Pro-inflammatory responses induced by A. fumigatus and A. versicolor in various human macrophage models

Elisabeth Øya1, Anita Solhaug2, Anette K Bølling1

  • 1a Department of Air Pollution and Noise , Norwegian Institute of Public Health , Oslo , Norway.

Insights

Exposure to Aspergillus mold spores and fragments can trigger respiratory inflammation. Monocyte-derived macrophages (MDM) are identified as the most promising experimental model for studying these mold-induced inflammatory responses.

Area of Science:

  • Environmental Health
  • Immunology
  • Mycology

Background:

  • Indoor mold exposure is linked to respiratory issues, necessitating experimental validation.
  • Aspergillus fumigatus (AF) and Aspergillus versicolor (AV) are common indoor molds with potential pro-inflammatory properties.

Purpose of the Study:

  • To compare the pro-inflammatory effects of aerosolized AF and AV spores and hyphal fragments.
  • To evaluate different human macrophage models for their responsiveness to mold components.

Main Methods:

  • Utilized PMA-differentiated THP-1 macrophages (THP-1 Ma), primary monocyte-derived macrophages (MDM), and primary airway macrophages (AM).
  • Exposed macrophage models to X-ray treated aerosolized spores and hyphal fragments of AF and AV.
  • Analyzed cytokine and chemokine release, and investigated the role of Toll-like receptors (TLR2 and TLR4).

Main Results:

  • A. fumigatus induced more potent pro-inflammatory responses than A. versicolor.
  • For A. fumigatus, hyphal fragments were more potent than spores; for A. versicolor, both growth stages induced similar responses.
  • THP-1 Ma and MDM showed broad cytokine/chemokine release, with MDM being a promising model, while AM were less responsive.
  • TLR4 and TLR2 were implicated in responses to A. fumigatus components in MDM.

Conclusions:

  • Monocyte-derived macrophages (MDM) represent a suitable experimental model for studying mold-induced inflammation.
  • Differential responses of macrophage models highlight the complexity of mold-related respiratory diseases.
  • Understanding the interaction between mold components and immune cells is crucial for addressing indoor air quality concerns.

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