8 research outputs found

    Quasispecies detection in human respiratory syncytial virus (HRSV) samples in absence and presence of polyclonal serum

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    O vírus respiratório sincicial humano (HRSV) é um dos agentes patogênicos respiratórios de grande importância clínica, tendo em vista que acomete 64 milhões de crianças por ano em todo o mundo. A resposta imune do hospedeiro e a variabilidade genética do HRSV podem interferir na produção de uma vacina eficaz, tal como a presença de quasispecies na população viral. O objetivo deste trabalho foi detectar quasispecies em amostras de HRSV e verificar se soros obtidos da criança na fase convalescente da doença e de sua respectiva mãe selecionam estes mutantes. Uma alteração não sinonímia foi detectada no gene F em um dos clones seqüenciados, enquanto duas alterações sinonímias e duas não sinonímias foram encontradas no gene G do HRSV, sendo as últimas no mesmo nucleotídeo. Um dos clones pré-selecionados com soro humano apresentou a mesma alteração não-sinonímia, encontrada na ausência de anticorpos no gene G. Os resultados sugerem que diferentes sequencias virais presentes em menor quantidade na população podem ser selecionadas pelo sistema imunológico do hospedeiro.Human respiratory syncytial virus (HRSV) is one of the most important clinical respiratory pathogens, since 64 millions children in the world are infected by this agent every year. Host immunity and viral genetic variability are important factors to a vaccine development, besides quasispecies presence in the viral population. In this work, HRSV quasispecies were detected in clinical samples in absence and presence of human polyclonal serum collected by children in the convalescent phase and mother serum. A non-synonymy variation was found in the F gene in antibodies absence. Four mutations were found at HRSV G2 in polyclonal serum absence. Two were synonymy and two were non-synonymy variation, the last in the same nucleotide. A non-synonymy mutation was found in the G2 region in presence of polyclonal serum collected from child convalescent phase. This alteration was the same of the observed in absence of polyclonal serum so it is possible that host antibodies can selected different viral minority sequences present in the population

    Genetic variability in G2 and F2 region between biological clones of human respiratory syncytial virus with or without host immune selection pressure

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    Human respiratory syncytial virus (HRSV) is an important respiratory pathogens among children between zero-five years old. Host immunity and viral genetic variability are important factors that can make vaccine production difficult. In this work, differences between biological clones of HRSV were detected in clinical samples in the absence and presence of serum collected from children in the convalescent phase of the illness and from their biological mothers. Viral clones were selected by plaque assay in the absence and presence of serum and nucleotide sequences of the G2 and F2 genes of HRSV biological clones were compared. One non-synonymous mutation was found in the F gene (Ile5Asn) in one clone of an HRSV-B sample and one non-synonymous mutation was found in the G gene (Ser291Pro) in four clones of the same HRSV-B sample. Only one of these clones was obtained after treatment with the child's serum. In addition, some synonymous mutations were determined in two clones of the HRSV-A samples. In conclusion, it is possible that minor sequences could be selected by host antibodies contributing to the HRSV evolutionary process, hampering the development of an effective vaccine, since we verify the same codon alteration in absence and presence of human sera in individual clones of BR-85 sample

    One-step reverse transcriptase polymerase chain reaction for the diagnosis of respiratory syncytial virus in children

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    Human respiratory syncytial virus (HRSV) is the main cause of acute lower respiratory tract infections in infants and children. Rapid diagnosis is required to permit appropriate care and treatment and to avoid unnecessary antibiotic use. Reverse transcriptase (RT-PCR) and indirect immunofluorescence assay (IFA) methods have been considered important tools for virus detection due to their high sensitivity and specificity. In order to maximize use-simplicity and minimize the risk of sample cross-contamination inherent in two-step techniques, a RT-PCR method using only a single tube to detect HRSV in clinical samples was developed. Nasopharyngeal aspirates from 226 patients with acute respiratory illness, ranging from infants to 5 years old, were collected at the University Hospital of the University of Sao Paulo (HU-USP), and tested using IFA, one-step RT-PCR, and semi-nested RT-PCR. One hundred and two (45.1%) samples were positive by at least one of the three methods, and 75 (33.2%) were positive by all methods: 92 (40.7%) were positive by one-step RT-PCR, 84 (37.2%) by IFA, and 96 (42.5%) by the semi-nested RT-PCR technique. One-step RT-PCR was shown to be fast, sensitive, and specific for RSV diagnosis, without the added inconvenience and risk of false positive results associated with semi-nested PCR. The combined use of these two methods enhances HRSV detection. (C) 2007 Elsevier B.V. All rights reserved

    Molecular epidemiology of the SH (small hydrophobic) gene of human respiratory syncytial virus (HRSV), over 2 consecutive years

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    Human respiratory syncytial virus (HRSV) strains were isolated from nasopharyngeal aspirates collected from 965 children between 2004 and 2005, yielding 424 positive samples. We sequenced the small hydrophobic protein (SH) gene of 117 strains and compared them with other viruses identified worldwide. Phylogenetic analysis showed a low genetic variability among the isolates but allowed us to classify the viruses into different genotypes for both groups, HRSVA and HRSVB. It is also shown that the novel BA-like genotype was well segregated from the others, indicating that the mutations are not limited to the G gene. (C) 2011 Elsevier B.V. All rights reserved.Brazilian Research Council (CNPq)Brazilian Research Council (CNPq)Research Support Foundation of the State of Sao Paulo, Brazil (FAPESP)FAPESP (Research Support Foundation of the State of Sao Paulo, Brazil

    NEOTROPICAL CARNIVORES: a data set on carnivore distribution in the Neotropics

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    Mammalian carnivores are considered a key group in maintaining ecological health and can indicate potential ecological integrity in landscapes where they occur. Carnivores also hold high conservation value and their habitat requirements can guide management and conservation plans. The order Carnivora has 84 species from 8 families in the Neotropical region: Canidae; Felidae; Mephitidae; Mustelidae; Otariidae; Phocidae; Procyonidae; and Ursidae. Herein, we include published and unpublished data on native terrestrial Neotropical carnivores (Canidae; Felidae; Mephitidae; Mustelidae; Procyonidae; and Ursidae). NEOTROPICAL CARNIVORES is a publicly available data set that includes 99,605 data entries from 35,511 unique georeferenced coordinates. Detection/non-detection and quantitative data were obtained from 1818 to 2018 by researchers, governmental agencies, non-governmental organizations, and private consultants. Data were collected using several methods including camera trapping, museum collections, roadkill, line transect, and opportunistic records. Literature (peer-reviewed and grey literature) from Portuguese, Spanish and English were incorporated in this compilation. Most of the data set consists of detection data entries (n = 79,343; 79.7%) but also includes non-detection data (n = 20,262; 20.3%). Of those, 43.3% also include count data (n = 43,151). The information available in NEOTROPICAL CARNIVORES will contribute to macroecological, ecological, and conservation questions in multiple spatio-temporal perspectives. As carnivores play key roles in trophic interactions, a better understanding of their distribution and habitat requirements are essential to establish conservation management plans and safeguard the future ecological health of Neotropical ecosystems. Our data paper, combined with other large-scale data sets, has great potential to clarify species distribution and related ecological processes within the Neotropics. There are no copyright restrictions and no restriction for using data from this data paper, as long as the data paper is cited as the source of the information used. We also request that users inform us of how they intend to use the data
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