Document Type
Article
Publication Date
2026
DOI
10.1016/j.carpta.2026.101216
Publication Title
Carbohydrate Polymer Technologies and Applications
Volume
16
Pages
101216
Abstract
Nonunion fractures remain a major orthopedic challenge, highlighting the need for improved bone tissue engineering (BTE) strategies. This study hypothesized that incorporating Sr/Mg-doped 58S bioglass nanoparticles into 3D-printed alginate (Alg) scaffolds would improve their physicochemical, mechanical, and biological properties and enhance bone regeneration. Structural characterization showed that Sr/Mg-doping reduced bioglass size and produced interconnected porous scaffolds. Under wet conditions, Alg scaffold incorporating 2.5%Sr/Mg-doped 58S bioglass showed the highest Young’s modulus (0.4356 ± 0.0244 MPa), whereas under dry conditions, the Alg scaffold incorporating 5%Sr/Mg-doped 58S bioglass achieved the highest value (0.1945 ± 0.0519 MPa). In vitro studies demonstrated biocompatibility and enhanced cell attachment and proliferation. After 7 days, Alg scaffold incorporating 5%Sr/Mg-doped 58S bioglass showed the highest cell viability: 101.09 ± 7.4% for L929 fibroblasts and 82.38 ± 3.4% for human adipose-derived mesenchymal stem cells (hADSCs). In a rabbit critical-sized cranial defect model, this scaffold achieved the highest bone healing rate (53.42%), reducing the defect volume to 6.65 mm³. Histological analyses confirmed reduced necrosis and inflammation, increased collagen deposition, and enhanced new bone formation. Overall, 5% Sr/Mg doping improved scaffold mechanical and biological performance, supporting its potential for BTE while maintaining favorable cellular responses and promoting bone regeneration.
Rights
© 2026 The Authors.
This is an open access article under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) License.
Data Availability
Article states: "Data will be made available on request."
Original Publication Citation
Aliabadi, M. M., Jahani, A., Toorchi, S. M. V., Moradi, A., Ebrahimzadeh, M. H., Kalalinia, F., Sarhaddi, F., Tayebi, L., & Jirofti, N. (2026). 3D-printed alginate scaffolds incorporated with synergistic strontium/magnesium-doped bioglass nanoparticles for bone regeneration: An in vivo evaluation in rabbit cranial defects. Carbohydrate Polymer Technologies and Applications, 16, Article 101216. https://doi.org/10.1016/j.carpta.2026.101216
Repository Citation
Aliabadi, Mehraneh Movahedi; Jahani, Afsaneh; Toorchi, Seyed Majdoddin Vahidi; Moradi, Ali; Ebrahimzadeh, Mohammad Hossein; Kalalinia, Fatemeh; Sarhaddi, Farkhonde; Tayebi, Lobat; and Jirofti, Nafiseh, "3D-Printed Alginate Scaffolds Incorporated With Synergistic Strontium/Magnesium - Doped Bioglass Nanoparticles for Bone Regeneration: An In Vivo Evaluation in Rabbit Cranial Defects" (2026). Electrical & Computer Engineering Faculty Publications. 614.
https://digitalcommons.odu.edu/ece_fac_pubs/614
ORCID
0000-0003-1947-5658 (Tayebi)