Single Assay for Simultaneous Detection and Differential Identification of Human and Avian Influenza Virus Types, Subtypes, and Emergent Variants

Abstract

For more than four decades the cause of most type A influenza virus infections of humans has been attributed to only two viral subtypes, A/H1N1 or A/H3N2. In contrast, avian and other vertebrate species are a reservoir of type A influenza virus genome diversity, hosting strains representing at least 120 of 144 combinations of 16 viral hemagglutinin and 9 viral neuraminidase subtypes. Viral genome segment reassortments and mutations emerging within this reservoir may spawn new influenza virus strains as imminent epidemic or pandemic threats to human health and poultry production. Traditional methods to detect and differentiate influenza virus subtypes are either time-consuming and labor-intensive (culture-based) or remarkably insensitive (antibody-based). Molecular diagnostic assays based upon reverse transcriptase-polymerase chain reaction (RT-PCR) have short assay cycle time, and high analytical sensitivity and specificity. However, none of these diagnostic tests determine viral gene nucleotide sequences to distinguish strains and variants of a detected pathogen from one specimen to the next. Decision-quality, strain- and variant-specific pathogen gene sequence information may be critical for public health, infection control, surveillance, epidemiology, or medical/veterinary treatment planning. The Resequencing Pathogen Microarray (RPM-Flu) is a robust, highly multiplexed and target gene sequencing-based alternative to both traditional culture- or biomarker-based diagnostic tests. RPM-Flu is a single, simultaneous differential diagnostic assay for all subtype combinations of type A influenza viruses and for 30 other viral and bacterial pathogens that may cause influenzalike illness. These other pathogen targets of RPM-Flu may co-infect and compound the morbidity and/or mortality of patients with influenza.

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Document Details

Document Type
Technical Report
Publication Date
Feb 01, 2010
Accession Number
ADA519002

Entities

People

  • Agnieszka M. Lichanska
  • Anthony P. Malanoski
  • Baochuan Lin
  • Christopher A. Myers
  • Colleen Thomas
  • David A. Stenger
  • David E. Swayne
  • David Metzgar
  • Dennis J. Faix
  • Jason Brown
  • Joel M. Schnur
  • Kate M. Blaney
  • Kevin L. Russell
  • Lisa A. Borsuk
  • Magdi D. Saad
  • Matthew C. Lorence
  • Nina C. Long
  • Patrick J. Blair
  • Scott Vo
  • Zheng Wang

Organizations

  • Naval Health Research Center

Tags

DTIC Thesaurus Topics

  • Bacterial Infections
  • Birds
  • Cells
  • Coinfection
  • Culture Techniques
  • Detection
  • Gene Expression
  • Identification
  • Infectious Diseases
  • Medical Personnel
  • Pcr Testing
  • Poultry
  • Respiratory Tract Diseases
  • Sequence Analysis
  • United States
  • Vaccines
  • Viruses

Fields of Study

  • Biology

Readers

  • Infectious Disease/Epidemiology
  • Molecular Genetics
  • Virology (or Medical Virology).