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Quantification of Efferocytosis by Single-cell Fluorescence Microscopy
Published on: August 18, 2018
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.
Abstract:
Defective clearance of apoptotic cells can result in sustained inflammation and subsequent autoimmunity. Macrophages, the "professional phagocyte" of the body, are responsible for efficient, non-phlogistic, apoptotic cell clearance. Controlling phagocytosis of apoptotic cells by macrophages is an attractive therapeutic opportunity to ameliorate inflammation. Using high content imaging, we have developed a system for evaluating the effects of antibody treatment on apoptotic cell uptake in primary human macrophages by comparing the Phagocytic Index (PI) for each antibody. Herein we demonstrate the feasibility of evaluating a panel of antibodies of unknown specificities obtained by immunization of mice with primary human macrophages and show that they can be distinguished based on individual PI measurements. In this study ~50% of antibodies obtained enhance phagocytosis of apoptotic cells while approximately 5% of the antibodies in the panel exhibit some inhibition. Though the specificities of the majority of antibodies are unknown, two of the antibodies that improved apoptotic cell uptake recognize recombinant MerTK; a receptor known to function in this capacity in vivo. The agonistic impact of these antibodies on efferocytosis could be demonstrated without addition of either of the MerTK ligands, Gas6 or ProS. These results validate applying the mechanism of this fundamental biological process as a means for identification of modulators that could potentially serve as therapeutics. This strategy for interrogating macrophages to discover molecules regulating apoptotic cell uptake is not limited by access to purified protein thereby increasing the possibility of finding novel apoptotic cell uptake pathways.
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.

