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  4. Calcium Phosphate Mineralization of Bulk Alginate Hydrogels Composites With Metal and Metal Oxide Nanoparticles
 
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2026
Journal Article
Title

Calcium Phosphate Mineralization of Bulk Alginate Hydrogels Composites With Metal and Metal Oxide Nanoparticles

Abstract
Alginate hydrogels are promising materials for biomedical applications due to their biocompatibility and ability to mimic the extracellular matrix. However, poor mechanical stability and limited bioactivity hinder their wider clinical application. This problem can be overcome by incorporating nanoparticles (NPs) and calcium phosphates (CaPs). In this study, the simultaneous gelation and CaP mineralization of bulk alginate hydrogels in the presence of antimicrobial silver (AgNP), copper oxide (CuONP), and zinc oxide (ZnONP) was investigated. Calcium-deficient hydroxyapatite forms at pH 7.4, and stable amorphous calcium phosphate at pH 9.0. The incorporation of NPs influences the morphology of mineral phases but not composition. Rheological testing revealed that mineralized hydrogels exhibit earlier network breakdown compared to the non-mineralized ones, with critical strain values dependent on both pH and NP type. Ion release is pH-dependent, with generally higher metal ion release from non-mineralized hydrogels. Antibacterial assays demonstrate significant inhibition of S. aureus by hydrogels prepared at pH 9.0, except for hydrogels containing CuONPs. For P. aeruginosa, the differences in inhibition rates between different hydrogels were less pronounced. The obtained results indicate that CaP-mineralized alginate hydrogels incorporating metal and metal oxide NPs exhibit tunable properties, confirming their potential for bone tissue engineering applications and infection prevention.
Author(s)
Milisav, Ana Marija
Institut Ruđer Bošković
Strasser, Vida
Institut Ruđer Bošković
Marfoglia, Andrea
Université de Toulouse
Bojanić, Krunoslav
Institut Ruđer Bošković
Erceg, Ina
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Christiansen, Silke  
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Ivanić, Maja
Institut Ruđer Bošković
Fiket, Željka
Institut Ruđer Bošković
Cazalbou, Sophie
Université de Toulouse
Dutour-Sikirić, Maja
Institut Ruđer Bošković
Journal
Macromolecular bioscience  
Funder
Horizon 2020 Framework Programme
Open Access
File(s)
Download (3.78 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1002/mabi.202500468
10.24406/publica-10112
Additional link
Full text
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • alginate hydrogels

  • antibacterial activity

  • calcium phosphates

  • metal nanoparticles

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