• Title of article

    Heat stress leads to superoxide formation in Bacillus cereus detected using the fluorescent probe MitoSOX

  • Author/Authors

    Mols، نويسنده , , Maarten and Ceragioli، نويسنده , , Mara and Abee، نويسنده , , Tjakko، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    4
  • From page
    119
  • To page
    122
  • Abstract
    Bacillus cereus is a food-borne human pathogen and food spoilage organism. Spores and vegetative cells of B. cereus can be found almost everywhere and therefore often end up in food processing equipment and food products. To remove spores and vegetative cells from food or equipment, harsh treatments such as high temperatures are applied. The heat stress response of B. cereus and other organisms has been studied and it has been shown that reactive oxygen species may be involved in inactivating the bacterial cells. Using a novel approach with the fluorescent probe MitoSOX, the formation of superoxide in B. cereus cells upon exposure to heat has been confirmed. MitoSOX can be used in combination with other probes, including, SYTOX green, CYTO 9, and CFDA, showing superoxide formation in combination with damaged cell membranes, intact cell membranes, and esterase activity in cells with intact membranes, respectively. MitoSOX in combination with flow cytometry-assisted sorting showed three distinct populations, a low fluorescent population that was still viable, a highly fluorescent population that could not be recovered on agar plates, and a low fluorescent non-viable population that appeared after prolonged exposure to heat. This third population may include dead cells where MitoSOX binds to DNA without reacting with superoxide. Superoxide formation during exposure to lethal temperatures by B. cereus shows that superoxide plays a role in bacterial cell death and its generation may thus contribute to the efficiency of food preservation conditions.
  • Keywords
    MitoSOX , flow cytometry , Reactive oxygen species , Stress response , fluorescence microscopy
  • Journal title
    International Journal of Food Microbiology
  • Serial Year
    2011
  • Journal title
    International Journal of Food Microbiology
  • Record number

    2117043