Low Concentration of Exogenous Carbon Monoxide Modulates Radiation-Induced Bystander Effect in Mammalian Cell Cluster Model

Int J Mol Sci. 2016 Dec 8;17(12):2051. doi: 10.3390/ijms17122051.

Abstract

During radiotherapy procedures, radiation-induced bystander effect (RIBE) can potentially lead to genetic hazards to normal tissues surrounding the targeted regions. Previous studies showed that RIBE intensities in cell cluster models were much higher than those in monolayer cultured cell models. On the other hand, low-concentration carbon monoxide (CO) was previously shown to exert biological functions via binding to the heme domain of proteins and then modulating various signaling pathways. In relation, our previous studies showed that exogenous CO generated by the CO releasing molecule, tricarbonyldichlororuthenium (CORM-2), at a relatively low concentration (20 µM), effectively attenuated the formation of RIBE-induced DNA double-strand breaks (DSB) and micronucleus (MN). In the present work, we further investigated the capability of a low concentration of exogenous CO (CORM-2) of attenuating or inhibiting RIBE in a mixed-cell cluster model. Our results showed that CO (CORM-2) with a low concentration of 30 µM could effectively suppress RIBE-induced DSB (p53 binding protein 1, p53BP1), MN formation and cell proliferation in bystander cells but not irradiated cells via modulating the inducible nitric oxide synthase (iNOS) andcyclooxygenase-2 (COX-2). The results can help mitigate RIBE-induced hazards during radiotherapy procedures.

Keywords: cell cluster model; cyclooxygenase-2; inducible nitric oxide synthase; low centration of carbon monoxide; radiation-induced bystander effect.

MeSH terms

  • Animals
  • Bystander Effect / drug effects*
  • Bystander Effect / radiation effects*
  • CHO Cells
  • Carbon Monoxide / pharmacology*
  • Cell Aggregation / drug effects
  • Cell Aggregation / radiation effects
  • Cell Proliferation / drug effects
  • Cell Proliferation / radiation effects
  • Cricetinae
  • Cricetulus
  • Cyclooxygenase 2 / metabolism
  • DNA Breaks, Double-Stranded / drug effects
  • DNA Breaks, Double-Stranded / radiation effects
  • Micronuclei, Chromosome-Defective / drug effects
  • Micronuclei, Chromosome-Defective / radiation effects
  • Models, Biological*
  • Nitric Oxide Synthase Type II / antagonists & inhibitors
  • Nitric Oxide Synthase Type II / metabolism
  • Radiation*
  • Tumor Suppressor p53-Binding Protein 1 / metabolism
  • X-Rays

Substances

  • Tumor Suppressor p53-Binding Protein 1
  • Carbon Monoxide
  • Nitric Oxide Synthase Type II
  • Cyclooxygenase 2