks following S. mansoni infection. The N. squamipes treatment groups challenged with S. mansoni RJ strain showed a significant decrease (80 and 65%) in the S. mansoni parasite load when compared with their respective control groups. There was a significant change or no change in the hosts challenged with the BH strain. The persistence time of E. paraensei within host was extended in relation to control groups, with a consequent enhancement of the number of recovered worm. An E. paraensei strain-specific influence on S. mansoni parasitism is reported. This paper presents some experimental data about this interaction in N. squamipes and Mus musculus.

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Experimental models of Schistosoma mansoni infections in mammals have contributed greatly in understanding the pathology and pathogenesis of human infection. The absence of earlier reviews regarding specific strains of the Amazon region prompted research, which the main objective was to describe histopathological lesions in different phases of schistosomiasis in a murine model using PC (Pará) and LILA (Maranhão) S. mansoni strains. One hundred and eighty young female albino swiss mice (Mus musculus) were used and were randomly divided into five groups (PC-01, PC-02, LILA-01, LILA-02, and controls), according to the number of cercariae injected and the strain adopted. Animals were sacrificed in predetermined periods (35, 56, 112, 156, and 180 days) in an attempt to follow the evolution of the disease in the histological sections of their tissues at different phases of infection. Our findings were compatible with the data already described by others authors using different strains of S. mansoni, making it possible to identify some peculiarities, which are discussed in this work. In conclusion, the strains of parasite used did not modify the histopathological findings in the tissues of infected mice in any significant way when compared with the results of other studies using different strains.

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To classify mosquito species based on common features of their habitats, samples were obtained fortnightly between June 2001-October 2003 in the subtropical province of Chaco, Argentina. Data on the type of larval habitat, nature of the habitat (artificial or natural), size, depth, location related to sunlight, distance to the neighbouring houses, type of substrate, organic material, vegetation and algae type and their presence were collected. Data on the permanence, temperature, pH, turbidity, colour, odour and movement of the larval habitat's water were also collected. From the cluster analysis, three groups of species associated by their degree of habitat similarity were obtained and are listed below. Group 1 consisted of Aedes aegypti. Group 2 consisted of Culex imitator, Culex davisi, Wyeomyia muehlensi and Toxorhynchites haemorrhoidalis separatus. Within group 3, two subgroups are distinguished: A (Psorophora ferox, Psorophora cyanescens, Psorophora varinervis, Psorophora confinnis, Psorophora cingulata, Ochlerotatus hastatus-oligopistus, Ochlerotatus serratus, Ochlerotatus scapularis, Culex intrincatus, Culex quinquefasciatus, Culex pilosus, Ochlerotatus albifasciatus, Culex bidens) and B (Culex maxi, Culex eduardoi, Culex chidesteri, Uranotaenia lowii, Uranotaenia pulcherrima, Anopheles neomaculipalpus, Anopheles triannulatus, Anopheles albitarsis, Uranotaenia apicalis, Mansonia humeralis and Aedeomyia squamipennis). Principal component analysis indicates that the size of the larval habitats and the presence of aquatic vegetation are the main characteristics that explain the variation among different species. In contrast, water permanence is second in importance. Water temperature, pH and the type of larval habitat are less important in explaining the clustering of species.

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We tested sera from 286 agricultural workers and 322 rodents in the department of Córdoba, northeastern Colombia, for antibodies against two hantaviruses. The sera were analysed by indirect ELISA using the lysate of Vero E6 cells infected with Maciel virus (MACV) or the N protein of Araraquara virus (ARAV) as antigens for the detection of antibodies against hantaviruses. Twenty-four human sera were IgG positive using one or both antigens. We detected anti-MACV IgG antibodies in 10 sera (3.5%) and anti-ARAV antibodies in 21 sera (7.34%). Of the 10 samples that were positive for MACV, seven (70%) were cross-reactive with ARAV; seven of the 21 ARAV-positive samples were cross-reactive with MACV. Using an ARAV IgM ELISA, two of the 24 human sera (8.4%) were positive. We captured 322 rodents, including 210 Cricetidae (181 Zygodontomys brevicauda, 28 Oligoryzomys fulvescens and 1 Oecomys trinitatis), six Heteromys anomalus (Heteromyidae), one Proechimys sp. (Echimyidae) and 105 Muridae (34 Rattus rattus and 71 Mus musculus). All rodent sera were negative for both antigens. The 8.4% detection rate of hantavirus antibodies in humans is much higher than previously found in serosurveys in North America, suggesting that rural agricultural workers in northeastern Colombia are frequently exposed to hantaviruses. Our results also indicate that tests conducted with South American hantavirus antigens could have predictive value and could represent a useful alternative for the diagnosis of hantavirus infection in Colombia.

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A serological survey of Toxoplasma gondii was conducted on 766 domestic and peridomestic rodents from 46 trapping sites throughout the city of Niamey, Niger. A low seroprevalence was found over the whole town with only 1.96% of the rodents found seropositive. However, differences between species were important, ranging from less than 2% in truly commensal Mastomys natalensis, Rattus rattus and Mus musculus, while garden-associated Arvicanthis niloticus displayed 9.1% of seropositive individuals. This is in line with previous studies on tropical rodents - that we reviewed here - which altogether show that Toxoplasma seroprevalence in rodent is highly variable, depending on many factors such as locality and/or species. Moreover, although we were not able to decipher statistically between habitat or species effect, such a contrast between Nile grass rats and the other rodent species points towards a potentially important role of environmental toxoplasmic infection. This would deserve to be further scrutinised since intra-city irrigated cultures are extending in Niamey, thus potentially increasing Toxoplasma circulation in this yet semi-arid region. As far as we are aware of, our study is one of the rare surveys of its kind performed in Sub-Saharan Africa and the first one ever conducted in the Sahel.