Back to results

The Open University

The colonisation of treated water systems by <i>Legionella pneumophila</i>

Abstract

dc:description.abstract

A two-stage continuous chemostat model of a water system was developed to investigate the ecology of <i>L. pneumophila</i>. The inoculum was derived from a calorifier responsible for an outbreak of Legionnaires' disease and contained virulent <i>L. pneumophila</i>a serogroup 1 along with associated microorganisms including protozoa. The model system was supplied with filter sterilised tap water as the sole nutrient source for the growth of the mixed microbial population and was used to investigate both planktonic and attached growth. <br></br><br></br>The characteristics and reproducibility of biofilm formation on glass surfaces were examined and this provided insights into the three dimensional structure of biofilm formation. Examination of the biofilms using immunogold labelling techniques demonstrated that cells of L. pneumophila were present within the biofilm as microcolonies, this could indicate that the pathogen could grow extracellularly by receiving nutrient from the bacterial consortium. <br></br><br></br>The influence of plumbing material selection on the growth of <i>L. pneumophila</i> was investigated using the model system. The results obtained indicated that copper was an inhibitory material in terms of both biofouling and the growth of <i>L. pneumophila</i>. Latex and ethylene-propylene which are used for sealing plumbing systems were found to be nutrient supplying materials. These elastomeric materials supported extensive biofilms after only 24 hrs and contained high numbers of the pathogen. Steel and plastic materials supported biofilms which were intermediate in terms of total biofouling and growth of the pathogen. <br></br><br></br>The influence of water temperature on biofilm formation and the inclusion of <i>L. pneumophila</i> was also investigated. At 20 °C and 50 °C <i>L. pneumophila</i> was present in biofilms in low numbers. At 40 °C <i>L. pneumophila</i> was present in the planktonic and biofilm phases in high numbers and accounted for as much as 50 % of the biofilm flora. At 60 °C the pathogen was absent from the model system. Copper was found to be inhibitory to colonisation and growth of <i>L. pneumophila</i>. <br></br><br></br>The model system was used to develop biofilms on the surface of appropriate plumbing materials and then these were used to determine efficiency of commercially available biocides. The results demonstrated that attached bacterial populations were more resistant to biocide treatment than the planktonic phase. However, even the planktonic populations were able to survive the recommended biocide doses suggested by the manufacturers. The implications of the data on the ecology of the pathogen is discussed in relationship to the prevention of infection. The data provides additional information on the dynamic relationship which exist within biofilms and gives additional understanding on biofilm formation.

Degree

thesis:*
Name dc:type.qualificationname
phd
Level dc:type.qualificationlevel
doctoral
Grantor dc:publisher.institution
The Open University
Year dc:date.issued
1994

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Rogers, Julie

Rights

Language dc:language
en

Chain of custody

source
Harvested from
The Open University
Base URL
oro.open.ac.uk/cgi/oai2
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Rogers, Julie. The colonisation of treated water systems by <i>Legionella pneumophila</i>. doctoral thesis, The Open University, 1994.