Correction: Zhu et al. Injectable and Assembled Calcium Sulfate/Magnesium Silicate 3D Scaffold Promotes Bone Repair by In Situ Osteoinduction. <i>Bioengineering</i> 2025, <i>12</i>, 599. [PDF]
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Bone matrix-inspired whitlockite porous ceramic with effects of autophagy activation contributes to bone regeneration. [PDF]
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Strontium and gallium doping enhances <i>in vivo</i> bone regeneration in biomimetic hydroxyapatite 3D-printed scaffolds. [PDF]
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Topological optimization synergized with a high-activity nano-hydroxyapatite coating to enhance bone regeneration in a porous titanium alloy scaffold. [PDF]
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Updates on Bone Grafts and Substitutes. [PDF]
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Mesh application enhances osteoinduction following proximal femur chondrosarcoma resection and Total hip arthroplasty: A case report and novel technique. [PDF]
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Editorial for Special Issue "Osteoclastogenesis and Osteogenesis: Physiological and Molecular Responses to Xenobiotics and Biomaterials". [PDF]
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Identification of an Optimal Gyroid Microarchitecture of 3D-Printed Hydroxyapatite Bone Substitutes for Vertical Bone Augmentation and Osteoconduction. [PDF]
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Some biomaterials are osteoinductive, that is, they are able to trigger the osteogenic process by inducing the differentiation of mesenchymal stem cells to the osteogenic lineage.
Guillem Martí, Jordi +13 more
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3D Osteoimmune Stem Cell Spheroids with Osteoinduction and Immunomodulation Dual Functionality for <i>In Vivo</i> Bone Tissue Engineering. [PDF]
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