Related Experiment Video
Updated: Jun 15, 2026

In Vivo Assessment of Alveolar Macrophage Efferocytosis Following Ozone Exposure
Published on: October 22, 2019
The effect of ozonization on furniture dust: microbial content and immunotoxicity in vitro
Kati Huttunen1, Eeva Kauhanen, Teija Meklin
1Department of Environmental Health, National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland. Kati.Huttunen@thl.fi
Abstract:
Moisture and mold problems in buildings contaminate also the furniture and other movable property. If cleaning of the contaminated furniture is neglected, it may continue to cause problems to the occupants even after the moisture-damage repairs. The aim of this study was to determine the effectiveness of high-efficiency ozone treatment in cleaning of the furniture from moisture-damaged buildings. In addition, the effectiveness of two cleaning methods was compared. Samples were vacuumed from the padded areas before and after the treatment. The microbial flora and concentrations in the dust sample were determined by quantitative cultivation and QPCR-methods. The immunotoxic potential of the dust samples was analyzed by measuring effects on cell viability and production of inflammatory mediators in vitro. Concentrations of viable microbes decreased significantly in most of the samples after cleaning. Cleaning with combined steam wash and ozonisation was more effective method than ozonising alone, but the difference was not statistically significant. Detection of fungal species with PCR showed a slight but nonsignificant decrease in concentrations after the cleaning. The immunotoxic potential of the collected dust decreased significantly in most of the samples. However, in a small subgroup of samples, increased concentrations of microbes and immunotoxicological activity were detected. This study shows that a transportable cleaning unit with high-efficiency ozonising is in most cases effective in decreasing the concentrations of viable microbes and immunotoxicological activity of the furniture dust. However, the method does not destroy or remove all fungal material present in the dust, as detected with QPCR analysis, and in some cases the cleaning procedure may increase the microbial concentrations and immunotoxicity of the dust.
Insights
High-efficiency ozone treatment effectively reduced viable microbes and immunotoxic activity in furniture dust from moisture-damaged buildings. However, it did not eliminate all fungal material and occasionally increased microbial load and toxicity.
Area of Science:
- Building science
- Environmental health
- Microbiology
Background:
- Moisture and mold in buildings contaminate furniture, posing ongoing health risks.
- Neglected furniture contamination persists even after building repairs.
- Effective cleaning methods are crucial for occupant well-being.
Purpose of the Study:
- To evaluate high-efficiency ozone treatment for cleaning contaminated furniture.
- To compare the efficacy of ozone treatment versus combined steam wash and ozonisation.
- To assess the impact on microbial flora and immunotoxic potential of dust.
Main Methods:
- Furniture dust samples collected from moisture-damaged buildings.
- Quantitative cultivation and quantitative polymerase chain reaction (QPCR) for microbial analysis.
- In vitro assays for immunotoxic potential (cell viability, inflammatory mediators).
Main Results:
- Significant decrease in viable microbes and immunotoxic potential in most samples post-cleaning.
- Combined steam wash and ozonisation showed slightly better results than ozonisation alone (not statistically significant).
- QPCR detected persistent fungal material; some samples showed increased microbes and immunotoxicity.
Conclusions:
- Transportable ozone units are generally effective for reducing furniture dust contamination.
- Ozone treatment does not fully eliminate fungal material and carries a risk of increasing microbial load.
- Further research is needed to optimize cleaning protocols for comprehensive remediation.
Related Concept Videos
Oxidative Cleavage of Alkenes: Ozonolysis
Ozone is a symmetrical bent molecule stabilized by a resonance structure.
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Antimicrobial Effectiveness
Oxygen Requirements and Growth Patterns
Methods of Sterilization II: Chemical Methods
Using chemical sterilization rather than heat to clean out equipment is recommended. It eradicates and removes all bacteria,...

