New filtration system for efficient recovery of waterborneCryptosporidiumoocysts andGiardiacysts
Autor: | Jens Gad, Heidi L. Enemark, Jørgen A. L. Kurtzhals, Ulla Riber, Mohammad Nafi Solaiman Al-Sabi |
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Rok vydání: | 2015 |
Předmět: |
Veterinary medicine
Sonication Cryptosporidium Real-Time Polymerase Chain Reaction Applied Microbiology and Biotechnology Water Purification Microbiology law.invention Recovery rate law parasitic diseases Glass slide Animals Filtration biology Drinking Water Giardia Oocysts General Medicine Contamination biology.organism_classification Protozoa Biotechnology |
Zdroj: | Journal of Applied Microbiology. 119:894-903 |
ISSN: | 1364-5072 |
DOI: | 10.1111/jam.12898 |
Popis: | Aims To develop a filtration unit for efficient recovery of waterborne Cryptosporidium oocysts and Giardia cysts ((oo-)cysts) in drinking water. Methods and Results This unit utilizes a metallic filter and an ultrasound transducer for eluting (oo-)cysts, with a fixed retentate backwash volume; approx. 400 μl. Changes in the viability was evaluated by seeding wild type (oo-)cysts (1 × 104) followed by sonication for 5, 10, 20 or 40 s (five replicates for each period). Flow cytometry analysis showed negligible increase in the mortality of (oo-)cysts exposed to 5–10 s of sonication. Recovery rate was assessed by seeding ColorSeed™ (10 replicates) into the filter unit followed by air backwash to a glass slide and counting of (oo-)cysts by epifluorescent microscopy. High recovery rates (mean ± SD) were found: 84·9% ± 4·8 for Giardia cysts and 70% ± 6·5 for Cryptosporidium oocysts. DNA of seeded wild type (oo-)cysts (1 × 102; 10 replicates) was successfully amplified using real-time PCR. Conclusions The use of a metallic filter, sonication and ‘air backwash’ were key factors for creating a highly efficient system for recovery of apparently undamaged protozoa. Significance and Impact of the Study This reagent-less system can be used for monitoring of parasite contamination in drinking water. |
Databáze: | OpenAIRE |
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