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Control of human cytomegalovirus replication by liver resident natural killer cells.


ABSTRACT: Natural killer cells are considered to be important for control of human cytomegalovirus- a major pathogen in immune suppressed transplant patients. Viral infection promotes the development of an adaptive phenotype in circulating natural killer cells that changes their anti-viral function. In contrast, less is understood how natural killer cells that reside in tissue respond to viral infection. Here we show natural killer cells resident in the liver have an altered phenotype in cytomegalovirus infected individuals and display increased anti-viral activity against multiple viruses in vitro and identify and characterise a subset of natural killer cells responsible for control. Crucially, livers containing natural killer cells with better capacity to control cytomegalovirus replication in vitro are less likely to experience viraemia post-transplant. Taken together, these data suggest that virally induced expansion of tissue resident natural killer cells in the donor organ can reduce the chance of viraemia post-transplant.

SUBMITTER: Forrest C 

PROVIDER: S-EPMC10014884 | biostudies-literature | 2023 Mar

REPOSITORIES: biostudies-literature

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Control of human cytomegalovirus replication by liver resident natural killer cells.

Forrest Calum C   Chase Thomas J G TJG   Cuff Antonia O AO   Maroulis Dionas D   Motallebzadeh Reza R   Gander Amir A   Davidson Brian B   Griffiths Paul P   Male Victoria V   Reeves Matthew M  

Nature communications 20230314 1


Natural killer cells are considered to be important for control of human cytomegalovirus- a major pathogen in immune suppressed transplant patients. Viral infection promotes the development of an adaptive phenotype in circulating natural killer cells that changes their anti-viral function. In contrast, less is understood how natural killer cells that reside in tissue respond to viral infection. Here we show natural killer cells resident in the liver have an altered phenotype in cytomegalovirus i  ...[more]

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