Mechanical, elution, and antibacterial properties of simplex bone cement loaded with vancomycin

Sunjung Kim1, Aaron R Bishop2, Matthew W Squire3

  • 1University of Wisconsin, Madison, Mechanical Engineering, Madison, WI, U.S.A.

Insights

Adding vancomycin to bone cement for prosthetic joint infections compromises mechanical strength. While high doses eliminate bacteria, no ideal vancomycin concentration in Simplex™ P met both strength and antibacterial needs.

Area of Science:

  • Biomaterials Science
  • Orthopedic Surgery
  • Infectious Diseases

Background:

  • Prosthetic joint infection (PJI) is a major complication of total joint replacement (TJR).
  • Multi-drug resistant bacteria form biofilms, complicating PJI treatment.
  • Vancomycin is an antibiotic effective against common PJI pathogens like MRSA.

Purpose of the Study:

  • To evaluate the impact of vancomycin on bone cement elution, antimicrobial, and mechanical properties.
  • To determine an optimal vancomycin concentration for Simplex™ P bone cement.

Main Methods:

  • Vancomycin was added to Simplex™ P bone cement at varying concentrations (0.125g to 2.0g).
  • Elution, antimicrobial efficacy against four bacterial strains, and mechanical properties (flexural and compression) were assessed.
  • Results were compared against ISO 5833 standards and control groups.

Main Results:

  • Vancomycin addition compromised mechanical properties, with flexural strength below ISO 5833 minimums for concentrations ≥0.5g.
  • A vancomycin concentration of 2.0g completely eradicated all tested bacterial strains.
  • The highest mass elution of vancomycin occurred over a 60-day period with the 2.0g concentration.

Conclusions:

  • No ideal vancomycin concentration was found for Simplex™ P that satisfies both mechanical integrity and complete bacterial elimination.
  • Higher vancomycin concentrations required for efficacy significantly weaken the bone cement.
  • Further research is needed to balance mechanical performance and antimicrobial activity in antibiotic-loaded bone cements.