Department of Biomaterials, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands.
Tissue Eng Part B Rev. 2012 Feb;18(1):24-39. doi: 10.1089/ten.TEB.2011.0184. Epub 2011 Sep 23.
During the last decade, the use of micro- and nanospheres as functional components for bone tissue regeneration has drawn increasing interest. Scaffolds comprising micro- and nanospheres display several advantages compared with traditional monolithic scaffolds that are related to (i) an improved control over sustained delivery of therapeutic agents, signaling biomolecules and even pluripotent stem cells, (ii) the introduction of spheres as stimulus-sensitive delivery vehicles for triggered release, (iii) the use of spheres to introduce porosity and/or improve the mechanical properties of bulk scaffolds by acting as porogen or reinforcement phase, (iv) the use of spheres as compartmentalized microreactors for dedicated biochemical processes, (v) the use of spheres as cell delivery vehicle, and, finally, (vi) the possibility of preparing injectable and/or moldable formulations to be applied by using minimally invasive surgery. This article focuses on recent developments with regard to the use of micro- and nanospheres for bone regeneration by categorizing micro-/nanospheres by material class (polymers, ceramics, and composites) as well as summarizing the main strategies that employ these spheres to improve the functionality of scaffolds for bone tissue engineering.
在过去的十年中,将微球和纳米球用作骨组织再生的功能组件引起了越来越多的关注。与传统的整体支架相比,包含微球和纳米球的支架具有几个优点,这些优点与以下几个方面有关:(i)更好地控制治疗剂、信号生物分子甚至多能干细胞的持续释放,(ii)将球体作为刺激敏感的药物释放载体,(iii)使用球体作为致孔剂或增强相来引入多孔性和/或改善块状支架的机械性能,(iv)将球体用作用于专门生化过程的分区微反应器,(v)将球体用作细胞输送载体,最后,(vi)有可能制备可注射和/或可模塑的制剂,以便通过微创手术进行应用。本文重点介绍了最近在利用微球和纳米球促进骨再生方面的进展,根据材料类别(聚合物、陶瓷和复合材料)对微/纳米球进行分类,并总结了使用这些球体来提高骨组织工程支架功能的主要策略。