A simple methodological approach for counting and identifying culturable viruses adsorbed to cellulose nitrate

G T Papageorgiou1, L Mocé-Llivina, C G Christodoulou

  • 1Microbiology Section, State General Laboratory, Ministry of Health, Nicosia, Cyprus.

Insights

This study optimized membrane filter conditions for efficient poliovirus concentration and detection. The new method enhances virus recovery by over 50% compared to standard plaque assays.

Area of Science:

  • Virology
  • Microbiology
  • Cell Biology

Background:

  • Traditional methods for virus detection often require sample elution, which can lead to loss.
  • Buffalo green monkey cells can be cultured on cellulose nitrate membranes.

Purpose of the Study:

  • To develop an improved method for concentrating and detecting poliovirus using membrane filters.
  • To optimize conditions for cell growth and virus replication on membrane surfaces.

Main Methods:

  • Culturing Buffalo green monkey cells on cellulose nitrate membranes.
  • Adsorbing poliovirus to membranes and detecting it via plaque assay and quantal methods.
  • Optimizing membrane pore size, sample content, and volume for various water types.

Main Results:

  • Achieved complete cell coverage and pore penetration on membrane filters.
  • Concentrated poliovirus without elution, increasing recovery by over 50% compared to standard plaque assays.
  • Enabled direct plaque hybridization on membranes or transferred membranes.

Conclusions:

  • The optimized membrane filter method offers a more efficient approach for poliovirus detection and concentration.
  • The method is effective for various sample types, including natural waters with low to intermediate microbial pollution.
  • Inclusion of ceftazidime allows analysis without sample pre-decontamination.