Baino Francesco, Fiorilli Sonia, Vitale-Brovarone Chiara
Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Acta Biomater. 2016 Sep 15;42:18-32. doi: 10.1016/j.actbio.2016.06.033. Epub 2016 Jun 28.
Bioactive glasses have been traditionally used in the clinical practice to fill and restore osseous defects due to their unique ability to bond to host bone and stimulate new bone growth. In the last decade, a new set of bioactive glasses characterized by a highly ordered mesoporous texture has been developed and studied as a smart platform for the controlled release of biomolecules, in situ therapy and regenerative applications. This review points out the great potential carried by hierarchical bioactive glass scaffolds that exhibit pore scales from the meso- to the macro-range, and their impact in the broad field of tissue engineering, including the emerging applications in contact with soft tissues and diagnostics. Recent advances in the preparation methods of these multiscale constructs (e.g. mono- or multi-phase scaffolds, fibrous meshes, coated systems, porous nanospheres, and composites) are examined, along with their strengths and weaknesses. A bright future is expected for hierarchical systems based on biocompatible mesoporous materials as they can provide a unique set of functionalities, including enhanced bioactivity, local release of ions and drugs to elicit specific therapeutic effects (improved osteogenesis and angiogenesis, antibacterial properties), and implant/drug tracking, which were unthinkable when research on bioactive glasses began.
The advent of mesoporous bioactive glasses led to the birth of a new class of multifunctional biomaterials that have been proposed as smart platforms for local drug release and bone regeneration. Furthermore, mesoporous materials have been recently employed in the development of hierarchical macro-mesoporous scaffolds, composites and implantable systems. This reviews summarizes the latest applications of these multiscale biomaterials in tissue engineering, including the emerging applications in contact with soft tissues and diagnostics. The preparation methods, current uses and potential of these constructs and systems are examined and critically discussed to provide a useful, up-to-date contribution to the scientists working in the field.
生物活性玻璃因其与宿主骨结合并刺激新骨生长的独特能力,传统上一直用于临床实践中填充和修复骨缺损。在过去十年中,已开发出一组具有高度有序介孔结构的新型生物活性玻璃,并将其作为生物分子控释、原位治疗和再生应用的智能平台进行研究。本综述指出了具有从中观到宏观尺度孔隙的分级生物活性玻璃支架所具有的巨大潜力,以及它们在组织工程广泛领域中的影响,包括与软组织接触和诊断方面的新兴应用。研究了这些多尺度结构(例如单相或多相支架、纤维网、涂层系统、多孔纳米球和复合材料)制备方法的最新进展,以及它们的优缺点。基于生物相容性介孔材料的分级系统有望拥有光明的未来,因为它们可以提供一系列独特的功能,包括增强的生物活性、离子和药物的局部释放以引发特定治疗效果(改善成骨和血管生成、抗菌性能)以及植入物/药物追踪,而这些在生物活性玻璃研究开始时是不可想象的。
介孔生物活性玻璃的出现催生了一类新型多功能生物材料,它们被提议作为局部药物释放和骨再生的智能平台。此外,介孔材料最近已用于分级宏观-介孔支架、复合材料和可植入系统的开发。本综述总结了这些多尺度生物材料在组织工程中的最新应用,包括与软组织接触和诊断方面的新兴应用。对这些结构和系统的制备方法、当前用途和潜力进行了研究和批判性讨论,以为该领域的科学家提供有用的最新资料。