Singh et al., 2015
Publication | Publication Date | Title |
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Eldeeb et al. | Biomaterials for tissue engineering applications and current updates in the field: a comprehensive review | |
Dwivedi et al. | Polycaprolactone as biomaterial for bone scaffolds: Review of literature | |
Goonoo et al. | Third generation poly (hydroxyacid) composite scaffolds for tissue engineering | |
Han et al. | The calcium silicate/alginate composite: preparation and evaluation of its behavior as bioactive injectable hydrogels | |
Wu et al. | Biomimetic porous scaffolds for bone tissue engineering | |
Kumar et al. | Synthesis and characterization of diopside particles and their suitability along with chitosan matrix for bone tissue engineering in vitro and in vivo | |
Xu et al. | Hierarchically porous nagelschmidtite bioceramic–silk scaffolds for bone tissue engineering | |
Kavya et al. | Synthesis and characterization of chitosan/chondroitin sulfate/nano-SiO2 composite scaffold for bone tissue engineering | |
Thein-Han et al. | Calcium phosphate cement with biofunctional agents and stem cell seeding for dental and craniofacial bone repair | |
Wu et al. | Electrospun fibrous scaffolds combined with nanoscale hydroxyapatite induce osteogenic differentiation of human periodontal ligament cells | |
Xia et al. | Emerging polymeric biomaterials and manufacturing techniques in regenerative medicine | |
Scott et al. | Advances in bionanomaterials for bone tissue engineering | |
Jiang et al. | Enhancement of osteoinduction by continual simvastatin release from poly (lactic-co-glycolic acid)-hydroxyapatite-simvastatin nano-fibrous scaffold | |
Manoukian et al. | Spiral layer-by-layer micro-nanostructured scaffolds for bone tissue engineering | |
Kim et al. | BMP-2-immobilized porous matrix with leaf-stacked structure as a bioactive GBR membrane | |
Goh et al. | Fabrication and in vitro biocompatibility of sodium tripolyphosphate-crosslinked chitosan–hydroxyapatite scaffolds for bone regeneration | |
Zhou et al. | Biofunctionalized calcium phosphate cement to enhance the attachment and osteodifferentiation of stem cells released from fast-degradable alginate-fibrin microbeads | |
Bu et al. | In situ precipitation of cluster and acicular hydroxyapatite onto porous poly (γ-benzyl-l-glutamate) microcarriers for bone tissue engineering | |
Chern et al. | 3D scaffold with PCL combined biomedical ceramic materials for bone tissue regeneration | |
Singh et al. | Gelatin/monetite electrospun scaffolds to regenerate bone tissue: Fabrication, characterization, and in-vitro evaluation | |
Tondnevis et al. | Using chitosan besides nano hydroxyapatite and fluorohydroxyapatite boost dental pulp stem cell proliferation | |
Hatt et al. | Micro-porous PLGA/β-TCP/TPU scaffolds prepared by solvent-based 3D printing for bone tissue engineering purposes | |
Arabpour et al. | Designing biomaterials for regenerative medicine: State-of-the-art and future perspectives | |
Singh et al. | Novel Chitosan-HEMA-Gelatin macroporous scaffold for bone tissue engineering | |
Neshati et al. | Evaluating the biodegradability of Gelatin/Siloxane/Hydroxyapatite (GS-Hyd) complex in vivo and its ability for adhesion and proliferation of rat bone marrow mesenchymal stem cells |