Establishment of a continuous model system to study Helicobacter pylori survival in potable water biofilms

Author:

Azevedo N.F.12,Vieira M. J.2,Keevil C.W.1

Affiliation:

1. Environmental Healthcare Unit, School of Biological Sciences, University of Southampton, Southampton, UK

2. Centro de Engenharia Biológica, Universidade do Minho, 4700-057 Braga, Portugal

Abstract

Close association of the pathogen Helicobacter pylori in drinking water biofilms has been suggested. Using a two-stage water model, the survival and development of the pathogen in potable water biofilms was monitored. Filter sterilized tap water was used as the growth medium and the inoculum consisted of a naturally occurring consortium of microorganisms. Biofilms were generated on removable stainless steel coupons that were placed in the second vessel. Novel technology peptide nucleic acid (PNA) molecular probes were used to detect and locate the pathogen in the biofilms. The PNA-labelled oligonucleotide probes were highly specific, and complementary to the helix 6 region of H. pylori 16S rRNA. The pathogen was tracked in the biofilms using epifluorescence microscopy and episcopic differential interference contrast microscopy. Results show that H. pylori can successfully incorporate within biofilms and its presence was detected for up to five days after inoculation. PNA probes provided an easy and quick way of performing fluorescence in situ hybridisation assays in heterogeneous biofilms.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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