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.
Abstract:
One of the main hurdles in the development of new inhaled medicines is the frequent observation of foamy macrophage (FM) responses in non-clinical studies in experimental animals, which raises safety concerns and hinders progress into clinical trials. We have investigated the potential of a novel multi-parameter high content image analysis (HCIA) assay as an in vitro safety screening tool to predict drug induced FM. Rat (NR8383) and human U937-derived alveolar macrophages were exposed in vitro to a panel of model compounds with different biological activity, including inhaled bronchodilators, inhaled corticosteroids (ICS), phospholipidosis inducers and proapoptotic agents. An HCIA was utilized to produce drug-induced cell response profiles based on individual cell health, morphology and lipid content parameters. The profiles of both rat and human macrophage cell lines differentiated between cell responses to marketed inhaled drugs and compounds known to induce phospholipidosis and apoptosis. Hierarchical clustering of the aggregated data allowed identification of distinct cell profiles in response to exposure to phospholipidosis and apoptosis inducers. Additionally, in NR8383 cell responses formed two distinct clusters, associated with increased vacuolation with or without lipid accumulation. U937 cells presented a similar trend but appeared less sensitive to drug exposure and presented a narrower range of responses. These results indicate that our multi-parameter HCIA assay is suitable to generate characteristic drug-induced macrophage response profiles, thus enabling differentiation of foamy macrophage phenotypes associated with phospholipidosis and apoptosis. This approach shows great potential as pre-clinical in vitro screening tool for safety assessment of candidate inhaled medicines.
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.


