In Vivo Evaluation of 3D-Printed Silica-Based Bioactive Glass Scaffolds for Bone Regeneration

被引:18
|
作者
Tulyaganov, Dilshat U. [1 ]
Fiume, Elisa [2 ]
Akbarov, Avzal [3 ]
Ziyadullaeva, Nigora [3 ]
Murtazaev, Saidazim [3 ]
Rahdar, Abbas [4 ]
Massera, Jonathan [5 ]
Verne, Enrica [2 ]
Baino, Francesco [2 ]
机构
[1] Turin Polytech Univ Tashkent, Dept Nat Math Sci, Tashkent 100095, Uzbekistan
[2] Politecn Torino, Dept Appl Sci & Technol DISAT, I-10129 Turin, Italy
[3] Tashkent State Dent Inst, Dept Prosthodont, Tashkent 100047, Uzbekistan
[4] Univ Zabol, Dept Phys, Zabol 9861335856, Iran
[5] Tampere Univ, Fac Med & Hlth Technol, Tampere 33100, Finland
关键词
bioactive glass; scaffold; 3D printing; in vivo; osteogenesis; bone tissue engineering; ANIMAL-MODELS; REPAIR; SUBSTITUTES;
D O I
10.3390/jfb13020074
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can grow in three dimensions (3D). This research work aims to investigate the bone regenerative capability of silicate bioactive glass scaffolds produced by robocasting in comparison with powder and granule-like materials (oxide system: 47.5SiO(2)-10Na(2)O-10K(2)O-10MgO-20CaO-2.5P(2)O(5), mol.%). Morphological and compositional analyses performed by scanning electron microscopy (SEM), combined with energy dispersive spectroscopy (EDS) after the bioactivity studies in a simulated body fluid (SBF) confirmed the apatite-forming ability of the scaffolds, which is key to allowing bone-bonding in vivo. The scaffolds exhibited a clear osteogenic effect upon implantation in rabbit femur and underwent gradual resorption followed by ossification. Full resorption in favor of new bone growth was achieved within 6 months. Osseous defect healing was accompanied by the formation of mature bone with abundant osteocytes and bone marrow cells. These in vivo results support the scaffold's suitability for application in bone tissue engineering and show promise for potential translation to clinical assessment.
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页数:14
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