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BMC Vet Res . Effects of swab pool size and transport medium on the detection and isolation of avian influenza viruses in ostriches

tetano

Editor, Senior Moderator
BMC Vet Res


. 2022 Jan 18;18(1):48.
doi: 10.1186/s12917-022-03150-6.
Effects of swab pool size and transport medium on the detection and isolation of avian influenza viruses in ostriches


Reneé Pieterse[SUP] 1 2 [/SUP], Christine Strydom[SUP] 3 4 [/SUP], Celia Abolnik[SUP] 5 [/SUP]



Affiliations
Free PMC article

Abstract

Background: Rigorous testing is a prerequisite to prove freedom of notifiable influenza A virus infections in commercially farmed ostriches, as is the isolation and identification of circulating strains. Pooling 5 ostrich tracheal swabs in a 50 % v/v phosphate-buffered saline (PBS): glycerol transport medium (without antibiotics) is the current standard practice to increase reverse transcription real time PCR (RT-rtPCR) testing throughput and simultaneously reduce the test costs. In this study we investigated whether doubling ostrich tracheal swabs to 10 per pool would affect the sensitivity of detection of H5N8 high pathogenicity avian influenza virus (HPAIV) and H7N1 low pathogenicity avian influenza virus (LPAIV) by quantitative RT-rtPCR, and we also compared the effect of a protein-rich, brain heart infusion broth (BHI) virus transport media containing broad spectrum antimicrobials (VTM) on the efficacy of isolating the H5N8 and H7N1 viruses from ostrich tracheas, since the historical isolation success rate from these birds has been poor.
Results: Increasing the ostrich swabs from 5 to 10 per pool in 3 mls of transport medium had no detrimental effect on the sensitivity of the RT-rtPCR assay in detecting H5N8 HPAIV or H7N1 LPAIV; and doubling of the swab pool size even seemed to improve the sensitivity of virus detection at levels that were statistically significant (p less than or equal to 0.05) in medium and low doses of spiked H5N8 HPAIV and at high levels of spiked H7N1 LPAIV. On virus isolation, more samples were positive when swabs were stored in a protein-rich viral transport medium supplemented with antimicrobials in PBS: glycerol (10/18 vs. 7/18 for H5N8 HPAI); although the differences were not statistically significant, overall higher virus titres were detected (10[SUP]6.7[/SUP] - 10[SUP]3.0[/SUP] vs. 10[SUP]6.6[/SUP] - 10[SUP]3.1[/SUP] EID[SUB]50[/SUB] for H5N8 HPAIV and 10[SUP]5.5[/SUP] - 10[SUP]1.4[/SUP] vs. 10[SUP]5.1[/SUP] - 10[SUP]1.3[/SUP] EID[SUB]50[/SUB] for H7N1 LPAIV); and fewer passages were required with less filtration for both H5N8 HPAI and H7N1 LPAI strains.
Conclusion: Ostrich tracheal swab pool size could be increased from 5 to 10 in 3mls of VTM with no loss in sensitivity of the RT-rtPCR assay in detecting HPAI or LPAI viruses, and HPAI virus could be isolated from a greater proportion of swabs stored in VTM compared to PBS: glycerol without antibiotics.

Keywords: Influenza a virus; Ostrich; Tracheal swab pooling; Viral transport medium.
 
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