Song Jiankang, Leeuwenburgh Sander Cg
Department of Biomaterials, Radboud University Medical Center, Nijmegen, The Netherlands.
Ther Deliv. 2014 Aug;5(8):943-58. doi: 10.4155/tde.14.42.
Local delivery of therapeutic biomolecules to stimulate bone regeneration has matured considerably during the past decades, but control over the release of these biomolecules still remains a major challenge. To this end, suitable carriers that allow for tunable spatial and temporal delivery of biomolecules need to be developed. Gelatin is one of the most widely used natural polymers for the controlled and sustained delivery of biomolecules because of its biodegradability, biocompatibility, biosafety and cost-effectiveness. The current study reviews the applications of gelatin as carriers in form of bulk hydrogels, microspheres, nanospheres, colloidal gels and composites for the programmed delivery of commonly used biomolecules for applications in bone regeneration with a specific focus on the relationship between carrier properties and delivery characteristics.
在过去几十年中,通过局部递送治疗性生物分子来刺激骨再生已取得了显著进展,但对这些生物分子释放的控制仍然是一项重大挑战。为此,需要开发能够实现生物分子可调空间和时间递送的合适载体。明胶因其生物可降解性、生物相容性、生物安全性和成本效益,是用于生物分子控制和持续递送的最广泛使用的天然聚合物之一。本研究综述了明胶作为载体,以块状水凝胶、微球、纳米球、胶体凝胶和复合材料等形式,在骨再生应用中对常用生物分子进行程序性递送的应用,特别关注载体性质与递送特性之间的关系。