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Updated: May 16, 2025

Author Spotlight: Flow Cytometric Determination of Pyroptosis in Avian Cells
Published on: May 31, 2024
A morphology and secretome map of pyroptosis
Michael J Lippincott1, Jenna Tomkinson1, Dave Bunten1
1Department of Biomedical Informatics, University of Colorado School of Medicine, Aurora, CO 80045.
Abstract:
Pyroptosis represents one type of programmed cell death. It is a form of inflammatory cell death that is canonically defined by caspase-1 cleavage and Gasdermin-mediated membrane pore formation. Caspase-1 initiates the inflammatory response (through IL-1β processing), and the N-terminal cleaved fragment of Gasdermin D polymerizes at the cell periphery forming pores to secrete proinflammatory markers. Cell morphology also changes in pyroptosis, with nuclear condensation and membrane rupture. However, recent research challenges canon, revealing a more complex secretome and morphological response in pyroptosis, including overlapping molecular characterization with other forms of cell death, such as apoptosis. Here, we take a multimodal, systems biology approach to characterize pyroptosis. We treated human peripheral blood mononuclear cells (PBMCs) with 36 different combinations of stimuli to induce pyroptosis or apoptosis. We applied both secretome profiling (nELISA) and high-content fluorescence microscopy (Cell Painting). To differentiate apoptotic, pyroptotic, and control cells, we used canonical secretome markers and modified our Cell Painting assay to mark the N-terminus of Gasdermin D. We trained hundreds of machine learning (ML) models to reveal intricate morphology signatures of pyroptosis that implicate changes across many different organelles and predict levels of many proinflammatory markers. Overall, our analysis provides a detailed map of pyroptosis which includes overlapping and distinct connections with apoptosis revealed through a mechanistic link between cell morphology and cell secretome.
Insights
Pyroptosis, an inflammatory cell death, involves caspase-1 and Gasdermin D. This study reveals complex morphology and secretome changes, linking pyroptosis to apoptosis via machine learning analysis.
Area of Science:
- Cellular biology
- Immunology
- Systems biology
Background:
- Pyroptosis is a programmed inflammatory cell death pathway.
- Canonical features include caspase-1 activation and Gasdermin D pore formation.
- Recent studies suggest pyroptosis has a more complex secretome and morphology than previously understood, with overlaps with apoptosis.
Purpose of the Study:
- To comprehensively characterize pyroptosis using a multimodal systems biology approach.
- To differentiate pyroptosis from apoptosis by analyzing morphology and secretome.
- To identify mechanistic links between cell morphology and secretome in pyroptosis.
Main Methods:
- Treated human peripheral blood mononuclear cells (PBMCs) with 36 stimulus combinations to induce pyroptosis or apoptosis.
- Utilized secretome profiling (nELISA) and high-content fluorescence microscopy (Cell Painting).
- Developed machine learning models to identify pyroptosis morphology signatures and predict secretome markers, including labeling Gasdermin D.
Main Results:
- Identified intricate morphology signatures associated with pyroptosis, affecting multiple organelles.
- Revealed complex secretome profiles, including proinflammatory markers.
- Machine learning models predicted pyroptosis and linked morphological changes to secretome alterations.
- Demonstrated overlapping and distinct features between pyroptosis and apoptosis.
Conclusions:
- Pyroptosis exhibits a complex interplay of morphological and secretome changes.
- A mechanistic link exists between cell morphology and secretome in pyroptosis.
- This study provides a detailed map of pyroptosis, highlighting its relationship with apoptosis.
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