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Updated: Jul 29, 2026

Estimating Virus Production Rates in Aquatic Systems
Published on: September 22, 2010
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.
Abstract:
We identified conditions under which Buffalo green monkey cells grew on the surfaces of cellulose nitrate membrane filters in such a way that they covered the entire surface of each filter and penetrated through the pores. When such conditions were used, poliovirus that had previously been adsorbed on the membranes infected the cells and replicated. A plaque assay method and a quantal method (most probable number of cytopathic units) were used to detect and count the viruses adsorbed on the membrane filters. Polioviruses in aqueous suspensions were then concentrated by adsorption to cellulose membrane filters and were subsequently counted without elution, a step which is necessary when the commonly used methods are employed. The pore size of the membrane filter, the sample contents, and the sample volume were optimized for tap water, seawater, and a 0.25 M glycine buffer solution. The numbers of viruses recovered under the optimized conditions were more than 50% greater than the numbers counted by the standard plaque assay. When ceftazidime was added to the assay medium in addition to the antibiotics which are typically used, the method could be used to study natural samples with low and intermediate levels of microbial pollution without decontamination of the samples. This methodological approach also allowed plaque hybridization either directly on cellulose nitrate membranes or on Hybond N+ membranes after the preparations were transferred.
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.
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