CaO-B2O3-SiO2 glass fibers for wound healing

J Mater Sci Mater Med. 2022 Jan 24;33(2):15. doi: 10.1007/s10856-021-06618-3.

Abstract

It was reported by Jung and Day in 2011 that a cotton-like glass fiber pad made of borate glass 13-93B3 demonstrated a remarkable wound healing effect. It was approved for sale as a novel wound dressing in the management of acute and chronic wounds in 2016. However, the detailed mechanism of its wound healing effect has not been reported. In the present study, glass fibers of different composition in the system CaO-B2O3-SiO2 were prepared and their in vitro properties investigated to determine the role of the constituent components in wound healing. Fine glass fibers that were 0.6-2.0 μm in diameter were obtained by a melt blown method. However, these fibers were accompanied by small glass beads because of the low viscosity of the glass melts. 13-93B3 glass released an appreciable amount of borate and calcium ions into simulated body fluid (SBF). The amounts of these released ions decreased with partial replacement of the B2O3 in 13-93B3 with SiO2. The addition of large amounts of the borate and calcium ions into the culture medium decreased the viability of the L929 fibroblasts. Partial replacement of the B2O3 in 13-93B3 with SiO2 induced the formation of an apatite-like phase amenable to the adsorption of biological components on its surface in SBF. The wound healing effect of these glass fibers of different composition is worth examining in future animal experiments.

MeSH terms

  • Animals
  • Bandages
  • Boron Compounds / chemistry
  • Boron Compounds / pharmacology*
  • Calcium Compounds / chemistry
  • Calcium Compounds / pharmacology*
  • Cell Line
  • Cell Survival
  • Fibroblasts / physiology*
  • Glass / chemistry*
  • Materials Testing
  • Mice
  • Microscopy, Electron, Scanning
  • Oxides / chemistry
  • Oxides / pharmacology*
  • Silicon Dioxide / chemistry
  • Silicon Dioxide / pharmacology*

Substances

  • Boron Compounds
  • Calcium Compounds
  • Oxides
  • boron oxide
  • Silicon Dioxide
  • lime