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October 3, 2007PLoS ONE311 citationsOpen Access

A Diverse Group of Previously Unrecognized Human Rhinoviruses Are Common Causes of Respiratory Illnesses in Infants

WLWai-Ming LeeCKChristin KiesnerTPTressa Pappas

Key Result

Molecular analysis revealed that 52.4% of human rhinoviruses detected in sick infants were previously unrecognized strains, including 9 strains that may represent a new HRV group C.

Study Design

Type

Observational (n=26)

Multicenter

No

Structured PICO

P
Population
26 infants aged 0-1 year with frequent moderate to severe respiratory illnesses, providing 181 nasal lavage specimens.
E
Exposure
Molecular typing assay based on phylogenetic comparisons of a 260-bp variable sequence in the 5' noncoding region
O
Outcome
Identification and typing of human rhinovirus (HRV) strains

Molecular typing reveals that over 50% of HRVs in sick infants are previously unrecognized strains, suggesting the existence of a new HRV group.

Limitations

  • Study population limited to infants with frequent illnesses
  • Need for studies in unselected populations and other age groups
  • Inability to culture the new viruses in standard cell lines

Abstract

BACKGROUND: Human rhinoviruses (HRVs) are the most prevalent human pathogens, and consist of 101 serotypes that are classified into groups A and B according to sequence variations. HRV infections cause a wide spectrum of clinical outcomes ranging from asymptomatic infection to severe lower respiratory symptoms. Defining the role of specific strains in various HRV illnesses has been difficult because traditional serology, which requires viral culture and neutralization tests using 101 serotype-specific antisera, is insensitive and laborious. METHODS AND FINDINGS: To directly type HRVs in nasal secretions of infants with frequent respiratory illnesses, we developed a sensitive molecular typing assay based on phylogenetic comparisons of a 260-bp variable sequence in the 5' noncoding region with homologous sequences of the 101 known serotypes. Nasal samples from 26 infants were first tested with a multiplex PCR assay for respiratory viruses, and HRV was the most common virus found (108 of 181 samples). Typing was completed for 101 samples and 103 HRVs were identified. Surprisingly, 54 (52.4%) HRVs did not match any of the known serotypes and had 12-35% nucleotide divergence from the nearest reference HRVs. Of these novel viruses, 9 strains (17 HRVs) segregated from HRVA, HRVB and human enterovirus into a distinct genetic group ("C"). None of these new strains could be cultured in traditional cell lines. CONCLUSIONS: By molecular analysis, over 50% of HRV detected in sick infants were previously unrecognized strains, including 9 strains that may represent a new HRV group. These findings indicate that the number of HRV strains is considerably larger than the 101 serotypes identified with traditional diagnostic techniques, and provide evidence of a new HRV group.

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Cite This Study

Lee et al. (2007) conducted an observational in Frequent respiratory illnesses (n=26). Molecular typing of human rhinoviruses was evaluated on Proportion of previously unrecognized HRV strains. Molecular analysis revealed that 52.4% of human rhinoviruses detected in sick infants were previously unrecognized strains, including 9 strains that may represent a new HRV group C.

synapsesocial.com/papers/6a557cbe0db8f4832a8e0c47https://doi.org/10.1371/journal.pone.0000966
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