Allo Bedilu A, Costa Daniel O, Dixon S Jeffrey, Mequanint Kibret, Rizkalla Amin S
Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, Ontario N6A 5B9, Canada.
Department of Physiology and Pharmacology, Schulich School of Medicine & Dentistry, The University of Western Ontario, London, Ontario N6A 5C1, Canada.
J Funct Biomater. 2012 Jun 20;3(2):432-63. doi: 10.3390/jfb3020432.
Strategies for bone tissue engineering and regeneration rely on bioactive scaffolds to mimic the natural extracellular matrix and act as templates onto which cells attach, multiply, migrate and function. Of particular interest are nanocomposites and organic-inorganic (O/I) hybrid biomaterials based on selective combinations of biodegradable polymers and bioactive inorganic materials. In this paper, we review the current state of bioactive and biodegradable nanocomposite and O/I hybrid biomaterials and their applications in bone regeneration. We focus specifically on nanocomposites based on nano-sized hydroxyapatite (HA) and bioactive glass (BG) fillers in combination with biodegradable polyesters and their hybrid counterparts. Topics include 3D scaffold design, materials that are widely used in bone regeneration, and recent trends in next generation biomaterials. We conclude with a perspective on the future application of nanocomposites and O/I hybrid biomaterials for regeneration of bone.
骨组织工程与再生策略依赖于生物活性支架,以模拟天然细胞外基质,并作为细胞附着、增殖、迁移和发挥功能的模板。基于可生物降解聚合物和生物活性无机材料的选择性组合的纳米复合材料和有机-无机(O/I)杂化生物材料尤其令人关注。在本文中,我们综述了生物活性和可生物降解纳米复合材料及O/I杂化生物材料的现状及其在骨再生中的应用。我们特别关注基于纳米级羟基磷灰石(HA)和生物活性玻璃(BG)填料与可生物降解聚酯及其杂化对应物的纳米复合材料。主题包括3D支架设计、广泛用于骨再生的材料以及下一代生物材料的最新趋势。我们最后展望了纳米复合材料和O/I杂化生物材料在骨再生中的未来应用。