Fabrication of strontium carbonate-based composite bioceramics as potential bone regenerative biomaterials

Colloids Surf B Biointerfaces. 2022 Oct:218:112755. doi: 10.1016/j.colsurfb.2022.112755. Epub 2022 Aug 9.

Abstract

Strontium carbonate (SrC) bioceramics are proposed as potential biomaterials to efficaciously repair the bone defects. However, the development of SrC bioceramics is restricted by their intrinsic low mechanical strength. In this study, SrC-based composite bioceramics (SrC-SrP) were fabricated by incorporating strontium-containing phosphate glass (SrP). The results indicated that aside from the main crystalline phase SrC, new compounds were generated in the SrC-SrP bioceramics. Incorporating 10 wt% SrP promoted densification, thus dramatically improving compressive strength of SrC-SrP bioceramics. The SrC-SrP bioceramics facilitated apatite precipitation on their surface, and sustainedly released strontium, phosphorus and sodium ions. Compared with the well-known β-tricalcium phosphate bioceramics, the SrC-SrP bioceramics with certain amounts of SrP enhanced proliferation, alkaline phosphatase activity and osteogenesis-related gene expressions of mouse bone mesenchymal stem cells. The SrC-SrP bioceramics with appropriate constituent can serve as novel bone regenerative biomaterials.

Keywords: Biological behavior; Mechanical properties; Phosphate glass; Strontium carbonate.

MeSH terms

  • Alkaline Phosphatase* / metabolism
  • Animals
  • Apatites
  • Biocompatible Materials* / chemistry
  • Biocompatible Materials* / pharmacology
  • Carbonates
  • Ceramics / chemistry
  • Ceramics / pharmacology
  • Mice
  • Osteogenesis / genetics
  • Phosphates
  • Phosphorus
  • Sodium
  • Strontium / chemistry
  • Strontium / pharmacology

Substances

  • Apatites
  • Biocompatible Materials
  • Carbonates
  • Phosphates
  • Phosphorus
  • strontium carbonate
  • Sodium
  • strontium phosphate
  • Alkaline Phosphatase
  • Strontium