Aspergillus spp. prevalence in different Portuguese occupational environments: What is the real scenario in high load

Carla Viegas1,2, Tiago Faria1, Liliana Aranha Caetano1,3

  • 1a GIAS, ESTeSL - Escola Superior de Tecnologia da Saúde de Lisboa , Instituto Politécnico de Lisboa , Lisbon , Portugal.

Insights

This study assessed Aspergillus fungal contamination in occupational settings near Lisbon, finding high prevalence in wastewater and waste treatment plants. A combined culture and molecular method is proposed for better risk management of Aspergillus exposure.

Area of Science:

  • Environmental microbiology
  • Occupational health
  • Mycology

Background:

  • The genus Aspergillus comprises prevalent fungi in contaminated occupational environments.
  • High fungal load environments pose risks for occupational exposure to Aspergillus species.
  • Accurate risk characterization and management require precise exposure assessment protocols.

Purpose of the Study:

  • To assess the prevalence of Aspergillus species in various occupational settings with expected high fungal contamination.
  • To propose an improved protocol for Aspergillus exposure assessment, risk characterization, and management.
  • To identify prevalent Aspergillus sections in air and surface samples from selected industries.

Main Methods:

  • Collected 125 air and 125 surface samples from two wastewater treatment plants, one wastewater elevation plant, four waste treatment plants, three cork industries, five slaughterhouses, four feed industries, one poultry pavilion, and two swineries.
  • Utilized culture-based methods for fungal analysis.
  • Employed real-time polymerase chain reaction (qPCR) to detect Aspergillus sections Circumdati, Flavi, and Fumigati in 100 samples.

Main Results:

  • Highest Aspergillus prevalence observed in wastewater treatment plants (69.3% air; 31.1% surface) and waste treatment plants (34.8% air; 73.6% surface).
  • Aspergillus sections Nigri, Fumigati, and Flavi were most prevalent in air and surface samples.
  • qPCR detected Aspergillus section Fumigati in 18 sites missed by conventional methods, highlighting its utility.

Conclusions:

  • Wastewater and waste treatment plants exhibit significant Aspergillus contamination.
  • A parallel application of conventional and molecular methods is recommended for comprehensive Aspergillus risk assessment and management.
  • Occupational exposure to Aspergillus is linked to both fungal load and its toxigenic potential.

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