Department of Medical, Oral and Biotechnological Sciences, University "G. d'Annunzio", 66100 Chieti-Pescara, Italy.
IRCCS Centro Neurolesi "Bonino Pulejo", 98124 Messina, Italy.
Int J Mol Sci. 2019 Jul 2;20(13):3256. doi: 10.3390/ijms20133256.
Bone tissue regeneration strategies require approaches that provide an osteogenic and angiogenic microenvironment able to drive the bone growth. Recently, the development of 3D printing biomaterials, including poly(lactide) (3D-PLA), enriched with mesenchymal stem cells (MSCs) and/or their derivatives, such as extracellular vesicles (EVs) has been achieving promising results. In this study, in vitro results showed an increased expression of osteogenic and angiogenic markers, as RUNX2, VEGFA, OPN and COL1A1 in the living construct 3D-PLA/human Gingival MSCs (hGMSCs)/EVs. Considering that EVs carry and transfer proteins, mRNA and microRNA into target cells, we evaluated miR-2861 and miR-210 expression related to osteoangiogenesis commitment. Histological examination of rats implanted with 3D-PLA/hGMSCs/EVs evidenced the activation of bone regeneration and of the vascularization process, confirmed also by MicroCT. In synthesis, an upregulation of miR-2861 and -210 other than RUNX2, VEGFA, OPN and COL1A1 was evident in cells cultured in the presence of the biomaterial and EVs. Then, these results evidenced that EVs may enhance bone regeneration in calvaria defects, in association with an enhanced vascularization offering a novel regulatory system in the osteoangiogenesis evolution. The application of new strategies to improve biomaterial engraftment is of great interest in the regenerative medicine and can represent a way to promote bone regeneration.
骨组织再生策略需要提供一种能够促进骨生长的成骨和成血管微环境的方法。最近,3D 打印生物材料的发展,包括聚乳酸(3D-PLA),富含间充质干细胞(MSCs)及其衍生物,如细胞外囊泡(EVs),已经取得了有希望的结果。在这项研究中,体外结果显示,活构建体 3D-PLA/人牙龈间充质干细胞(hGMSCs)/EVs 中骨生成和血管生成标志物的表达增加,如 RUNX2、VEGFA、OPN 和 COL1A1。考虑到 EVs 将蛋白质、mRNA 和 microRNA 携带并转移到靶细胞中,我们评估了与成骨血管生成承诺相关的 miR-2861 和 miR-210 的表达。植入 3D-PLA/hGMSCs/EVs 的大鼠的组织学检查证实了骨再生和血管化过程的激活,这也得到了 MicroCT 的证实。总之,在存在生物材料和 EVs 的情况下培养的细胞中,miR-2861 和 miR-210 的上调除了 RUNX2、VEGFA、OPN 和 COL1A1 之外,也很明显。然后,这些结果表明 EVs 可能通过增强血管化来增强颅骨缺损中的骨再生,为成骨血管生成的演变提供新的调控系统。应用新策略来改善生物材料的植入是再生医学的一个重要关注点,它可以代表一种促进骨再生的方法。