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Flow Cytometry-based Assay for the Monitoring of NK Cell Functions
Published on: October 30, 2016
Therapeutic depletion of natural killer cells controls persistent infection
Stephen N Waggoner1, Keith A Daniels, Raymond M Welsh
1Department of Pathology, University of Massachusetts Medical School, Worcester, Massachusetts, USA.
Abstract:
Persistent viral infections are associated with host and viral factors that impair effective antiviral immunity. Natural killer (NK) cells contribute to establishment of persistent lymphocytic choriomeningitis virus (LCMV) infection in mice through suppression of virus-specific T cell responses during the first few days of infection, but NK cell depletion during those early time points can enable severe T cell-mediated immune pathology and death of the host. Here we show that long after their peak in cytolytic activation, NK cells continue to support viral persistence at later times of infection. Delayed depletion of NK cells, 2 to 3 weeks after infection, enhanced virus-specific T cell responses and viral control. This enhancing effect of delayed NK cell depletion on antiviral immunity, in contrast to early NK cell depletion, was not associated with increased morbidity and mortality, and mice quickly regained weight after treatment. The efficacy of the depletion depended in part upon the size of the original virus inoculum, the viral load at the time of depletion, and the presence of CD4 T cells. Each of these factors is an important contributor to the degree of CD8 T cell dysfunction during viral persistence. Thus, NK cells may continuously contribute to exhaustion of virus-specific T cells during chronic infection, possibly by depleting CD4 T cells. Targeting of NK cells could thus be considered in combination with blockade of other immunosuppressive pathways, such as the interleukin-10 (IL-10) and programmed death 1 (PD-1) pathways, as a therapy to cure chronic human infections, including those with HIV or hepatitis C virus. IMPORTANCE Persistent virus infections are a major threat to global human health. The capacity of viruses, including HIV and hepatitis C virus, to overwhelm or subvert host immune responses contributes to a prolonged state of dampened antiviral immune functionality, which in turn facilitates viral persistence. Recent efforts have focused on therapeutics that can restore the effector functions of these functionally exhausted virus-specific T cells in order to expedite viral clearance. Here we establish that natural killer (NK) cells actively contribute to immune dysfunction and viral persistence at later stages of infection. This previously undescribed mechanism of immune suppression during chronic infection provides a vital clue for the design of novel therapeutic strategies targeting NK cell immunosuppressive activity in order to restore immune function and enhance viral control in chronically infected individuals.
Insights
Natural killer (NK) cells prolong persistent viral infections by suppressing T cell responses. Delayed NK cell depletion enhances antiviral immunity and viral control without increasing mortality, offering a potential therapeutic strategy.
Area of Science:
- Immunology
- Virology
- Infectious Diseases
Background:
- Persistent viral infections impair host antiviral immunity.
- Natural killer (NK) cells initially suppress T cell responses, aiding viral persistence.
- Early NK cell depletion can cause severe immune pathology.
Purpose of the Study:
- To investigate the role of NK cells in later stages of persistent viral infections.
- To determine if delayed NK cell depletion can restore antiviral immunity.
- To identify factors influencing the efficacy of NK cell depletion therapy.
Main Methods:
- Delayed depletion of NK cells in a mouse model of lymphocytic choriomeningitis virus (LCMV) infection.
- Assessment of virus-specific T cell responses and viral load.
- Evaluation of host morbidity and mortality.
- Analysis of factors such as viral inoculum size, viral load, and CD4 T cell presence.
Main Results:
- Delayed NK cell depletion (2-3 weeks post-infection) enhanced virus-specific T cell responses and viral control.
- This delayed depletion did not increase morbidity or mortality.
- Efficacy of depletion was dependent on viral inoculum, viral load, and CD4 T cells.
- NK cells may contribute to T cell exhaustion by depleting CD4 T cells.
Conclusions:
- NK cells actively promote viral persistence and immune dysfunction at later stages of infection.
- Targeting NK cells, potentially with other immunotherapies, could be a strategy to treat chronic viral infections.
- This study reveals a novel mechanism of immune suppression in chronic infections, guiding new therapeutic approaches.
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