Dabie bandavirus infection induces macrophagic pyroptosis and this process is attenuated by platelets

Sicong Yu1,2,3, Qinyi Zhang2,4, Lingxuan Su4

  • 1Department of Critical Care Medicine, Sir Run Run Shaw Hospital, College of Medicine, Zhejiang University, Hangzhou, China.

Insights

Dabie bandavirus (DBV) causes severe fever with thrombocytopenia syndrome (SFTS) by inducing pyroptosis in human macrophages. Platelets protect against this cell death but aid DBV propagation, offering therapeutic insights.

Area of Science:

  • Virology
  • Immunology
  • Cell Biology

Background:

  • Severe fever with thrombocytopenia syndrome (SFTS) is a dangerous tick-borne illness caused by Dabie bandavirus (DBV).
  • Macrophage depletion is crucial in fatal SFTS, but the precise cell death mechanism is unclear.
  • Understanding DBV's impact on macrophages is vital for developing treatments.

Purpose of the Study:

  • To investigate the cell death mechanism induced by DBV in human macrophages.
  • To explore the role of platelets in DBV-induced macrophage death and viral propagation.

Main Methods:

  • Human macrophages were infected with DBV.
  • Cell death was assessed via morphology, GSDMD-NT, LDH, and IL-1β release.
  • Gene and protein expression of pyroptosis markers were analyzed.
  • Platelet interactions with infected macrophages were studied using transcriptome analysis and in vitro assays.

Main Results:

  • DBV infection induced macrophagic pyroptosis, confirmed by cellular changes and release of inflammatory mediators.
  • Expressions of pyroptosis-related genes and proteins (GSDMD, caspase-1, IL-1β) were elevated.
  • Platelets significantly reduced DBV-induced pyroptosis and inflammatory cytokine production in macrophages.
  • Platelets also enhanced DBV propagation within macrophages.

Conclusions:

  • DBV triggers pyroptosis in human macrophages as a host defense mechanism.
  • Platelets mitigate DBV-induced macrophage pyroptosis but facilitate viral spread.
  • These findings offer novel insights into SFTS pathogenesis and potential therapeutic strategies against DBV.

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