Departamento de Química Inorgánica y Bioinorgánica, Ftad. Farmacia, Universidad Complutense de Madrid and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Madrid, Spain.
Acta Biomater. 2010 Aug;6(8):2874-88. doi: 10.1016/j.actbio.2010.02.012. Epub 2010 Feb 10.
The impact of bone diseases and trauma in developed and developing countries has increased significantly in the last decades. Bioactive glasses, especially silica-based materials, are called to play a fundamental role in this field due to their osteoconductive, osteoproductive and osteoinductive properties. In the last years, sol-gel processes and supramolecular chemistry of surfactants have been incorporated to the bioceramics field, allowing the porosity of bioglasses to be controlled at the nanometric scale. This advance has promoted a new generation of sol-gel bioactive glasses with applications such as drug delivery systems, as well as regenerative grafts with improved bioactive behaviour. Besides, the combination of silica-based glasses with organic components led to new organic-inorganic hybrid materials with improved mechanical properties. Finally, an effort has been made to organize at the macroscopic level the sol-gel glass preparation. This effort has resulted in new three-dimensional macroporous scaffolds, suitable to be used in tissue engineering techniques or as porous pieces to be implanted in situ. This review collects the most important advances in the field of silica glasses occurring in the last decade, which are called to play a lead role in the future of bone regenerative therapies.
在过去的几十年中,发达国家和发展中国家的骨骼疾病和创伤的影响显著增加。生物活性玻璃,特别是基于硅的材料,由于其具有骨诱导、骨生成和骨传导特性,有望在该领域发挥重要作用。近年来,溶胶-凝胶工艺和表面活性剂的超分子化学已被引入生物陶瓷领域,从而可以在纳米尺度上控制生物玻璃的多孔性。这一进展促进了新一代溶胶-凝胶生物活性玻璃的发展,其应用包括药物输送系统以及具有改善的生物活性行为的再生移植物。此外,硅基玻璃与有机成分的结合导致了具有改善机械性能的新型有机-无机杂化材料。最后,人们努力在宏观水平上组织溶胶-凝胶玻璃的制备。这一努力产生了新的三维大孔支架,适用于组织工程技术或作为原位植入的多孔件。本文综述了过去十年中硅玻璃领域的最重要进展,这些进展有望在骨再生治疗的未来发挥主导作用。