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Indoor fungi and their ciliostatic metabolites
Elena Piecková1, Zuzana Kunová
1Institute of Preventive and Clinical Medicine, Limbova 14, SK-833 01 Bratislava, Slovakia. pieckova@upkm.sk
Abstract:
According to epidemiological studies, it is possible that some secondary metabolites of indoor airborne fungi could be responsible for health troubles which occupants suffer from. In our previous experiments, a model with tracheal rings of 1-day-old chicks in vitro was shown to be a very suitable method to study the ciliostatic chloroform-extractable endo- and/or exometabolites of filamentous fungi. In this study we isolated the filamentous fungi from walls of "mouldy" dwellings and schools (cultivation on dichloran 18% glycerol agar at 25 and 37 degrees C for 10 d) in Slovakia. We studied the ciliostatic effect of the chloroform-extractable endo- and exometabolites of 96 representative isolates (stationary cultivation on the liquid medium with 2% of yeast extract and 10% of sucrose at 25 degrees C for 10 days) on the cilia movement in tracheal organ cultures of 1-day-old chickens in vitro after 24, 48 and 72 hrs (incubation in the minimal essential medium according to Eagle with Earl s salts and 20 microg of extract of metabolites dissolved in dimethylsulfoxide per 1 mL). Strains of Penicillium Link: Fr. sp., Aspergillus versicolor (Vuill.) Tiraboschi, A. flavus Link, Cladosporium sphaerospermum Penzig and C. cladosporioides (Fres.) de Vries were isolated most frequently. Two A. flavus isolates were able to produce aflatoxins B1, B2, G1, G2 in vitro after cultivation on the liquid medium with 20% sucrose and 2% yeast extract. This is the first isolation of aflatoxigenic A. flavus strains from dwellings in Slovakia. All frequently isolated strains produced secondary metabolites with the strongest ciliostatic activity -- their exo- and endometabolites stopped tracheal ciliary movement in chicks till 24 h. There are some toxic fungal metabolites in the indoor air not only with the ability to destroy ciliary movement in the upper airways in vitro but, probably, during long-lasting exposure to cause general intoxication of macroorganism via lung tissue.
Insights
Indoor airborne fungi release toxic metabolites that can harm respiratory health. This study identified common indoor fungi in Slovakia, finding their metabolites significantly impair tracheal cilia function in chicks, suggesting a link to occupant health issues.
Area of Science:
- Environmental Health
- Mycology
- Toxicology
Background:
- Epidemiological studies suggest indoor airborne fungi metabolites may cause occupant health problems.
- Previous in vitro experiments demonstrated the suitability of chick tracheal ring models for studying fungal metabolites.
- Filamentous fungi are common in indoor environments, potentially releasing harmful substances.
Purpose of the Study:
- To isolate filamentous fungi from mouldy dwellings and schools in Slovakia.
- To investigate the ciliostatic effects of chloroform-extractable fungal metabolites on chick tracheal cilia in vitro.
- To identify frequently isolated fungal strains and assess their toxic potential, including aflatoxin production.
Main Methods:
- Fungal isolation from dwelling and school walls using dichloran 18% glycerol agar at 25°C and 37°C.
- Cultivation of 96 representative isolates on liquid medium (2% yeast extract, 10% sucrose) at 25°C.
- Assessment of ciliostatic activity of extracted endo- and exometabolites on 1-day-old chick tracheal organ cultures in vitro.
Main Results:
- Frequently isolated strains included Penicillium spp., Aspergillus versicolor, A. flavus, Cladosporium sphaerospermum, and C. cladosporioides.
- Two A. flavus isolates produced aflatoxins B1, B2, G1, and G2 in vitro, marking the first isolation of aflatoxigenic A. flavus from Slovak dwellings.
- All frequently isolated strains exhibited strong ciliostatic activity, inhibiting tracheal ciliary movement in chicks within 24 hours.
Conclusions:
- Indoor airborne fungi in Slovakia produce secondary metabolites with potent ciliostatic activity.
- These metabolites can impair ciliary function in the upper airways, potentially leading to broader health issues.
- The presence of toxic fungal metabolites in indoor air poses a significant risk to occupant health.