1000 resultados para Lutzomyia (Helcocyrtomyia) pusilla sp. n.
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The outspread and urbanization of visceral leishmaniasis (VL) in Campo Grande, state of Mato Grosso do Sul, lead us to undertake the present study over diversity and abundance of sand flies in the urban area to compare with previous search carried out during 1999/2000, before the identification of the disease in the human population.The captures were carried out with automatic light traps, weekly, from February 2004 to February 2005 on three sites including a forested area (Zé Pereira), two peridomicilies (shelters of domestic animals and cultivation areas), and intradomicilie. In the present study 110 collections were obtained during 13 months for 1320 h of collections, resulting in 5004 specimens, 3649 males and 1355 females belonging to the 20 following species: Brumptomyia avellari, Brumptomyia sp., Bichromomyia flaviscutellata, Evandromyia lenti, E. termitophila, E. cortelezzii, E. borrouli, Lutzomyia sp., L. longipalpis, Micropygomyia quinquefer, N. antunesi, N. whitmani, Pintomyia christenseni, Pi. damascenoi, Psathyromyia aragaoi, Ps. campograndensis, Ps. hermanlenti, Ps. shannoni, Pychodopygus claustrei, and Sciopemyia sordellii. L. longipalpis was the most abundant species in the anthropic environment with 92.22% of the captures. This shows an increase of sixty times in the density of L. longipalpis compared to the last sand fly evaluation in 1999/2000. The high density of L. longipalpis in Campo Grande is the main factor of risk in transmission of the disease to human in the urban area. The capture of N. antunesi, typical specie from Amazonian region, in Mato Grosso do Sul is reported for the first time.
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Leishmania (Viannia) peruviana was isolated from 1/75 Lutzomyia peruensis captured during May 2006 in an endemic cutaneous leishmaniasis region of the Peruvian Andes (Chaute, Huarochiri, Lima, Peru). Sand fly gut with promastigotes was inoculated into a hamster and the remaining body was fixed in ethanol. L. (Viannia) sp. was determined by polymerase chain reaction (PCR), and Leishmania species through molecular genotyping by PCR-restriction fragment length polymorphism analyses targeting the genes cpb and hsp70, resulting L. (V.) peruviana. The infected sand fly appeared 15 days after the rains finished, time expected and useful real time data for interventions when transmission is occurring.
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The distribution of Lutzomyia longipalpis is heterogeneous with a pattern of high abundance areas (HAAs) embedded in a matrix of low abundance areas (LAAs). The objective of this study was to describe the variability in the abundance of Lu. longipalpis at two different spatial levels and to analyse the relationship between the abundance and multiple environmental variables. Of the environmental variables analysed in each household, the condition that best explained the differences in vector abundance between HAA-LAA was the variable "land_grass", with greater average values in the peridomestic environments within the LAA, and the variables "#sp tree", "#pots" and "dist_water" that were higher in the HAA. Of the environmental variables analysed in the patches, the variable "unpaved_streets" was higher in the LAAs and the variable "prop_inf_dogs" was higher in the HAAs. An understanding of the main environmental variables that influence the vector distribution could contribute to the development of strategies for the prevention and control of visceral leishmaniasis (VL). This is the first work in which environmental variables are analysed at the micro-scale in urban areas at the southern edge of the current range of Lu. longipalpis. Our results represent a significant contribution to the understanding of the abundance of the vector in the peridomestic habitats of the region.
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Visceral leishmaniasis (VL) in Brazil is transmitted by the phlebotomine Lutzomyia longipalpis and in some midwestern regions by Lutzomyia cruzi. Studies of the phlebotomine fauna, feeding habits and natural infection rate by Leishmania contribute to increased understanding of the epidemiological chain of leishmaniases and their vectorial capacity. Collections were performed in Jaciara, state of Mato Grosso from 2010-2013, during which time 2,011 phlebotomines (23 species) were captured (68.70% Lu. cruzi and 20.52% Lutzomyia whitmani). Lu. cruzi females were identified by observing the shapes of the cibarium (a portion of the mouthpart) and spermatheca, from which samples were obtained for polymerase chain reaction to determine the rates of natural infection. Engorged phlebotomines were assessed to identify the blood-meal host by ELISA. A moderate correlation was discovered between the number of Lu. cruzi and the temperature and the minimum rate of infection was 6.10%. Twenty-two females were reactive to the antisera of bird (28%), dog (3.30%) and skunk (1.60%). We conclude that Lu. cruzi and Lu. whitmani have adapted to the urban environment in this region and that Lu. cruzi is the most likely vector of VL in Jaciara. Moreover, maintenance of Leishmania in the environment is likely aided by the presence of birds and domestic and synanthropic animals.
