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Temporal dynamics of Human mastadenovirus species in cases of respiratory illness in southern Brazil.

Viviane GirardiTatiana Schäffer GregianiniJuliana Schons GularteMeriane DemolinerClaudete Farina SeadiSelir Maria StraliottoLetícia Garay MartinsFernando Rosado Spilki
Published in: Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology] (2019)
Human mastadenovirus (HAdV) genus is related to several diseases, among them upper and lower respiratory tract illness. HAdV species B, C, D, and E are mainly associated with respiratory infections. The goal of this work was to identify the HAdV species associated with respiratory infections in hospitalized patients from southern Brazil. Samples were collected from 1996 to 2004 and 2011 to 2017. During this period, 28,524 samples were collected, and 9983 were positive for respiratory viruses, being 435 for HAdV. From these 435 samples, 57 were selected for characterization of HAdV species. For screening the presence of HAdV, a partial sequence of the DNA polymerase gene (DNApol gene) was amplified by nested PCR. Partial nucleotide sequencing was performed in positive samples, and HAdV (DNApol gene) was detected in 53 samples: species B (28; 49.1%), C (16; 28.0%), D (2; 3.5%), E (5; 8.7%), and untyped (2; 3.5%). Specie D was found only in 2017 and specie E in 2011 and 2012. The age of the patients ranged from < 1 to 81 years old, and 62.3% were male. No relationship between gender or age and identified HAdV species were observed. In addition, in the period of 2013-2017, 18 samples from patients who died were analyzed: 11 were related to species B, 4 to C, and 2 to D and 1 remained untyped. Circulation of HAdV species D and E varied over the years, but species B and C were present throughout the evaluated period. In addition, respiratory infections by HAdV affect elderly and children mainly.
Keyphrases
  • respiratory tract
  • genetic diversity
  • endothelial cells
  • gene expression
  • dna methylation
  • single cell
  • prognostic factors
  • single molecule
  • cell free
  • pluripotent stem cells
  • drug induced