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Macrophage Differentiation and Polarization into an M2-Like Phenotype using a Human Monocyte-Like THP-1 Leukemia Cell Line
Published on: August 2, 2021
TH1/TH2 paradigm extended: macrophage polarization as an unappreciated pathogen-driven escape mechanism?
Eric Muraille1, Oberdan Leo2, Muriel Moser2
1Laboratory of Parasitology, Faculty of Medicine, Université Libre de Bruxelles , Brussels , Belgium.
Abstract:
The classical view of the Th1/Th2 paradigm posits that the pathogen nature, infectious cycle, and persistence represent key parameters controlling the choice of effector mechanisms operating during an immune response. Thus, efficient Th1 responses are triggered by replicating intracellular pathogens, while Th2 responses would control helminth infection and promote tissue repair during the resolution phase of an infectious event. However, this vision does not account for a growing body of data describing how pathogens exploit the polarization of the host immune response to their own benefit. Recently, the study of macrophages has illustrated a novel aspect of this arm race between pathogens and the immune system, and the central role of macrophages in homeostasis, repair and defense of all tissues is now fully appreciated. Like T lymphocytes, macrophages differentiate into distinct effectors including classically (M1) and alternatively (M2) activated macrophages. Interestingly, in addition to represent immune effectors, M1/M2 cells have been shown to represent potential reservoir cells to a wide range of intracellular pathogens. Subversion of macrophage cell metabolism by microbes appears as a recently uncovered immune escape strategy. Upon infection, several microbial agents have been shown to activate host metabolic pathways leading to the production of nutrients necessary to their long-term persistence in host. The purpose of this review is to summarize and discuss the strategies employed by pathogens to manipulate macrophage differentiation, and in particular their basic cell metabolism, to favor their own growth while avoiding immune control.
Insights
Pathogens manipulate host immune cells, like macrophages, by altering their metabolism to ensure survival. This review explores how microbes exploit macrophage differentiation and metabolism for their own persistence and immune evasion.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- The Th1/Th2 paradigm traditionally explains immune responses based on pathogen type.
- Pathogens increasingly exploit host immune polarization for their benefit.
- Macrophages play a crucial role in tissue homeostasis, repair, and defense.
Purpose of the Study:
- To review pathogen strategies for manipulating macrophage differentiation.
- To discuss how pathogens subvert macrophage metabolism for growth and persistence.
- To highlight the role of altered host cell metabolism in microbial immune escape.
Main Methods:
- Literature review of studies on pathogen-host interactions.
- Analysis of research on macrophage activation (M1/M2) and differentiation.
- Examination of microbial manipulation of host cell metabolic pathways.
Main Results:
- Macrophages, like T cells, differentiate into M1 and M2 effectors.
- M1/M2 macrophages can serve as reservoirs for intracellular pathogens.
- Pathogens activate host metabolic pathways to generate nutrients for their survival.
Conclusions:
- Pathogens employ sophisticated strategies to manipulate host immune responses.
- Subversion of macrophage metabolism is a key immune escape mechanism for microbes.
- Understanding these strategies is crucial for developing new anti-infective therapies.
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