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Author Spotlight: THP-1 Macrophage Response to LPS/ATP — Unveiling the Pyroptosis, Apoptosis, and Necroptosis Spectrum
Published on: May 3, 2024
Programmed necrotic cell death of macrophages: Focus on pyroptosis, necroptosis, and parthanatos
Nirmal Robinson1, Raja Ganesan1, Csaba Hegedűs2
1Inflammation and Human Ailments Laboratory, Centre for Cancer Biology, SA Pathology and University of South Australia, Adelaide, Australia.
Abstract:
Macrophages are highly plastic cells of the innate immune system. Macrophages play central roles in immunity against microbes and contribute to a wide array of pathologies. The processes of macrophage activation and their functions have attracted considerable attention from life scientists. Although macrophages are highly resistant to many toxic stimuli, including oxidative stress, macrophage death has been reported in certain diseases, such as viral infections, tuberculosis, atherosclerotic plaque development, inflammation, and sepsis. While most studies on macrophage death focused on apoptosis, a significant body of data indicates that programmed necrotic cell death forms may be equally important modes of macrophage death. Three such regulated necrotic cell death modalities in macrophages contribute to different pathologies, including necroptosis, pyroptosis, and parthanatos. Various reactive oxygen and nitrogen species, such as superoxide, hydrogen peroxide, and peroxynitrite have been shown to act as triggers, mediators, or modulators in regulated necrotic cell death pathways. Here we discuss recent advances in necroptosis, pyroptosis, and parthanatos, with a strong focus on the role of redox homeostasis in the regulation of these events.
Insights
Programmed necrotic cell death pathways like necroptosis, pyroptosis, and parthanatos are crucial in macrophage roles during disease. Redox homeostasis significantly influences these regulated necrotic cell death events.
Area of Science:
- Immunology
- Cell Biology
- Pathology
Background:
- Macrophages are key innate immune cells involved in host defense and disease.
- While resistant to stress, macrophages undergo programmed cell death in various pathologies.
- Apoptosis is well-studied, but regulated necrotic cell death forms are increasingly recognized.
Purpose of the Study:
- To review recent advances in macrophage necroptosis, pyroptosis, and parthanatos.
- To highlight the critical role of redox homeostasis in regulating these cell death pathways.
Main Methods:
- Literature review focusing on programmed necrotic cell death in macrophages.
- Analysis of the interplay between reactive oxygen/nitrogen species and cell death pathways.
Main Results:
- Necroptosis, pyroptosis, and parthanatos are significant macrophage death modalities in disease.
- Reactive oxygen and nitrogen species act as critical regulators in these pathways.
- Redox homeostasis is central to controlling programmed necrotic cell death in macrophages.
Conclusions:
- Regulated necrotic cell death pathways are vital in macrophage-mediated pathologies.
- Understanding the redox regulation of these pathways offers therapeutic potential.
- Further research into necroptosis, pyroptosis, and parthanatos is warranted.
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