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Published on: July 22, 2012
Culture-Independent Detection of Poliovirus in Stool Samples by Direct RNA Extraction
Chelsea Harrington1, Hong Sun1, Stacey Jeffries-Miles1
1Division of Viral Diseases, Centers for Disease Control and Preventiongrid.416738.f, Atlanta, Georgia, USA.
Abstract:
Laboratory surveillance for poliovirus (PV) relies on virus isolation by cell culture to identify PV in stool specimens from acute flaccid paralysis (AFP) cases. Although this method successfully identifies PV, it is time-consuming and necessitates the additional biorisk of growing live virus in an increasingly polio-free world. To reduce the risk of culturing PV, the Global Polio Laboratory Network (GPLN) must switch to culture-independent diagnostic methods with sensitivity at least equivalent to that of cell culture procedures. Five commercial nucleic acid extraction kits and one enrichment method were tested for PV extraction efficiency. RNA yield was measured using real-time reverse transcription (RT)-PCR. Based on greater RNA yield, compared with the other kits, the Quick-RNA viral kit was selected for further testing and was optimized using an RNA extraction procedure for stool suspensions. RNA extraction was retrospectively tested with 182 stool samples that had previously tested positive for PVs, in parallel with the standard GPLN virus isolation algorithm. After virus isolation or RNA extraction, real-time RT-PCR assays were performed. RNA extraction was significantly more sensitive than virus isolation (McNemar's test, P < 0.001). Thereafter, the RNA extraction method was tested in parallel for 202 prospective samples; RNA extraction and virus isolation were not significantly different from each other (McNemar's test, P = 0.13). Direct RNA extraction was noninferior to current cell culture methods for detecting PV in stool samples. Our results show that direct RNA extraction can make downstream manipulation safer and can reduce the risk of accidental posteradication viral release. The method is amenable to implementation in a wide variety of polio laboratories. IMPORTANCE Successfully identifying poliovirus from acute flaccid paralysis (AFP) cases is a vital role of the Global Polio Laboratory Network to achieve the goals of the Global Polio Eradication Initiative. Currently, laboratory surveillance relies on virus isolation by cell culture to test for PV present in stool samples. Although this method can identify polioviruses, laboratories must switch to culture-independent methods to reduce the risk associated with growing live viruses in a soon-to-be polio-free world. By implementing this streamlined method, in combination with real-time RT-PCR, laboratories can quickly screen for and type polioviruses of programmatic importance to support the final stages of global polio eradication.
Insights
Direct RNA extraction offers a safer, more sensitive alternative to traditional cell culture for poliovirus detection in acute flaccid paralysis cases. This culture-independent method supports global polio eradication efforts by reducing risks associated with live virus handling.
Area of Science:
- Virology
- Molecular Biology
- Public Health
Background:
- Laboratory surveillance for poliovirus (PV) relies on cell culture isolation from acute flaccid paralysis (AFP) cases.
- This method is time-consuming and poses biorisk in a polio-free world.
- Culture-independent methods are needed for PV detection.
Purpose of the Study:
- To evaluate culture-independent diagnostic methods for PV detection.
- To find a method with sensitivity equivalent to cell culture.
- To reduce the risk of live poliovirus handling.
Main Methods:
- Tested five commercial nucleic acid extraction kits and one enrichment method for PV extraction efficiency.
- Measured RNA yield using real-time reverse transcription (RT)-PCR.
- Optimized the Quick-RNA viral kit and tested it on 182 retrospective and 202 prospective stool samples.
Main Results:
- The Quick-RNA viral kit showed greater RNA yield compared to other kits.
- RNA extraction was significantly more sensitive than virus isolation in retrospective testing (P < 0.001).
- RNA extraction was non-inferior to virus isolation in prospective testing (P = 0.13).
Conclusions:
- Direct RNA extraction is a sensitive and non-inferior method for detecting PV in stool samples.
- This method enhances safety by reducing live virus culturing.
- The streamlined approach supports global polio eradication initiatives.

