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Immune Evasion Strategies of Pathogens in Macrophages: the Potential for Limiting Pathogen Transmission
Yuwei Ren1, Faheem Ahmed Khan, Nuruliarizki Shinta Pandupuspitasari
1Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction of Ministry of Education, Huazhong Agriculture University, Hubei Wuhan 430070, China.
Abstract:
Preventing pathogen transmission to a new host is of major interest to the immunologist and could benefit from a detailed investigation of pathogen immune evasion strategies. The first line of defense against pathogen invasion is provided by macrophages. When they sense pathogens, macrophages initiate signals to inflammatory and pro-inflammatory cytokines through pattern recognition receptors (PRRs) subsequently mediating phagocytosis and inflammation. The macrophage immune machinery classically includes two subsets: the activated M1 and the activated M2 that respond accordingly in diverse immune challenges. The lipid and glycogen metabolic pathways work together with the lysosome to help the mature phagosome to degrade and eliminate intracellular pathogens in macrophages. The viral evasion strategies are even more complex due to the interplay between autophagy and apoptosis. However, pathogens evolve several strategies to camouflage themselves against immune responses in order to ensure their survival, replication and transmission. These strategies include the muting of PRRs initiated inflammatory responses, attenuation of M1 and/or induction of M2 macrophages, suppression of autophago-lysosomal formation, interference with lipid and glycogen metabolism, and viral mediation of autophagy and apoptosis cross-talk to enhance viral replication. This review focuses on pathogen immune evasion methods and on the strategies used by the host against camouflaged pathogens.
Insights
Pathogens evade host immunity using complex strategies, like muting pattern recognition receptors (PRRs) and altering macrophage responses. Understanding these immune evasion tactics is crucial for preventing pathogen transmission.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Macrophages are the first line of defense against pathogens.
- Macrophage activation involves M1 and M2 subsets, phagocytosis, and inflammatory responses.
- Pathogen evasion strategies complicate host immune defenses.
Purpose of the Study:
- To review pathogen immune evasion strategies.
- To explore host counter-strategies against camouflaged pathogens.
- To highlight the complexity of viral immune evasion.
Main Methods:
- Literature review of pathogen immune evasion mechanisms.
- Analysis of host-pathogen interactions at the cellular level.
- Examination of molecular pathways involved in immune response and evasion.
Main Results:
- Pathogens employ diverse strategies to evade immune detection and clearance.
- Key evasion tactics include PRR suppression, macrophage polarization, and metabolic interference.
- Viruses exploit autophagy and apoptosis pathways for replication.
Conclusions:
- Pathogen immune evasion is a significant challenge to host defense.
- Understanding these strategies is vital for developing effective treatments.
- Host immune responses must overcome sophisticated pathogen adaptations.
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