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Improved Method for the Detection and Quantification ofNaegleria fowleriin Water and Sediment Using Immunomagnetic Separation and Real-Time PCR
Author(s) -
Bonnie Mull,
N. Jothikumar,
Vincent R. Hill
Publication year - 2013
Publication title -
journal of parasitology research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.46
H-Index - 27
eISSN - 2090-0031
pISSN - 2090-0023
DOI - 10.1155/2013/608367
Subject(s) - naegleria fowleri , immunomagnetic separation , chromatography , real time polymerase chain reaction , environmental science , biology , virology , chemistry , meningoencephalitis , biochemistry , gene
Primary amebic meningoencephalitis (PAM) is a rare and typically fatal infection caused by the thermophilic free-living ameba, Naegleria fowleri . In 2010, the first confirmed case of PAM acquired in Minnesota highlighted the need for improved detection and quantification methods in order to study the changing ecology of N. fowleri and to evaluate potential risk factors for increased exposure. An immunomagnetic separation (IMS) procedure and real-time PCR TaqMan assay were developed to recover and quantify N. fowleri in water and sediment samples. When one liter of lake water was seeded with N. fowleri strain CDC:V212, the method had an average recovery of 46% and detection limit of 14 amebas per liter of water. The method was then applied to sediment and water samples with unknown N. fowleri concentrations, resulting in positive direct detections by real-time PCR in 3 out of 16 samples and confirmation of N. fowleri culture in 6 of 16 samples. This study has resulted in a new method for detection and quantification of N. fowleri in water and sediment that should be a useful tool to facilitate studies of the physical, chemical, and biological factors associated with the presence and dynamics of N. fowleri in environmental systems.

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