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May 7, 2026Journal of Materials Science Materials in Medicine0 citationsOpen Access

ADA-GEL composite hydrogel films incorporating mesoporous bioactive glass nanoparticles and silver-doped bioactive glass nanoparticles for biomedical applications

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ALAsimenia LekidouTPThomas PapatasosQNQaisar Nawaz

Key Points

  • The study aims to enhance the mechanical strength and bioactivity of ADA-GEL hydrogels for biomedical applications.
  • Incorporation of mesoporous bioactive glass nanoparticles or silver-doped bioactive glass nanoparticles into ADA-GEL hydrogels.
  • Evaluation of printability, swelling, degradation, and antibacterial effects.
  • Testing in vitro compatibility using MG-63 osteosarcoma cells.
  • MBGNs improved hydrogels' osteogenic ability and structural stability.
  • Ag-BGNs exhibited strong antibacterial activity against Staphylococcus aureus and Escherichia coli.
  • Nanocomposites maintained cell viability and morphology, suggesting safety for biological applications.

Abstract

Abstract Hydrogels made from natural polymers are widely used in biomedical engineering as they resemble the extracellular matrix. Alginate dialdehyde-gelatin (ADA-GEL) hydrogels are notable for their biocompatibility, biodegradability, and adjustable crosslinking. However, their limited mechanical strength and bioactivity present significant challenges for use in tissue regeneration and wound healing. To overcome these issues, this study explores the addition of 0.1 and 1 wt.% mesoporous bioactive glass nanoparticles (MBGNs) or silver-doped bioactive glass nanoparticles (Ag-BGNs) into ADA-GEL hydrogels to create composite hydrogel films. These nanocomposites were tested in terms of printability, swelling, degradation, antibacterial effects, and in vitro compatibility using MG-63 cells (osteosarcoma cells). MBGNs improved the hydrogels’ osteogenic ability and structural stability. At the same time, Ag-BGNs provided vigorous antibacterial activity, especially against Staphylococcus aureus and Escherichia coli , without significantly affecting cell viability and morphology. The use of bioactive and antimicrobial nanoparticles in the ADA-GEL matrix offers a promising approach for developing new soft biomaterials for applications such as bone regeneration, wound healing, and implant coatings.

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Cite This Study

Lekidou et al. (2026) studied this question.

synapsesocial.com/papers/69fbe3aa164b5133a91a2dbehttps://doi.org/10.1007/s10856-026-07057-8
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Enhancing alginate dialdehyde-gelatin (ADA-GEL) based hydrogels for biofabrication by addition of phytotherapeutics and mesoporous bioactive glass nanoparticles (MBGNs)2024 · 14 citations
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  3. 3Oxidized alginate-gelatin (ADA-GEL)/silk fibroin/Cu-Ag doped mesoporous bioactive glass nanoparticle-based hydrogels for potential wound care treatments2024 · 13 citations
  4. 4Effective Actions of Ion Release from Mesoporous Bioactive Glass and Macrophage Mediators on the Differentiation of Osteoprogenitor and Endothelial Progenitor Cells2021 · 35 citations
  5. 5Hydrogel degradation promotes angiogenic and regenerative potential of cell spheroids for wound healing2023 · 48 citations