Literature DB >> 1975164

Thermal ecology of Naegleria fowleri from a power plant cooling reservoir.

H W Huizinga1, G L McLaughlin.   

Abstract

The pathogenic, free-living amoeba Naegleria fowleri is the causative agent of human primary amebic meningoencephalitis. N. fowleri has been isolated from thermally elevated aquatic environments worldwide, but temperature factors associated with occurrence of the amoeba remain undefined. In this study, a newly created cooling reservoir (Clinton Lake, Illinois) was surveyed for Naegleria spp. before and after thermal additions from a nuclear power plant. Water and sediment samples were collected from heated and unheated arms of the reservoir and analyzed for the presence of thermophilic Naegleria spp. and pathogenic N. fowleri. Amoebae were identified by morphology, in vitro cultivation, temperature tolerance, mouse pathogenicity assay, and DNA restriction fragment length analysis. N. fowleri was isolated from the thermally elevated arm but not from the ambient-temperature arm of the reservoir. The probability of isolating thermophilic Naegleria and pathogenic N. fowleri increased significantly with temperature. Repetitive DNA restriction fragment profiles of the N. fowleri Clinton Lake isolates and a known N. fowleri strain of human origin were homogeneous.

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Year:  1990        PMID: 1975164      PMCID: PMC184583          DOI: 10.1128/aem.56.7.2200-2205.1990

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  13 in total

1.  Concanavalin A-induced agglutination of Naegleria.

Authors:  S L Josephson; R R Weik; D T John
Journal:  Am J Trop Med Hyg       Date:  1977-09       Impact factor: 2.345

2.  Agitated mass cultivation of Naegleria fowleri.

Authors:  R R Weik; D T John
Journal:  J Parasitol       Date:  1977-10       Impact factor: 1.276

3.  Conditions for maximum enflagellation in Naegleria fowleri.

Authors:  B L Cable; D T John
Journal:  J Protozool       Date:  1986-11

4.  Temperature tolerance of pathogenic and nonpathogenic free-living amoebas.

Authors:  J L Griffin
Journal:  Science       Date:  1972-11-24       Impact factor: 47.728

5.  Isolation and identification of pathogenic Naegleria from Florida lakes.

Authors:  F M Wellings; P T Amuso; S L Chang; A L Lewis
Journal:  Appl Environ Microbiol       Date:  1977-12       Impact factor: 4.792

6.  Characterization of Naegleria species by restriction endonuclease digestion of whole-cell DNA.

Authors:  J F De Jonckheere
Journal:  Mol Biochem Parasitol       Date:  1987-05       Impact factor: 1.759

7.  Isolation of the etiological agent of primary amoebic meningoencephalitis from artifically heated waters.

Authors:  A R Stevens; R L Tyndall; C C Coutant; E Willaert
Journal:  Appl Environ Microbiol       Date:  1977-12       Impact factor: 4.792

8.  The pathogenic amoeboflagellate Naegleria fowleri: environmental isolations, competitors, ecologic interactions, and the flagellate-empty habitat hypothesis.

Authors:  J L Griffin
Journal:  J Protozool       Date:  1983-05

9.  Effect of thermal additions on the density and distribution of thermophilic amoebae and pathogenic Naegleria fowleri in a newly created cooling lake.

Authors:  R L Tyndall; K S Ironside; P L Metler; E L Tan; T C Hazen; C B Fliermans
Journal:  Appl Environ Microbiol       Date:  1989-03       Impact factor: 4.792

10.  The distribution of Naegleria fowleri in man-made thermal waters.

Authors:  J de Jonckheere; H Voorde
Journal:  Am J Trop Med Hyg       Date:  1977-01       Impact factor: 2.345

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  13 in total

1.  Isolation and genotyping of potentially pathogenic Acanthamoeba and Naegleria species from tap-water sources in Osaka, Japan.

Authors:  Akiko Edagawa; Akio Kimura; Takako Kawabuchi-Kurata; Yasuhiro Kusuhara; Panagiotis Karanis
Journal:  Parasitol Res       Date:  2009-06-30       Impact factor: 2.289

2.  Use of multiplex PCR and PCR restriction enzyme analysis for detection and exploration of the variability in the free-living amoeba Naegleria in the environment.

Authors:  Michel Pélandakis; Pierre Pernin
Journal:  Appl Environ Microbiol       Date:  2002-04       Impact factor: 4.792

3.  Purification of amoebolytic substances from Bacillus licheniformis M-4.

Authors:  M Lebbadi; A Gálvez; E Valdivia; M Martínez-Bueno; M Maqueda
Journal:  Arch Microbiol       Date:  1994       Impact factor: 2.552

4.  Biological activity of amoebicin m4-A from Bacillus licheniformis M-4.

Authors:  M Lebbadi; A Gálvez; E Valdivia; M Martínez-Bueno; M Maqueda
Journal:  Antimicrob Agents Chemother       Date:  1994-08       Impact factor: 5.191

5.  Amplification of repetitive DNA for the specific detection of Naegleria fowleri.

Authors:  G L McLaughlin; M H Vodkin; H W Huizinga
Journal:  J Clin Microbiol       Date:  1991-02       Impact factor: 5.948

6.  Comparative recoveries of Naegleria fowleri amoebae from seeded river water by filtration and centrifugation.

Authors:  P Pernin; M Pélandakis; Y Rouby; A Faure; F Siclet
Journal:  Appl Environ Microbiol       Date:  1998-03       Impact factor: 4.792

7.  Appearance in Europe of Naegleria fowleri displaying the Australian type of restriction-fragment-length polymorphism.

Authors:  P Pernin; J F De Jonckheere
Journal:  Parasitol Res       Date:  1992       Impact factor: 2.289

8.  Survey for the presence of Naegleria fowleri amebae in lake water used to cool reactors at a nuclear power generating plant.

Authors:  Melissa Jamerson; Kenneth Remmers; Guy Cabral; Francine Marciano-Cabral
Journal:  Parasitol Res       Date:  2008-11-29       Impact factor: 2.289

9.  The identification of Naegleria fowleri from water and soil samples by nested PCR.

Authors:  Rebecca C Maclean; Dennis J Richardson; Robin LePardo; Francine Marciano-Cabral
Journal:  Parasitol Res       Date:  2004-06       Impact factor: 2.289

10.  Purification, characterization, and lytic activity against Naegleria fowleri of two amoebicins produced by Bacillus licheniformis A12.

Authors:  A Gálvez; E Valdivia; A González-Segura; M Lebbadi; M Martínez-Bueno; M Maqueda
Journal:  Appl Environ Microbiol       Date:  1993-05       Impact factor: 4.792

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