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Lutzomyia chotensis sp. nov. (Diptera, Psychodidae, Phlebotominae) from Cajamarca Department, Peru, is described and its taxonomic position discussed.
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Pós-graduação em Doenças Tropicais - FMB
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Pós-graduação em Medicina Veterinária - FMVZ
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A leishmaniose tegumentar americana (LTA) é uma doença infecciosa, sendo uma zoonose de alta freqüência, endêmica na região Amazônica, transmitidas por flebotomÃneos dos gêneros Psychodopygus e Lutzomyia. A Serra dos Carajás, situada no Sudeste do Pará, é amplamente explorada por empresas extrativistas e como resultado, concerniu-se que a LTA transformar-se-ia em um dos principais perigos de saúde para os trabalhadores, devido à prática de desmatamento e a construção de estradas de acesso e escoamento do minério. Assim, o objetivo deste estudo foi avaliar a infecção natural por Leishmania em flebotomÃneos da região da Serra dos Carajás através da técnica PCR. As capturas de flebotomÃneos foram realizadas em três diferentes ecótopos, Parque Zoobotânico de Quarentena, APA do Gelado e Tapirapé-AquirÃ, com auxÃlio de armadilhas de luz tipo CDC e Shannon, durante o perÃodo noturno a partir do crepúsculo vespertino. Os flebotomÃneos capturados foram identificados de acordo com Young & Duncan, 1994 e congelados em N2. Foram congelados 5.947 flebotomÃneos, com 3.495 fêmeas, dentre estas, 550 espécimes foram testadas. Foi realizada as extrações de DNA das amostras utilizando-se SDS e KOAc e precipitação com etanol 96%. Foi realizada a PCR, amplificando-se a região do gene do mini-exon com os iniciadores S1629 (5’GGGAATTCAATAWAGTACAGAAACTG3’) e S1630 (5’GGGAAGCTTCTGTACTWTATTGGTA 3’). O DNA de Leishmania foi detectado em 36 (6,5%) flebotomÃneos, sendo 34 do subgênero Viannia detectados em 30 Psychodopygus wellcomei/complexus, três Lutzomyia whitmani e um Lutzomyia shawi. Duas infecções por Leishmania amazonensis foram detectados em Psychodopygus wellcomei/complexus. Tapirapé – AquirÃ, APA do Gelado e Parque Zoobotânico de Quarentena apresentaram altas taxas de infecção natural em flebotomÃneos 6,54 %, 5,96 % e 7,92%, respectivamente. Psychodopygus wellcomei/complexus ainda apresenta destacado papel de vetor de Leishmania causadoras de LTA na região em questão. Estudos sobre o poder vetorial das espécies Lu. whitmani e Lu. shawi infectados naturalmente por Leishmania na Serra dos Carajás devem ser intensificados, verificando se essas espécies podem estar atuando no ciclo de transmissão da LTA na Serra dos Carajás. Estudos que melhor esclareçam a variação da prevalência de diferentes espécies de flebotomÃneos e o conhecimento das taxas de infecção também devem ser intensificadas na região da Serra dos Carajás.
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A Leishmaniose é uma doença causada pelo protozoário Leishmania sp, podendo acometer homem e animais dependendo da espécie do parasita, São transmitidos pelos flebotomÃneos fêmeas, insetos do gênero Lutzomyia, que ao exercer o hematofagismo inoculam as formas promastigota infectantes, mas recentemente, tem sido levantado hipóteses sobre a transmissão por carrapatos. Segundo a vigilância epidemiológica de Imperatriz-MA a cidade é endêmica tanto para Leishmaniose Tegumentar (LT) quanto para a Leishmaniose Visceral (LV). Este trabalho teve como objetivo principal investigar a presença de DNA de Leishmania sp em carrapatos coletados de cães atendidos em petshop e Centro de Controle de Zoonoses do municÃpio de Imperatriz utilizando a técnica de PCR. O DNA foi extraÃdo a partir de 640 carrapatos fêmeas e testadas utilizando o primer que amplifica o gene de mini-exon de Leishmania sp. Os carrapatos foram coletados de 41 cães de diferentes bairros da cidade de Imperatriz. A maioria dos carrapatos foram identificados como Rhipicephalus sanguineus. Os seguintes sinais clÃnicos sugestivos de leishmaniose foram observados nos cães: onicogrifose em 53,65% (22/41); úlceras em 63,41% (26/41), a perda de cabelo e inapetência em 39,02% (16/41). Cento e setenta carrapatos (26,56%) coletados de 16 cães apresentaram DNA de Leishmania do subgênero Viannia, responsável pela forma cutânea da doença. Não foi detectado nenhum DNA de Leishmania infantum chagasi. Carrapatos infectados foram coletados de ambos os cães sintomáticos e assintomáticos. Embora ainda não tenha sido demonstrado que os carrapatos possam transmitir Leishmania aos cães sob condições naturais, o resultado deste estudo tem vários aspectos importantes, pois é um método não-invasivo de detecção, capaz de diferenciar os grupos de parasitas em circulação, em especial se os animais não têm lesões, pode ser um indicador biológico em locais onde não é feito uma investigação sorológica e nem entomológica, podendo dar suporte aos programas de vigilância de saúde local.
