脚手架
生物医学工程
组织工程
体内
材料科学
生物相容性
陶瓷
骨组织
再生(生物学)
复合材料
细胞生物学
生物
医学
生物技术
冶金
作者
Ander Abarrategi,Ana Carolina Vicente,Francisco J. Martínez‐Vázquez,Ana Civantos,Viviana Ramos,J.V. Sanz Casado,Ramón Martínez-Corriá,Fidel Hugo Perera,Francisca Mulero,Pedro Miranda,José Luis López‐Lacomba
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2012-03-28
卷期号:7 (3): e34117-e34117
被引量:94
标识
DOI:10.1371/journal.pone.0034117
摘要
Porous ceramic scaffolds are widely studied in the tissue engineering field due to their potential in medical applications as bone substitutes or as bone-filling materials. Solid free form (SFF) fabrication methods allow fabrication of ceramic scaffolds with fully controlled pore architecture, which opens new perspectives in bone tissue regeneration materials. However, little experimentation has been performed about real biological properties and possible applications of SFF designed 3D ceramic scaffolds. Thus, here the biological properties of a specific SFF scaffold are evaluated first, both in vitro and in vivo, and later scaffolds are also implanted in pig maxillary defect, which is a model for a possible application in maxillofacial surgery. In vitro results show good biocompatibility of the scaffolds, promoting cell ingrowth. In vivo results indicate that material on its own conducts surrounding tissue and allow cell ingrowth, thanks to the designed pore size. Additional osteoinductive properties were obtained with BMP-2, which was loaded on scaffolds, and optimal bone formation was observed in pig implantation model. Collectively, data show that SFF scaffolds have real application possibilities for bone tissue engineering purposes, with the main advantage of being fully customizable 3D structures.
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