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Published on: July 26, 2017
Microparticles as immune regulators in infectious disease - an opinion
Zheng Lung Ling1, Valery Combes, Georges E Grau
1Discipline of Pathology, Bosch Institute, School of Medical Sciences, Sydney Medical School, University of Sydney Sydney, NSW, Australia.
Abstract:
Despite their clear relationship to immunology, few existing studies have examined the potential role of microparticles (MP) in infectious disease. MP have a different size range from exosomes and apoptotic bodies, with which they are often grouped and arise by different mechanisms in association with inflammatory cytokine action or stress on the source cell. Infection with pathogens usually leads to the expression of a range of inflammatory cytokines and chemokines, as well as significant stress in both infected and uninfected cells. It is thus reasonable to infer that infection-associated inflammation also leads to MP production. MP are produced by most of the major cell types in the immune system, and appear to be involved at both innate and adaptive levels, potentially serving different functions in each. Thus, they do not appear to have a universal function; instead their functions are source- or stimulus-dependent, although likely to be primarily either pro- or anti-inflammatory. We argue that in infectious diseases, MP may be able to deliver antigen, derived from the biological cargo acquired from their cells of origin, to antigen-presenting cells. Another potential benefit of MP would be to transfer and/or disseminate phenotype and function to target cells. However, MP may also potentially be manipulated, particularly by intracellular pathogens, for survival advantage.
Insights
Microparticles (MPs), cell-derived vesicles, play a significant role in infectious diseases. These MPs can deliver antigens and transfer functions, but intracellular pathogens may exploit them for survival.
Area of Science:
- Immunology
- Infectious Diseases
- Cell Biology
Background:
- Microparticles (MPs) are cell-derived vesicles distinct from exosomes and apoptotic bodies.
- MPs are produced through different mechanisms, often triggered by inflammatory cytokines or cellular stress.
- Infection commonly induces inflammatory cytokines and cellular stress, suggesting MP production during infection.
Purpose of the Study:
- To explore the under-examined role of microparticles (MPs) in infectious diseases.
- To elucidate the potential functions and implications of MPs in the context of infection.
Main Methods:
- The study is primarily a review and theoretical argument, synthesizing existing knowledge on MPs and infection.
- It infers MP production and function based on known cellular responses to pathogens and inflammation.
Main Results:
- Infection-associated inflammation leads to the production of MPs by immune cells.
- MPs can deliver antigens to antigen-presenting cells and transfer cellular phenotypes/functions.
- Intracellular pathogens may manipulate MPs for their own survival advantage.
Conclusions:
- Microparticles (MPs) are involved in both innate and adaptive immunity during infection.
- MP functions are source- and stimulus-dependent, potentially acting as pro- or anti-inflammatory mediators.
- MPs represent a novel area for understanding host-pathogen interactions and developing therapeutic strategies.
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