Key result
Armored RNA spiked into oral swab fluid provided a stable, noninfectious, and quantifiable virus surrogate detectable across the dynamic range of real-time RT-PCR assays for four animal pathogens.
p-value: p=<0.01
Armored RNA can serve as a stable, noninfectious, and quantifiable virus surrogate for qRT-PCR assay training and proficiency testing.
Supports armored RNA as safe surrogate for qRT-PCR training; leaves open validation in human clinical samples.
In recent years testing responsibilities for high-consequence pathogens have been expanded from national reference laboratories into networks of local and regional laboratories in order to support enhanced disease surveillance and to test for surge capacity. This movement of testing of select agents and high-consequence pathogens beyond reference laboratories introduces a critical need for standardized, noninfectious surrogates of disease agents for use as training and proficiency test samples. In this study, reverse transcription-PCR assay RNA targets were developed and packaged as armored RNA for use as a noninfectious, quantifiable synthetic substitute for four high-consequence animal pathogens: classical swine fever virus; foot-and-mouth disease virus; vesicular stomatitis virus, New Jersey serogroup; and vesicular stomatitis virus, Indiana serogroup. Armored RNA spiked into oral swab fluid specimens mimicked virus-positive clinical material through all stages of the reverse transcription-PCR testing process, including RNA recovery by four different commercial extraction procedures, reverse transcription, PCR amplification, and real-time detection at target concentrations consistent with the dynamic ranges of the existing real-time PCR assays. The armored RNA concentrations spiked into the oral swab fluid specimens were stable under storage conditions selected to approximate the extremes of time and temperature expected for shipping and handling of proficiency panel samples, including 24 h at 37 degrees C and 2 weeks at temperatures ranging from ambient room temperature to -70 degrees C. The analytic test performance, including the reproducibility over the dynamic range of the assays, indicates that armored RNA can provide a noninfectious, quantifiable, and stable virus surrogate for specific assay training and proficiency test purposes.
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Hietala et al. (2006) studied High-consequence animal pathogens (CSFV, FMDV, VSV-NJ, VSV-IND). Armored RNA surrogate vs. Different extraction methods and storage conditions was evaluated on Cycle threshold (CT) values for detection of armored RNA across different extraction methods and storage conditions (p=<0.01). Armored RNA spiked into oral swab fluid provided a stable, noninfectious, and quantifiable virus surrogate detectable across the dynamic range of real-time RT-PCR assays for four animal pathogens.
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