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March 18, 2026International Journal of Molecular Sciences1 citationsOpen Access

Sol-Gel Synthesis of New Bioactive Organic-Inorganic Materials for Biomedical Use: SiO2/Ferulic Acid/PEG

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FBFederico BarrinoFGFederica GiulianoHRHarrison de la Rosa-Ramírez

Key Points

  • The aim is to develop SiO2-based biomaterials using sol-gel synthesis for biomedical applications focusing on bone regeneration.
  • Synthesized SiO2-based biomaterials with varying percentages of ferulic acid and polyethylene glycol.
  • Characterized materials using FTIR-ATR spectroscopy to confirm the incorporation of functional agents.
  • Assessed biocompatibility through cell-based assays and gene expression analysis.
  • Evaluated hydroxyapatite formation using simulated body fluid based on the Kokubo test.
  • Materials demonstrated positive effects on cell proliferation and important markers for tissue regeneration.
  • Successfully induced hydroxyapatite formation, confirming bioactive potential.
  • Combination of SiO2, ferulic acid, and polyethylene glycol showed promise for bone regeneration.

Abstract

In this study, a series of SiO2-based biomaterials synthesized via the sol-gel technique was developed by integrating different weight percentages (10wt% and 15wt%) of ferulic acid (FA) and varying weight percentages (6wt%, 12wt%, and 24wt%) of polyethylene glycol (PEG). Chemical characterization of the materials was performed by FTIR-ATR spectroscopy to confirm the incorporation of the functional agents and the matrix structure. Biocompatibility was assessed through cell-based assays and gene expression analysis, highlighting a positive effect of the materials on cell proliferation and the regulation of key markers for tissue regeneration. Finally, the ability to induce hydroxyapatite (HA) formation was verified using simulated body fluid (SBF) following the Kokubo test, demonstrating the bioactive potential of the treated surfaces. The obtained results indicate that the combination of SiO2, FA, and PEG via sol-gel represents a promising platform for applications in the field of bone regeneration and functional biomaterials.

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Cite This Study

Barrino et al. (2026) studied this question.

synapsesocial.com/papers/69ba426d4e9516ffd37a2b1bhttps://doi.org/10.3390/ijms27062698
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