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Published on: February 24, 2013
Sensory irritating potency of some microbial volatile organic compounds (MVOCs) and a mixture of five MVOCs
A Korpi1, J P Kasanen, Y Alarie
1Department of Environmental Sciences, University of Kuopio, Finland.
Abstract:
The authors investigated the ability/potencies of 3 microbial volatile organic compounds and a mixture of 5 microbial volatile organic compounds to cause eye and upper respiratory tract irritation (i.e., sensory irritation), with an animal bioassay. The authors estimated potencies by determining the concentration capable of decreasing the respiratory frequency of mice by 50% (i.e., the RD50 value). The RD50 values for 1-octen-3-ol, 3-octanol, and 3-octanone were 182 mg/m3 (35 ppm), 1359 mg/m3 (256 ppm), and 17586 mg/m3 (3360 ppm), respectively. Recommended indoor air levels calculated from the individual RD50 values for 1-octen-3-ol, 3-octanol, and 3-octanone were 100, 1000, and 13000 microg/m3, respectively-values considerably higher than the reported measured indoor air levels for these compounds. The RD50 value for a mixture of 5 microbial volatile organic compounds was also determined and found to be 3.6 times lower than estimated from the fractional concentrations and the respective RD50s of the individual components. The data support the conclusion that a variety of microbial volatile organic compounds may have some synergistic effects for the sensory irritation response, which constrains the interpretation and application of recommended indoor air levels of individual microbial volatile organic compounds. The results also showed that if a particular component of a mixture was much more potent than the other components, it may dominate the sensory irritation effect. With respect to irritation symptoms reported in moldy houses, the results of this study indicate that the contribution of microbial volatile organic compounds to these symptoms seems less than previously supposed.
Insights
Microbial volatile organic compounds can cause sensory irritation. This study found that mixtures of these compounds may have synergistic effects, potentially impacting indoor air quality guidelines and perceived health symptoms.
Area of Science:
- Environmental Health
- Toxicology
- Occupational Health
Background:
- Microbial volatile organic compounds (mVOCs) are emitted by molds and bacteria.
- Exposure to mVOCs has been linked to sensory irritation symptoms in indoor environments.
- Understanding the potency of mVOCs is crucial for setting safe indoor air quality guidelines.
Purpose of the Study:
- To investigate the sensory irritation potential of individual mVOCs and their mixtures.
- To determine the concentration of mVOCs that causes a 50% decrease in respiratory frequency in mice (RD50).
- To assess potential synergistic effects among mVOCs.
Main Methods:
- Animal bioassay using mice to determine RD50 values for specific mVOCs and a mixture.
- Calculation of recommended indoor air levels based on RD50 values.
- Comparison of experimental mixture RD50 with estimated values from individual components.
Main Results:
- RD50 values varied significantly among individual mVOCs (1-octen-3-ol, 3-octanol, 3-octanone).
- Recommended indoor air levels for individual mVOCs were higher than typical measured levels.
- A mixture of 5 mVOCs showed a 3.6-fold lower RD50 than predicted, indicating synergistic effects.
- The most potent component in a mixture may dominate the sensory irritation response.
Conclusions:
- mVOC mixtures can exhibit synergistic effects on sensory irritation.
- Current recommended indoor air levels for individual mVOCs may not fully account for mixture effects.
- The contribution of mVOCs to irritation symptoms in moldy houses might be less significant than previously assumed.
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