Gram-Negative Bacteria Are Internalized Into Osteocyte-Like Cells

Ray K Saunders1, Joseph Infanti2, Hibah Ali3

  • 1Department of Pathobiology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

Insights

Gram-negative bacteria, like Proteus mirabilis and Serratia marcescens, can invade bone cells. This internalization, dependent on bacterial concentration and time, may contribute to recurrent bone infections and affect cell viability.

Area of Science:

  • Orthopaedic Research
  • Microbiology
  • Cell Biology

Background:

  • Gram-positive bacteria are common in initial bone infections.
  • Gram-negative bacteria prevalence increases in recurrent bone infections.
  • Bacterial internalization is a potential cause of recurring bone infections.

Purpose of the Study:

  • To test if Gram-negative bacteria can be internalized into bone cells.
  • To investigate the mechanism and consequences of Gram-negative bacterial internalization in bone cells.

Main Methods:

  • Utilized MLO-A5 and MLO-Y4 bone cell lines.
  • Performed bacterial internalization assays with Proteus mirabilis and Serratia marcescens.
  • Employed confocal microscopy to visualize internalized bacteria.
  • Used methyl-β-cyclodextrin and chloroquine to inhibit cellular uptake.
  • Assessed cell viability using lactate dehydrogenase (LDH) release and MTT activity assays.

Main Results:

  • Proteus mirabilis and Serratia marcescens were internalized by bone cells in a time- and concentration-dependent manner.
  • Confocal analysis confirmed intracellular bacteria within bone cells.
  • Cellular uptake was partially inhibited by methyl-β-cyclodextrin and chloroquine, indicating a cell-mediated process.
  • Internalized P. mirabilis did not affect cell viability.
  • Internalized S. marcescens increased LDH release and reduced MTT activity, indicating cytotoxicity and loss of cell viability.

Conclusions:

  • Gram-negative bacteria, specifically P. mirabilis and S. marcescens, can be internalized by bone cells.
  • This internalization process is cell-mediated.
  • Internalized S. marcescens can reduce bone cell viability.
  • Bacterial internalization into bone cells is a potential mechanism driving recurrent bone infections.

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