Xu Chun, Xu Jia, Xiao Lan, Li Zhihao, Xiao Yin, Dargusch Matthew, Lei Chang, He Yan, Ye Qingsong
School of Dentistry, The University of Queensland Brisbane Queensland 4006 Australia
College of Medicine and Dentistry, James Cook University Cairns 4878 Australia.
RSC Adv. 2018 May 4;8(30):16503-16512. doi: 10.1039/c8ra02072h. eCollection 2018 May 3.
Microsphere based drug delivery systems show great advantages for tissue engineering. However, it is still a big challenge to fabricate microspheres with capability in delivering and controlled releasing multiple growth factors. In the present study, double-layered microspheres consisting of an inner-layer of small core particles and an outer-layer of big shell particles were developed to sequentially release cell homing factors (SDF-1) and osteoinductive growth factors (BMP-2) for bone regeneration. release testing showed that bioactivity of both growth factors retained within the microspheres and differential release of SDF-1 and BMP-2 was achieved. Microspheres with both growth factors showed an obvious chemotaxis effect on preosteoblasts by inducing more cell migration. In osteoinductive ability tests, the microspheres with both growth factors showed higher ALP activity and more mineralized modules than control groups after culturing for 2 weeks. The expression of bone development transcription factors (Runx2, OCN, Osterix) as well as Smad signals (Smad 1, 5, 8) showed higher gene expression in the dual growth factor group. Our results suggest that a double-layered microsphere system enhances the recruitment of osteogenic cells and osteoinduction, which provides a promising platform for bone regeneration.
基于微球的药物递送系统在组织工程中显示出巨大优势。然而,制备具有递送和控释多种生长因子能力的微球仍然是一个巨大挑战。在本研究中,开发了由小核心颗粒内层和大壳颗粒外层组成的双层微球,用于顺序释放细胞归巢因子(SDF-1)和骨诱导生长因子(BMP-2)以促进骨再生。释放测试表明,两种生长因子的生物活性保留在微球内,并且实现了SDF-1和BMP-2的差异释放。含有两种生长因子的微球通过诱导更多细胞迁移对前成骨细胞显示出明显的趋化作用。在骨诱导能力测试中,培养2周后,含有两种生长因子的微球比对照组显示出更高的碱性磷酸酶活性和更多的矿化模块。骨发育转录因子(Runx2、OCN、Osterix)以及Smad信号(Smad 1、5、8)的表达在双生长因子组中显示出更高的基因表达。我们的结果表明,双层微球系统增强了成骨细胞的募集和骨诱导作用,为骨再生提供了一个有前景的平台。