Chin J Dent Res. 2022 Mar 16;25(1):29-36. doi: 10.3290/j.cjdr.b2752709.
Microspheres have been widely utilised as versatile carriers in biomedical applications. In recent years, as a new type of injectable scaffold, microspheres have attracted increasing attention in the field of regenerative medicine owing to their various advantages including their small size, large specific surface area and mimicry of the 3D native environment. These characteristics enable them to adopt the narrow and irregular anatomy of the tooth and become an ideal scaffold for endodontic regeneration. Microspheres play an important role in carrying biologics (cells, biomolecules and drugs), which effectively regulate the fate of stem cells and control the release of growth factors and drugs. Cell-laden microspheres, which can be divided into microcarriers and microcapsules, have great application prospects in dental pulp regeneration. This paper summarises the properties and characteristics of microsphere scaffolds used in tissue engineering, placing emphasis on their advantages and applications in endodontic regeneration.
微球作为生物医学应用中的多功能载体已经得到了广泛的应用。近年来,作为一种新型的可注射支架,微球因其体积小、比表面积大、模拟 3D 天然环境等多种优势,在再生医学领域引起了越来越多的关注。这些特性使它们能够适应牙齿的狭窄和不规则解剖结构,并成为牙髓再生的理想支架。微球在携带生物制剂(细胞、生物分子和药物)方面发挥着重要作用,可有效调控干细胞的命运,控制生长因子和药物的释放。载细胞微球可分为微载体和微囊,在牙髓再生中有很大的应用前景。本文总结了组织工程中使用的微球支架的特性和特点,重点介绍了其在牙髓再生中的优势和应用。