Radiation-induced eCIRP impairs macrophage bacterial phagocytosis

Satoshi Yamaga1, Atsushi Murao1, Mian Zhou1

  • 1Center for Immunology and Inflammation, The Feinstein Institutes for Medical Research, 350 Community Dr., Manhasset, NY 11030, United States.

PubMed

Insights

Radiation exposure impairs macrophage phagocytosis of bacteria. Neutralizing extracellular cold-inducible RNA-binding protein restores this critical immune function, offering a potential therapy for infections post-radiation injury.

Area of Science:

  • Immunology
  • Radiation Biology
  • Molecular Medicine

Background:

  • Macrophages are crucial for combating bacterial infections, particularly after radiation injury.
  • The impact of radiation on macrophage phagocytosis and the role of extracellular cold-inducible RNA-binding protein (ecCIRP) remain understudied.
  • Extracellular cold-inducible RNA-binding protein is implicated in immune dysregulation and acts as a damage-associated molecular pattern.

Purpose of the Study:

  • To investigate if radiation-induced release of extracellular cold-inducible RNA-binding protein impairs macrophage phagocytosis of bacteria.
  • To explore the therapeutic potential of neutralizing extracellular cold-inducible RNA-binding protein to restore phagocytic function after radiation exposure.

Main Methods:

  • Mice were exposed to 6.5 Gy total body irradiation; primary peritoneal macrophages were isolated and irradiated in vitro.
  • Bacterial phagocytosis of Escherichia coli by macrophages was assessed ex vivo and in vitro after irradiation and/or treatment with ecCIRP-neutralizing antibody or recombinant ecCIRP.
  • Protein expression (Rac1, ARP2) and extracellular cold-inducible RNA-binding protein levels were analyzed via Western blotting.

Main Results:

  • Irradiation significantly reduced bacterial phagocytosis by macrophages both ex vivo and in vitro.
  • Total body irradiation increased extracellular cold-inducible RNA-binding protein levels in the peritoneal cavity and downregulated Rac1 and ARP2 expression in macrophages.
  • Recombinant extracellular cold-inducible RNA-binding protein dose-dependently inhibited phagocytosis, while the neutralizing antibody restored phagocytic capacity in irradiated macrophages.

Conclusions:

  • Ionizing radiation impairs macrophage phagocytosis of bacteria, partly mediated by extracellular cold-inducible RNA-binding protein.
  • Neutralizing extracellular cold-inducible RNA-binding protein effectively restores macrophage phagocytic function following radiation injury.
  • These findings reveal a novel mechanism of radiation-induced immune dysfunction and suggest a potential therapeutic strategy against post-radiation infections.