Surface morphology and morphometry of rat alveolar macrophages after ozone exposure

J A Dormans1, P J Rombout, H van Loveren

  • 1Laboratory for Pathology, National Institute of Public Health and Environmental Protection, Bilthoven, The Netherlands.

Insights

Ozone exposure significantly alters pulmonary alveolar macrophages (PAM) in rats, changing their size and surface structure. These morphological shifts in PAM indicate altered lung function following ozone inhalation.

Area of Science:

  • Environmental toxicology
  • Pulmonary pathology
  • Cell biology

Background:

  • Pulmonary alveolar macrophages (PAM) are critical immune cells in the lung.
  • Limited ultrastructural data exists on ozone's effects on PAM.
  • Ozone is a known respiratory irritant.

Purpose of the Study:

  • To investigate the ultrastructural effects of ozone exposure on rat PAM using electron microscopy.
  • To quantify changes in PAM number and morphology following ozone exposure.
  • To assess the impact of concurrent ozone exposure and Listeria infection on PAM.

Main Methods:

  • Transmission (TEM) and scanning (SEM) electron microscopy of rat PAM.
  • Ozone exposure of rats at varying concentrations (0.25-1.50 mg/m3) and durations (1-7 days).
  • Morphometric analysis of lung sections and analysis of lavage fluid cells.
  • Infection model using Listeria monocytogenes concurrently with ozone exposure.

Main Results:

  • Ozone exposure altered PAM surface morphology, introducing microvilli and blebs alongside normal ruffles.
  • PAM number and size increased in a concentration-dependent manner with ozone exposure.
  • Concurrent Listeria infection with ozone exposure caused minor increases in neutrophils and large PAM.

Conclusions:

  • Ozone exposure induces significant morphological changes in rat PAM, affecting their number, size, and surface characteristics.
  • These observed morphological alterations in PAM suggest a functional impairment of these cells in the lung.
  • The centriacinar regions of the lung appear most susceptible to ozone-induced PAM changes.