Profiling alveolar macrophage responses to inhaled compounds using in vitro high content image analysis

Ewelina Hoffman1, Laura Urbano1, Abigail Martin1

  • 1Centre for Topical Drug Delivery and Toxicology, School of Life and medical Sciences, University of Hertfordshire, Hatfield AL10 9AB, UK.

Insights

A new high content image analysis (HCIA) assay effectively predicts drug-induced foamy macrophage (FM) responses in vitro. This tool differentiates FM phenotypes, aiding safety assessments for inhaled medicines.

Area of Science:

  • Pharmacology
  • Toxicology
  • Cell Biology

Background:

  • Foamy macrophage (FM) responses in animal studies pose a significant hurdle for inhaled medicine development.
  • Current non-clinical safety assessments often face challenges in predicting these adverse effects, delaying clinical trials.

Purpose of the Study:

  • To evaluate a novel multi-parameter high content image analysis (HCIA) assay as an in vitro safety screening tool.
  • To predict drug-induced foamy macrophage formation in preclinical inhaled medicine development.

Main Methods:

  • Rat (NR8383) and human (U937) alveolar macrophages were exposed to various model compounds.
  • High content image analysis (HCIA) assessed cell health, morphology, and lipid content.
  • Hierarchical clustering analyzed drug-induced cell response profiles.

Main Results:

  • The HCIA assay generated distinct macrophage response profiles differentiating inhaled drugs from phospholipidosis and apoptosis inducers.
  • Distinct clusters were observed in NR8383 cells, linked to vacuolation and lipid accumulation.
  • U937 cells showed similar trends but exhibited lower sensitivity and a narrower response range.

Conclusions:

  • The multi-parameter HCIA assay successfully generates characteristic drug-induced macrophage profiles.
  • This assay can differentiate foamy macrophage phenotypes associated with phospholipidosis and apoptosis.
  • The HCIA approach shows significant potential as an in vitro preclinical safety screening tool for inhaled medicines.

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