PMMA bone cement with AgNP@CDs nanocomposite for infection control and inflammation mitigation

Ihsan Ullah1,2,3, Jian Ju3, Yapei Song4

  • 1Joint Research Centre on Medicine, The Affiliated Xiangshan Hospital of Wenzhou Medical University, Ningbo, Zhejiang 315700, China.

Regenerative Biomaterials
|September 22, 2025
PubMed

Insights

This study introduces a novel silver nanoparticle-carbon dot (AgNP@CDs) enhanced poly(methyl methacrylate) bone cement. The composite material effectively combats bacterial infections and promotes tissue regeneration, offering a promising solution for orthopedic surgery.

Area of Science:

  • Biomaterials Science
  • Nanotechnology
  • Orthopedic Surgery

Background:

  • Poly(methyl methacrylate) (PMMA) bone cement is widely used but susceptible to infection and bioinert.
  • Limitations include bacterial colonization and lack of tissue integration support.

Purpose of the Study:

  • To develop a PMMA-based bone cement incorporating a silver nanoparticle-carbon dot (AgNP@CDs) nanocomposite.
  • To evaluate its efficacy in combating bacterial infections, minimizing cytotoxicity, and supporting tissue regeneration.

Main Methods:

  • Incorporation of AgNP@CDs (2 wt%) into PMMA bone cement.
  • Evaluation of antibacterial efficacy through in vitro and in vivo studies.
  • Assessment of biocompatibility, cell proliferation, adhesion, migration, and histological analysis for inflammation and tissue integration.

Main Results:

  • The PMMA@2Ag-CDs composite demonstrated significant antibacterial activity, reducing bacterial growth by up to 90%.
  • Improved cell proliferation, adhesion, and migration compared to pure PMMA.
  • Reduced inflammation and enhanced tissue integration with organized collagen deposition and angiogenesis.

Conclusions:

  • The PMMA@2Ag-CDs composite offers a promising solution for preventing infections and mitigating inflammatory responses in orthopedic applications.
  • Functionalization of bone cement with AgNP@CDs enhances biocompatibility and promotes tissue regeneration.
  • This strategy holds potential for practical applications in orthopedic and trauma surgery.

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