Discovering Molecules That Regulate Efferocytosis Using Primary Human Macrophages and High Content Imaging

Sandra Santulli-Marotto1, Alexis Gervais1, Jamie Fisher1

  • 1Janssen Research & Development, LLC, 1400 Welsh & McKean Rds., Spring House, PA, 19477, United States of America.

Plos One
|December 18, 2015
PubMed

Insights

Defective clearance of apoptotic cells can lead to inflammation and autoimmunity. This study developed a method to screen antibodies, finding many that enhance macrophage phagocytosis, offering therapeutic potential for inflammatory diseases.

Area of Science:

  • Immunology
  • Cell Biology
  • Pharmacology

Background:

  • Defective apoptotic cell clearance by macrophages contributes to inflammation and autoimmunity.
  • Macrophages are key phagocytes responsible for non-inflammatory removal of dead cells.
  • Modulating macrophage phagocytosis presents a therapeutic avenue for inflammatory conditions.

Purpose of the Study:

  • To develop and validate a high-content imaging system for evaluating antibody effects on apoptotic cell uptake by human macrophages.
  • To assess a panel of antibodies for their ability to modulate phagocytosis.
  • To identify novel therapeutic targets for enhancing efferocytosis.

Main Methods:

  • Utilized high-content imaging to quantify the Phagocytic Index (PI) of primary human macrophages.
  • Screened a panel of antibodies generated against human macrophages.
  • Validated findings by identifying antibodies targeting the MerTK receptor.

Main Results:

  • Developed a feasible system for evaluating antibody-mediated effects on phagocytosis.
  • ~50% of tested antibodies enhanced apoptotic cell uptake, while ~5% inhibited it.
  • Identified two antibodies that enhance uptake by targeting MerTK, independent of known ligands Gas6 or ProS.

Conclusions:

  • The developed method effectively identifies modulators of efferocytosis.
  • Antibodies targeting MerTK can enhance apoptotic cell clearance, validating this pathway for therapeutic development.
  • This strategy allows for the discovery of novel pathways regulating phagocytosis without requiring purified proteins.

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