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Published on: October 27, 2013
Survival of amoebae on building materials
T Yli-Pirilä1, J Kusnetsov, M-R Hirvonen
1Department of Environmental Health, National Public Health Institute, Kuopio, Finland. terhi.yli-pirila@ktl.fi
Unlabelled:
Moisture damage and concurrent microbial growth in buildings are associated with adverse health effects among the occupants. However, the causal agents for the symptoms are unclear although microbes are assumed to play a major role. Fungi and bacteria are not the only microbes inhabiting moist building materials; it was recently revealed that amoebae are also present. As amoebae have the potential to harbor many pathogens and to modulate the characteristics of growing microbes, a better appreciation of the growth and survival of amoebae in moisture damage conditions will add to the understanding of their effects on health outcomes. In this study, we investigated the ability of amoebae to survive on six building materials. Furthermore, both aged and unused materials were tested. Amoebae survived on gypsum board and mineral wool for the whole 2 months experiment even without additional sustenance. When sustenance (heat-killed bacteria) was available, aged pine wood and birch wood also allowed their survival. In contrast, amoebae were quickly killed on fresh pine wood and they did not survive on concrete or linoleum. In conclusion, our data show that amoebae can persist on several common building materials once these materials become wet.
Practical Implications:
Amoebae are able to survive on many building materials should the materials become wet. Amoebae have the potential to increase growth, cytotoxicity, and pathogenicity of other microbes present in moisture damages, and they may carry potentially pathogenic bacteria as endosymbionts and thus introduce them into the indoor air. Therefore, amoebae may have a prominent role in the microbial exposures occurring in moisture-damaged buildings. The presence of amoebae could be usefully included in reporting the microbial damage of material samples.
Insights
Amoebae can survive on wet building materials like gypsum board and mineral wool for extended periods. Their presence in moisture-damaged buildings may impact indoor air quality and occupant health.
Area of Science:
- Environmental Microbiology
- Building Science
- Public Health
Background:
- Moisture damage in buildings is linked to adverse health effects, with microbes suspected as causal agents.
- While fungi and bacteria are known, amoebae are newly identified inhabitants of moist building materials.
- Understanding amoebae's role is crucial due to their potential to harbor pathogens and influence other microbes.
Purpose of the Study:
- To investigate the survival of amoebae on various building materials under moist conditions.
- To assess the influence of material age and nutrient availability on amoebae persistence.
- To evaluate the implications of amoebae presence in moisture-damaged environments.
Main Methods:
- Amoebae survival was monitored on six common building materials (gypsum board, mineral wool, aged/fresh pine wood, birch wood, concrete, linoleum) for two months.
- Experiments were conducted under moist conditions, with and without heat-killed bacteria as a sustenance source.
- Both aged and unused material samples were tested.
Main Results:
- Amoebae survived for the full two months on gypsum board and mineral wool without additional sustenance.
- Aged pine wood and birch wood supported amoebae survival when supplemented with heat-killed bacteria.
- Amoebae did not survive on fresh pine wood, concrete, or linoleum.
Conclusions:
- Amoebae can persist on several common building materials once they become wet.
- Their presence may exacerbate microbial issues in damp buildings, potentially increasing pathogen exposure.
- Including amoebae in microbial damage assessments of building materials is recommended.
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