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Pós-graduação em Ciência e Tecnologia Animal - FEIS
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Pós-graduação em Ciência Animal - FMVA
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Balsamic vinegar (BV) is a typical and valuable Italian product, worldwide appreciated thanks to its characteristic flavors and potential health benefits. Several studies have been conducted to assess physicochemical and microbial compositions of BV, as well as its beneficial properties. Due to highly-disseminated claims of antioxidant, antihypertensive and antiglycemic properties, BV is a known target for frauds and adulterations. For that matter, product authentication, certifying its origin (region or country) and thus the processing conditions, is becoming a growing concern. Striving for fraud reduction as well as quality and safety assurance, reliable analytical strategies to rapidly evaluate BV quality are very interesting, also from an economical point of view. This work employs silica plate laser desorption/ionization mass spectrometry (SP-LDI-MS) for fast chemical profiling of commercial BV samples with protected geographical indication (PGI) and identification of its adulterated samples with low-priced vinegars, namely apple, alcohol and red/white wines.
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The taxonomic position of a bacterium isolated from water samples from the Rio Negro, in Amazon, Brazil, was determined by using a polyphasic approach. The organism formed a distinct phyletic line in the Chromobacterium 16S rRNA gene tree and had chemotaxonomic and morphological properties consistent with its classification in this genus. It was found to be closely related to Chromobacterium vaccinii DSM 25150(T) (98.6Â % 16S rRNA gene similarity) and shared 98.5Â % 16S rRNA gene similarity with Chromobacterium piscinae LGM 3947(T). DNA-DNA relatedness studies showed that isolate CBMAI 310(T) belongs to distinct genomic species. The isolate was readily distinguished from the type strain of these species using a combination of phenotypic and chemotaxonomic properties. Thus, based on genotypic and phenotypic data, it is proposed that isolate CBMAI 310(T) (=DSM 26508(T)) be classified in the genus Chromobacterium as the type strain of a novel species, namely, Chromobacterium amazonense sp. nov.
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American visceral leishmaniasis (AVL) is an emerging disease in the state of São Paulo, Brazil. Its geographical expansion and the increase in the number of human cases has been linked to dispersion of Lutzomyia longipalpis into urban areas. To produce more accurate risk maps we investigated the geographic distribution and routes of expansion of the disease as well as chemotype populations of the vector. A database, containing the annual records of municipalities which had notified human and canine AVL cases as well as the presence of the vector, was compiled. The chemotypes of L. longipalpis populations from municipalities in different regions of São Paulo State were determined by Coupled Gas Chromatography - Mass Spectrometry. From 1997 to June 2014, L. longipalpis has been reported in 166 municipalities, 148 of them in the Western region. A total of 106 municipalities were identified with transmission and 99 were located in the Western region, where all 2,204 autochthonous human cases occurred. Both the vector and the occurrence of human cases have expanded in a South-easterly direction, from the Western to central region, and from there, a further expansion to the North and the South. The (S)-9-methylgermacrene-B population of L. longipalpis is widely distributed in the Western region and the cembrene-1 population is restricted to the Eastern region. The maps in the present study show that there are two distinct epidemiological patterns of AVL in São Paulo State and that the expansion of human and canine AVL cases through the Western region has followed the same dispersion route of only one of the two species of the L. longipalpis complex, (S)-9-methylgermacrene-B. Entomological vigilance based on the routes of dispersion and identification of the chemotype population could be used to identify at-risk areas and consequently define the priorities for control measures.