2018
DOI: 10.1016/j.msec.2018.04.008
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Surface-decorated hydroxyapatite scaffold with on-demand delivery of dexamethasone and stromal cell derived factor-1 for enhanced osteogenesis

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Cited by 38 publications
(23 citation statements)
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“…A very common type of template is spheres to obtain highly porous scaffold. For example, the use of sugar spheres has been reported to fabricate a hydroxyapatite (HAP) scaffold [14] by extruding the HAP solution to a cylindrical mold containing the sugar spheres. The resulting scaffold were then immersed in water and the sugar spheres were slowly dissolved while the HAP sol gelated.…”
Section: Ii152 Template Assisted Methodsmentioning
confidence: 99%
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“…A very common type of template is spheres to obtain highly porous scaffold. For example, the use of sugar spheres has been reported to fabricate a hydroxyapatite (HAP) scaffold [14] by extruding the HAP solution to a cylindrical mold containing the sugar spheres. The resulting scaffold were then immersed in water and the sugar spheres were slowly dissolved while the HAP sol gelated.…”
Section: Ii152 Template Assisted Methodsmentioning
confidence: 99%
“…Single emulsion can also be used in combination with polymerization. As an example, Zhang et al used the reverse emulsion polymerization technique to obtain hydroxypropyl-β-cyclodextrin microspheres [14].…”
Section: Ii111 Emulsificationmentioning
confidence: 99%
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“…The local osteogenic effect of SIM is combined with the physical properties of scaffolds. [ 165,166 ] They provide a new strategy for the regeneration of bearing bone tissue.…”
Section: D Composite Materialsmentioning
confidence: 99%
“…Compared with "gold standard" autogenous bone, the advantages of artificial bone replacement materials mainly include the unlimited amount of synthesis [ 107 ], the ability to act as drug delivery carrier [ 108 ], and the ease of functional modification [ 109 ]. Thus, giving the materials new functions such as vascularization [ 110 ], bone targeted recognition [ 111 ], and recruitment of stem cells [ 112 ], are more conducive than the physiological repair of defects. For example, Yan et al developed a 3D printed polycaprolactone (PCL) scaffold with vascularization capabilities for the repair of critical bone defects [ 113 ].…”
Section: The Destination Of Bp Tissue Engineering Application-bone Thmentioning
confidence: 99%