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Published on: August 18, 2018
Measurement and quantification of macrophage lytic cell death by kinetic microscopy
Sara Cahill1, Fiachra Humphries1
1Division of Innate Immunity, Department of Medicine, UMass Chan Medical School, Worcester, MA, United States.
Abstract:
Macrophages are innate immune cells that are critical in the maintenance of tissue homeostasis and defense against pathogens. Programmed cell death is a critical tool macrophages use to clear pathogens and to alert surrounding cells to damage following induction of cell death. Diverse forms of cell death, including pyroptosis, necroptosis, ferroptosis, and secondary apoptosis following apoptosis, result in loss of plasma membrane integrity. Membrane disruption occurs following the oligomerization of pore-forming proteins into the cell membrane, releasing cytokines and damage associated molecular patterns that trigger the immune response. Thus, quantification of cell membrane permeability is an effective method for assessing cell death in macrophages. Many different factors, including macrophage polarization, stimulation, and inflammatory state, can impact macrophage predisposition to, and rate of, programmed cell death. Thus, it is important to have a method of accurately assessing macrophage cell death kinetically, rather than at a single endpoint. In this protocol, we describe a protocol for assessing cell death in macrophages by quantifying cell membrane permeability using kinetic microscopy. This method overcomes limitations of common single time point metrics for assessing cell death and is adaptable and scalable for use in assessing cell death across different cell types and treatment conditions.
Insights
Assessing macrophage cell death is crucial for understanding immune responses. This study introduces a kinetic microscopy method to accurately measure cell membrane permeability, offering a more dynamic approach to cell death assessment.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophages are key innate immune cells vital for tissue homeostasis and pathogen defense.
- Programmed cell death in macrophages is essential for pathogen clearance and signaling cellular damage.
- Various cell death forms (pyroptosis, necroptosis, ferroptosis, apoptosis) involve plasma membrane integrity loss.
Purpose of the Study:
- To develop a kinetic method for assessing macrophage cell death.
- To overcome limitations of single time-point cell death assays.
- To provide a scalable protocol adaptable to different cell types and conditions.
Main Methods:
- Quantification of cell membrane permeability in macrophages.
- Utilizing kinetic microscopy for dynamic cell death monitoring.
- Developing a protocol adaptable for various cell types and experimental treatments.
Main Results:
- The kinetic microscopy method accurately assesses cell membrane permeability.
- This approach provides kinetic data, unlike static single time-point assays.
- The protocol is adaptable and scalable for diverse research applications.
Conclusions:
- Kinetic microscopy offers a superior method for assessing macrophage cell death.
- Accurate, dynamic measurement of cell membrane permeability is key to understanding programmed cell death.
- This protocol enhances the study of immune cell death across various biological contexts.
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