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The effects of Sr concentration on physicochemical properties, bioactivity and biocompatibility of sub-micron bioactive glasses spheres

  • Qing Hu
  • , Weihui Jiang
  • , Xiaofeng Chen
  • , Yuli Li
  • , Qiming Liang
  • Jingdezhen Ceramic Institute
  • National Engineering Research Center for Domestic & Building Ceramics
  • South China University of Technology
  • Weifang Medical University

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

We synthetized a series of strontium-substituted submicron bioactive glasses spheres (Sr-SBG, SiO2-P2O5-CaO-SrO) in which strontium was substituted for calcium on a mole percentage basis, then investigated the effect of strontium-substituted amount on morphologies, physicochemical properties, apatite-forming bioactivity of SBG and evaluated the proliferation, differentiation and mineralization of Sr-SBG with different strontium substitution amounts by co-cultured with human dental pulp cells (HDPCs). Results showed that Sr-SBG with different strontium substitution amounts were successfully fabricated and substituting different strontium amounts did not affect the morphology and particle size of SBG. All the Sr-SBG possessed good apatite-forming ability, but substituting a certain amount of strontium for calcium would weaken the apatite-forming ability of SBG. Additionally, all the Sr-SBG extractions promoted proliferation, early odontogenic differentiation and mineralization of HDPCs, however, the cell proliferation, differentiation and mineralization abilities would be reduced when the substituted amount of strontium was excess (15 mol%). This study suggests that Sr-SBG with moderate strontium substitution amounts can be used as a more promising biomaterial for dental repair.

Original languageEnglish
Pages (from-to)2713-2722
Number of pages10
JournalAdvanced Powder Technology
Volume28
Issue number10
DOIs
StatePublished - Oct 2017
Externally publishedYes

Keywords

  • Apatite formation
  • Biocompatibility
  • Dental repair
  • Strontium-substituted bioactive glass
  • Sub-micron

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