2022
DOI: 10.1155/2022/7562291
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Repair of Cranial Defects in Rabbits with 3D-Printed Hydroxyapatite/Polylactic Acid Composites

Abstract: Objective. The safety and efficacy of three-dimensional- (3D-) printed hydroxyapatite/polylactic acid (HA-PLA) composites in repairing cranial defects were evaluated in a rabbit experimental model. Methods. Twelve New Zealand rabbits were selected as experimental subjects. Two holes (A and B), each with a diameter of approximately 1 cm, were made in the cranium of each rabbit. Hole A served as the experimental manipulation, and hole B served as the control manipulation. A 3D-printed HA-PLA composite was used f… Show more

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Cited by 3 publications
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“…As demonstrated in the rabbit model, HAp-PLA scaffolds are biocompatible, degrade over time, and form bone trabeculae and marrow cavities on the surface of the scaffolds. Moreover, the safety and efficacy of HPa-PLA in repairing cranial defects in rabbits are comparable to that of autologous bone transplantation [ 122 ]. Bioglass (BG) can also be used to enrich the scaffold and mimic the bone tissue environment.…”
Section: 3d Cell Culturesmentioning
confidence: 99%
“…As demonstrated in the rabbit model, HAp-PLA scaffolds are biocompatible, degrade over time, and form bone trabeculae and marrow cavities on the surface of the scaffolds. Moreover, the safety and efficacy of HPa-PLA in repairing cranial defects in rabbits are comparable to that of autologous bone transplantation [ 122 ]. Bioglass (BG) can also be used to enrich the scaffold and mimic the bone tissue environment.…”
Section: 3d Cell Culturesmentioning
confidence: 99%