Polymethylmethacrylate and titanium alloy particles activate peripheral monocytes during periprosthetic inflammation

Shang-You Yang1, Kai Zhang, Ling Bai

  • 1Orthopaedic Research Institute, Via Christi Regional Medical Center, Wichita, Kansas, USA. shang-you_yang@via-christi.org

Insights

Particulate materials like PMMA and titanium activate monocytes, driving inflammation and bone loss around prosthetic joints. This study reveals how these particles contribute to aseptic loosening in a SCID-hu mouse model.

Area of Science:

  • Biomaterials Science
  • Immunology
  • Orthopedic Research

Background:

  • Aseptic loosening is a major cause of prosthetic joint failure.
  • Particulate debris from implants, such as polymethyl methacrylate (PMMA) and titanium alloys, is implicated in the inflammatory cascade leading to loosening.
  • The precise mechanisms by which these particles interact with host immune cells and tissues remain incompletely understood.

Purpose of the Study:

  • To investigate the in vivo interactions between particulate biomaterials (PMMA, titanium alloy), patient monocytes, and periprosthetic tissues.
  • To elucidate the role of particle-activated peripheral blood monocytes in the pathogenesis of aseptic loosening using a SCID-hu mouse model.

Main Methods:

  • Utilized a SCID-hu mouse model engrafted with human periprosthetic tissues and bone chips.
  • Isolated and fluorescently labeled peripheral blood monocytes (PBMCs) from patients.
  • Co-cultured PBMCs with PMMA or Ti-6Al-4V particles before adoptive transfer into mice, followed by tissue analysis (immunohistochemistry, MicroCT).

Main Results:

  • Transfused PBMCs trafficked to and accumulated within periprosthetic tissues.
  • PMMA and titanium particles significantly increased CD68+ cell density and induced osteoclast-like cells (TRAP+), leading to bone erosion.
  • Activated PBMCs promoted local inflammation, evidenced by increased IL-1 and TNF expression, and reduced bone mineral density.

Conclusions:

  • Particulate PMMA and titanium readily activate peripheral monocytes, enhancing their migration to implant debris.
  • Activated monocytes contribute to aseptic loosening by promoting inflammation, osteoclastogenesis, and bone resorption at the prosthetic interface.